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10 Smart Ways To Increase Organic Traffic To A Website

Improving organic traffic can sometimes be challenging, but if you apply the correct SEO strategies, the hard work will eventually pay off. Search engine traffic is great because it’s relevant and targeted. For most websites, organic traffic converts much better than traffic from social media or other sources. Another great advantage is that visits from […]

The post 10 Smart Ways To Increase Organic Traffic To A Website appeared first on RSSground.com.




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Bontrager Releases New Brevard & Galbraith Tires



Fresh rubber for wet and slippery conditions.
( Photos: 5, Comments: 66 )




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Epstein-Barr infection found to increase risk of multiple sclerosis

The underlying cause of multiple sclerosis is not yet known, but Epstein-Barr virus is a possible culprit, Harvard researchers say.




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A Quick Bible Study Vol. 240: What the Old Testament Says About How to Please God

Thanks for joining us today about what the New Testament has to say about how to please God. If you missed last week’s study concerning the Old Testament, please read it now. While we wait, here is a “pleasing” song. Last week I offered my take on pleasing God which is always at the top […]

The post A Quick Bible Study Vol. 240: What the Old Testament Says About How to Please God appeared first on Liberty Unyielding.




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Polar bears face higher risk of disease in a warming Arctic

Climate change and sea ice loss leaves polar bears exposed to more diseases, research suggests.




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Knight, Bell & Wong released by WPL sides

England captain Heather Knight and seamers Lauren Bell and Issy Wong are released by their Women's Premier League franchises ahead of the 2025 season.




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Early prison release: 'I'm lost and don't know what to do'

One man tells BBC London not enough is being done to keep prisoners released early off the streets.




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Police Bodycam Footage Released Shows Trump 2020 Adviser Brad Parscale Bodyslammed During Arrest

Police bodycam footage of Trump 2020 campaign Advisor Brad Parscale’s arrest was released on Monday showing officers bodyslamming Parscale once he emerged outside his home shirtless with a beer in his hand during a tense scene after his wife told the police that he was suicidal. “Listen, I’m not trying to kill myself. She’s lying, I didn’t […]

The post Police Bodycam Footage Released Shows Trump 2020 Adviser Brad Parscale Bodyslammed During Arrest appeared first on Hispolitica.




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velocityconf: RT @OReillyAnimals Advice, please! Elephant Listening Project asks for ideas/solutions/help with 3 practical problems http://t.co/Y90YP3maoz

velocityconf: RT @OReillyAnimals Advice, please! Elephant Listening Project asks for ideas/solutions/help with 3 practical problems http://t.co/Y90YP3maoz




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Apple Releases New Mac Mini, Revamped iMac, & M4 MacBook Pro

Apple has spent the last few days trickling releases of new Mac hardware, debuting a revamped iMac with an M4 chip and new colors, a redesigned Mac Mini that is smaller in size and now has an M4 chip, and the MacBook Pro lineup has been revamped with M4 processors as well. Each of the ... Read More




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10 Ways to Build Customer Loyalty and Increase Retention

Selling your services and wares online can be challenging, as today’s digital shoppers are smart and demanding. You need a customer-focused approach right from the start. The customer is the most significant pillar of modern businesses, so you need to build a genuine relationship with them if you want your online store to survive. Read […]




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Simple Image Gallery Pro v3.8.0 released

Simple Image Gallery Pro v3.8.0 is now available to download for subscribers. This new release improves upon existing features, extends Flickr support to galleries (beyond albums/sets) and adds PHP 7.4 & Postgres compatibility.

Here's what's been added or changed in Simple Image Gallery Pro with the release of v3.8.0:

  • Added support for Flickr "galleries", beyond the already supported "albums/sets". Additionally, you can now fetch all images at once from some Flickr gallery/album/set by setting the relevant limit in SIGPro's settings to 0.
  • Added the option to override the default gallery layout in the SIGPro gallery insertion modal (frontend & backend).
  • Improved support for PHP 7.4 (mainly notices in the settings).
  • Fixed an issue where the gallery layout selector did not work with a Postgres database.
  • Added an option in SIGPro's settings (under "Advanced") to disable the WYSIWYG editor button in one or more components.
  • Properly filter multiline pasted text in the "description" field (in the captions). Previously, such pasted content would appear cut-off in the SIGPro modal/popup in the frontend.
  • File uploads now use built-in Joomla libraries which should resolve any upload issues with servers running "Windows Server".

 

DEMO

The JoomlaWorks demo site has been updated to the latest Simple Image Gallery Pro release. See here https://demo.joomlaworks.net/simple-image-gallery-pro.

 

DOWNLOAD

If you have an active Simple Image Gallery Pro membership, just head over to the Member Dashboard at https://www.joomlaworks.net/members and grab your copy from your "Subscriptions" page.

Or purchase this latest release from just 19.90 EUR. More info at: https://www.joomlaworks.net/extensions/commercial/simple-image-gallery-pro

 

UPGRADING

Just upload the new version and it will overwrite the old one.

For more help, please visit the updated documentation page for the extension at: https://www.joomlaworks.net/support/docs/simple-image-gallery-pro

For support questions please use our Ticket Support System inside the Member Dashboard at https://www.joomlaworks.net/dashboard (active product membership required).




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K2 Plugin for sh404SEF version 1.6.0 released

The K2 Plugin for sh404SEF version 1.6.0 is now available to download for subscribers. This is a bug fix release that addresses compatibility with K2 v2.10.3+ and improves support for PHP 7.x in general.

Here's what's been added or changed in the K2 Plugin for sh404SEF with the release of v1.6.0:

  • Resolve a function clash bug when using the plugin with K2 v2.10.3 and the "Advanced SEF" settings is enabled. Please keep in mind that if you use sh404SEF, you should not have the "Advanced SEF" settings enabled.
  • Improved support for PHP up to 7.4 (mainly notices).
  • Various others cleanups in the plugin's code.

 

DOWNLOAD

If you have an active "K2 Plugin for sh404SEF" membership, just head over to the Member Dashboard at https://www.joomlaworks.net/members and grab your copy from your "Subscriptions" page.

Or purchase this latest release from just 19.90 EUR. More info at: https://www.joomlaworks.net/extensions/commercial/k2-plugin-for-sh404sef

 

UPGRADING

Just upload the new version and it will overwrite any previous one.

For support questions please use our Ticket Support System inside the Member Dashboard at https://www.joomlaworks.net/dashboard (active product membership required).




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Simple RSS Feed Reader v3.8.0 released

Today we're releasing version 3.8.0 of the Simple RSS Feed Reader module. This new release brings back Joomla 1.5 support (by popular request), it introduces a new sub-template & changes the remote image resizing service from Mobify to Images.weserv.nl.

Here's what's been added or changed (in more detail) with the release of v3.8.0:

  • Re-instated Joomla 1.5 support.
  • Added new sub-template for rendering YouTube Playlist feeds as a list of videos. This sub-template requires the use of our free plugin AllVideos to render the videos in a responsive format.
  • Swapped Mobify with Images.weserv.nl (powered by CloudFlare) since the former was bought out by Salesforce and subsequently dropped.
  • Improved compatibility with PHP 7.4.

The next update will offer compatibility with the upcoming Joomla 4 release (currently in "beta") and will also be tested against PHP 8.

Simple RSS Feed Reader is fully compatible with Joomla 1.5 to 3.x & PHP versions up to 7.4.

DOWNLOAD

You can download this version by visiting the product's page at: https://www.joomlaworks.net/extensions/free/simple-rss-feed-reader

UPGRADING

Simply install on top of any other 3.x release. The update will also appear in the Joomla extension updater (for Joomla v2.5 or newer).

DEMO

You can see a demo of the extension at: https://demo.joomlaworks.net and https://demo2.joomlaworks.net (right column on both sites)




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Simple RSS Feed Reader v3.9.0 released

Today we're releasing version 3.9.0 of the Simple RSS Feed Reader module. This is a bugfix release.

Here's what's been added or changed (in more detail) with the release of v3.9.0:

  • Fix the installer for Joomla 3.x on new installations. The introduction of support for Joomla 1.5 all the way up to 3.x unfortunately broke the installer for 3.x (oh, the irony) for new installations. Upgrades from previous versions to 3.8.0 had no issues for any Joomla release.
  • Improved the image parser/extractor. Removed support for .bmp type images.
  • Fixed various warnings/notices.

The next major update (v4) will offer compatibility with the upcoming Joomla 4 release (currently in "beta" and soon going into "RC" status) as well as entirely new layouts. ranging from simple lists to more complex grid layouts utilizing CSS grid properties.

Simple RSS Feed Reader is fully compatible with Joomla 1.5 to 3.x & PHP versions up to 8.0.

DOWNLOAD

You can download this version by visiting the product's page at: https://www.joomlaworks.net/extensions/free/simple-rss-feed-reader

UPGRADING

Simply install on top of any other 3.x release. The update will also appear in the Joomla extension updater (for Joomla v2.5 or newer).

DEMO

You can see a demo of the extension at: https://demo.joomlaworks.net and https://demo2.joomlaworks.net (right column on both sites)




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Simple Image Gallery Pro v3.9.0 released

Simple Image Gallery Pro v3.9.0 is now available to download for subscribers. It's both a bug-fix and new feature release.

Here's what's been added or changed in Simple Image Gallery Pro with the release of v3.9.0:

  • SIGPro will now read EXIF metadata from images that contain orientation details and properly rotate or flip images before creating thumbnails.. This means you won't need to process images using desktop software to correct their orientation before uploading them on your server. A handy feature especially for those who work with images coming from pro DSLR cameras.
  • Replaced the Mobify image CDN with Weserv's, which is powered by CloudFlare. This will restore the option to resize the source image, as the Mobify CDN unexpectedly shut down a few months ago. Weserv's processing & delivery is also much faster.
  • Updated Lightbox2 to version 2.11.3.
  • Updated elFinder (used in the SIGPro Media Manager in the backend) to version 2.1.59.
  • Fancybox can now be translated through the Joomla language manager (language overrides) or via custom language packs (a much requested feature from users).
  • Gallery layout CSS files are now linked in the document <head> with an appended timestamp. This will allow you to perform live changes to a gallery layout's CSS even when your site is behind a CDN like CloudFlare's (so you don't have to purge the CDN's cache for that file everytime you do a change in it) or behind a server-side caching proxy (e.g. Nginx or Varnish).

SIGPro has also been tested to work on up to PHP 8 without any issues. If you have any custom gallery layouts though, you may have to slightly modify them to play nice with PHP 8. As always, send a ticket in our helpdesk system for assistance with such matters...

 

WHAT'S COMING NEXT

You may be wondering what coming next for SIGPro. Well, a lot for sure!

The next version of SIGPro is already being worked on and eventually it will have the following features:

  • Custom ordering for images using drag and drop
  • All-new gallery layouts using CSS Grid properties, with distinct options for responsive designs
  • More slideshow-like (carousel) gallery layouts
  • Updated backend UI that is fully responsive on mobile devices for gallery management on the go
  • WebP support
  • Dynamic image filters
  • Support for AMP pages
  • New JSON based format for captions
  • More ordering options
  • Less jQuery-dependant modals and layouts, which will also translate to improved Core Web Vitals scores for your pages with image galleries on
  • Support for improved image conversion using Image Magick (when available on your server)
  • Improved overall performance
  • Joomla 4 compatibility when it's f-i-n-a-l-l-y released :)

Not all the features above will be available when SIGPro v4 is released, but they will be gradually included as updates come in.

 

DEMO

The JoomlaWorks demo site has been updated to the latest Simple Image Gallery Pro release. Have a look here: https://demo.joomlaworks.net/simple-image-gallery-pro

 

DOWNLOAD

If you have an active Simple Image Gallery Pro membership, just head over to the Member Dashboard at https://www.joomlaworks.net/members and grab your copy from your "Subscriptions" page.

Or purchase this latest release from just 19.90 EUR. More info at: https://www.joomlaworks.net/extensions/commercial/simple-image-gallery-pro

 

UPGRADING

Just upload the new version and it will overwrite the old one.

For more help, please visit the updated documentation page for the extension at: https://www.joomlaworks.net/support/docs/simple-image-gallery-pro

For support questions please use our Helpdesk system included in your Member Dashboard at https://www.joomlaworks.net/dashboard (active product membership required).




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Simple Image Gallery Pro v3.9.1 released (bug-fix release)

Simple Image Gallery Pro v3.9.1 is now available to download for subscribers. This is a minor bug-fix release following the release of version 3.9.0 a couple weeks ago.

For a detailed look on the new features and changes in v3.9.0, please have a look here: https://www.joomlaworks.net/blog/item/309-simple-image-gallery-pro-v3-9-0-released

SIGPro v3.9.1 released today adds a check if support of EXIF related functions is already built into your server's PHP setup. If not, any new features related to EXIF metadata which were introduced in v3.9.0 will simply be ignored.

For the record, affected users account to less than 0.2% in total of those upgraded to v3.9.0.

 

DEMO

The JoomlaWorks demo site has been updated to the latest Simple Image Gallery Pro release. Have a look here: https://demo.joomlaworks.net/simple-image-gallery-pro

 

DOWNLOAD

If you have an active Simple Image Gallery Pro membership, just head over to the Member Dashboard at https://www.joomlaworks.net/members and grab your copy from your "Subscriptions" page.

Or purchase this latest release from just 19.90 EUR. More info at: https://www.joomlaworks.net/extensions/commercial/simple-image-gallery-pro

 

UPGRADING

Just upload the new version and it will overwrite the old one.

For more help, please visit the updated documentation page for the extension at: https://www.joomlaworks.net/support/docs/simple-image-gallery-pro

For support questions please use our Helpdesk system included in your Member Dashboard at https://www.joomlaworks.net/dashboard (active product membership required).




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Simple Image Gallery (free) v4.2 released

Simple Image Gallery (free) version 4.2 is now available to download. This is a maintenance release.

Here's what's been added or changed in Simple Image Gallery (free) with the release of v4.2:

  • Resolves fatal PHP error in Joomla 4 caused when a notice is raised, for example if a wrong gallery folder path was provided in the plugin's "gallery" tags. This was caused by the removal of the JError class in Joomla 4.

Simple Image Gallery is fully compatible with Joomla versions 1.5, 2.5, 3.x and 4.x.

DEMO

The JoomlaWorks demo site has been updated to use the latest Simple Image Gallery (free) release. See here: https://demo.joomlaworks.net/simple-image-gallery

DOWNLOAD

You can download this version by visiting the extension's page at: https://www.joomlaworks.net/extensions/free/simple-image-gallery

UPGRADING

If you use Joomla 2.5, 3.x & 4.x (beta) releases, this new update will appear in the Joomla extension updater. If you're using Joomla 1.5 you can simply upload the new version and it will overwrite the old one. After that step, visit the plugin's parameters page, check if everything is OK or adjust as needed and save the parameters.

 




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New free extension release: Quick Menu (for Joomla 4)

Today we're launching Quick Menu, a new free admin module for Joomla 4 which adds a handy top-side (desktop) or bottom-side (mobile) menu in the Joomla 4 backend. The purpose of Quick Menu is to restore UX sanity & reduce unnecessary clickity-click.

The main features of this new admin module are:

  • Less clicks to important content management and admin tasks in the Joomla 4 backend... duh!
  • Neatly organize the menu in 2 columns (for admins), one to access common content management tasks and one to access common admin tasks. Keep in mind that not everything is included and for good reason: keep things simple.
  • Respects configured backend access permissions for your user groups. In other words, plain content managers will see menu options for what they can only access, whereas Super Admins will see menu options for everything.

Grab the module from https://www.joomlaworks.net/extensions/free/quickmenu and install like any other Joomla extension.

Afterwards, look it up under Administrator Modules in the Joomla 4 backend, click to edit it, assign the module position "status" and publish the module. Done!

You new backend quick menu will now be available to use.

Quick Menu is compatible with Joomla version 4.x on servers running PHP 7 or 8.

 

DOWNLOAD

You can download this version by visiting the extension's page at: https://www.joomlaworks.net/extensions/free/quickmenu

 

UPGRADING

Updating is easy as future releases will show up in the extension updates page in Joomla.




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Adobe Releases Flash Player 10.1

You can download the official release of Adobe Flash Player 10.1 on the Adobe site.

This is the first step in what will be an extremely eventful year for streaming media. Adobe will soon enter the enterprise market in a big way with a version of Flash Media Server that supports both IP and Application Multicasting.

Flash has long dominated the public internet, but its inability to multicast meant corporations had to stick with Windows Media. This new capability will give large enterprises the opportunity to migrate to the Flash format and benefit from its ability to run on any OS and any browser, ease of use, support for higher quality codecs, ability to change bit rates on the fly etc.




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Calpain activation mediates microgravity-induced myocardial abnormalities in mice via p38 and ERK1/2 MAPK pathways [Molecular Bases of Disease]

The human cardiovascular system has adapted to function optimally in Earth's 1G gravity, and microgravity conditions cause myocardial abnormalities, including atrophy and dysfunction. However, the underlying mechanisms linking microgravity and cardiac anomalies are incompletely understood. In this study, we investigated whether and how calpain activation promotes myocardial abnormalities under simulated microgravity conditions. Simulated microgravity was induced by tail suspension in mice with cardiomyocyte-specific deletion of Capns1, which disrupts activity and stability of calpain-1 and calpain-2, and their WT littermates. Tail suspension time-dependently reduced cardiomyocyte size, heart weight, and myocardial function in WT mice, and these changes were accompanied by calpain activation, NADPH oxidase activation, and oxidative stress in heart tissues. The effects of tail suspension were attenuated by deletion of Capns1. Notably, the protective effects of Capns1 deletion were associated with the prevention of phosphorylation of Ser-345 on p47phox and attenuation of ERK1/2 and p38 activation in hearts of tail-suspended mice. Using a rotary cell culture system, we simulated microgravity in cultured neonatal mouse cardiomyocytes and observed decreased total protein/DNA ratio and induced calpain activation, phosphorylation of Ser-345 on p47phox, and activation of ERK1/2 and p38, all of which were prevented by calpain inhibitor-III. Furthermore, inhibition of ERK1/2 or p38 attenuated phosphorylation of Ser-345 on p47phox in cardiomyocytes under simulated microgravity. This study demonstrates for the first time that calpain promotes NADPH oxidase activation and myocardial abnormalities under microgravity by facilitating p47phox phosphorylation via ERK1/2 and p38 pathways. Thus, calpain inhibition may be an effective therapeutic approach to reduce microgravity-induced myocardial abnormalities.




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Unusual zwitterionic catalytic site of SARS-CoV-2 main protease revealed by neutron crystallography [Enzymology]

The main protease (3CL Mpro) from SARS–CoV-2, the etiological agent of COVID-19, is an essential enzyme for viral replication. 3CL Mpro possesses an unusual catalytic dyad composed of Cys145 and His41 residues. A critical question in the field has been what the protonation states of the ionizable residues in the substrate-binding active-site cavity are; resolving this point would help understand the catalytic details of the enzyme and inform rational drug development against this pernicious virus. Here, we present the room-temperature neutron structure of 3CL Mpro, which allowed direct determination of hydrogen atom positions and, hence, protonation states in the protease. We observe that the catalytic site natively adopts a zwitterionic reactive form in which Cys145 is in the negatively charged thiolate state and His41 is doubly protonated and positively charged, instead of the neutral unreactive state usually envisaged. The neutron structure also identified the protonation states, and thus electrical charges, of all other amino acid residues and revealed intricate hydrogen-bonding networks in the active-site cavity and at the dimer interface. The fine atomic details present in this structure were made possible by the unique scattering properties of the neutron, which is an ideal probe for locating hydrogen positions and experimentally determining protonation states at near-physiological temperature. Our observations provide critical information for structure-assisted and computational drug design, allowing precise tailoring of inhibitors to the enzyme's electrostatic environment.




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M8R tropomyosin mutation disrupts actin binding and filament regulation: The beginning affects the middle and end [Molecular Bases of Disease]

Dilated cardiomyopathy (DCM) is associated with mutations in cardiomyocyte sarcomeric proteins, including α-tropomyosin. In conjunction with troponin, tropomyosin shifts to regulate actomyosin interactions. Tropomyosin molecules overlap via tropomyosin–tropomyosin head-to-tail associations, forming a continuous strand along the thin filament. These associations are critical for propagation of tropomyosin's reconfiguration along the thin filament and key for the cooperative switching between heart muscle contraction and relaxation. Here, we tested perturbations in tropomyosin structure, biochemistry, and function caused by the DCM-linked mutation, M8R, which is located at the overlap junction. Localized and nonlocalized structural effects of the mutation were found in tropomyosin that ultimately perturb its thin filament regulatory function. Comparison of mutant and WT α-tropomyosin was carried out using in vitro motility assays, CD, actin co-sedimentation, and molecular dynamics simulations. Regulated thin filament velocity measurements showed that the presence of M8R tropomyosin decreased calcium sensitivity and thin filament cooperativity. The co-sedimentation of actin and tropomyosin showed weakening of actin-mutant tropomyosin binding. The binding of troponin T's N terminus to the actin-mutant tropomyosin complex was also weakened. CD and molecular dynamics indicate that the M8R mutation disrupts the four-helix bundle at the head-to-tail junction, leading to weaker tropomyosin–tropomyosin binding and weaker tropomyosin–actin binding. Molecular dynamics revealed that altered end-to-end bond formation has effects extending toward the central region of the tropomyosin molecule, which alter the azimuthal position of tropomyosin, likely disrupting the mutant thin filament response to calcium. These results demonstrate that mutation-induced alterations in tropomyosin–thin filament interactions underlie the altered regulatory phenotype and ultimately the pathogenesis of DCM.




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High affinity binding of SARS-CoV-2 spike protein enhances ACE2 carboxypeptidase activity [Molecular Bases of Disease]

The novel severe acute respiratory syndrome coronavirus (SARS-CoV-2) has emerged to a pandemic and caused global public health crisis. Human angiotensin-converting enzyme 2(ACE2) was identified as the entry receptor for SARS-CoV-2. As a carboxypeptidase, ACE2 cleaves many biological substrates besides angiotensin II to control vasodilatation and vascular permeability. Given the nanomolar high affinity between ACE2 and SARS-CoV-2 spike protein, we investigated how this interaction would affect the enzymatic activity of ACE2. Surprisingly, SARS-CoV-2 trimeric spike protein increased ACE2 proteolytic activity ∼3-10 fold against model peptide substrates, such as caspase-1 substrate and Bradykinin-analog. The enhancement in ACE2 enzymatic function was mediated by the binding of SARS-CoV-2 spike RBD domain. These results highlighted the potential for SARS-CoV-2 infection to enhance ACE2 activity, which may be relevant to the cardiovascular symptoms associated with COVID-19.




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Naturally occurring hotspot cancer mutations in G{alpha}13 promote oncogenic signaling [Molecular Bases of Disease]

Heterotrimeric G-proteins are signaling switches broadly divided into four families based on the sequence and functional similarity of their Gα subunits: Gs, Gi/o, Gq/11, and G12/13. Artificial mutations that activate Gα subunits of each of these families have long been known to induce oncogenic transformation in experimental systems. With the advent of next-generation sequencing, activating hotspot mutations in Gs, Gi/o, or Gq/11 proteins have also been identified in patient tumor samples. In contrast, patient tumor-associated G12/13 mutations characterized to date lead to inactivation rather than activation. By using bioinformatic pathway analysis and signaling assays, here we identified cancer-associated hotspot mutations in Arg-200 of Gα13 (encoded by GNA13) as potent activators of oncogenic signaling. First, we found that components of a G12/13-dependent signaling cascade that culminates in activation of the Hippo pathway effectors YAP and TAZ is frequently altered in bladder cancer. Up-regulation of this signaling cascade correlates with increased YAP/TAZ activation transcriptional signatures in this cancer type. Among the G12/13 pathway alterations were mutations in Arg-200 of Gα13, which we validated to promote YAP/TAZ-dependent (TEAD) and MRTF-A/B-dependent (SRE.L) transcriptional activity. We further showed that this mechanism relies on the same RhoGEF-RhoGTPase cascade components that are up-regulated in bladder cancers. Moreover, Gα13 Arg-200 mutants induced oncogenic transformation in vitro as determined by focus formation assays. In summary, our findings on Gα13 mutants establish that naturally occurring hotspot mutations in Gα subunits of any of the four families of heterotrimeric G-proteins are putative cancer drivers.




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Disease-associated mutations in inositol 1,4,5-trisphosphate receptor subunits impair channel function [Molecular Bases of Disease]

The inositol 1,4,5-trisphosphate (IP3) receptors (IP3Rs), which form tetrameric channels, play pivotal roles in regulating the spatiotemporal patterns of intracellular calcium signals. Mutations in IP3Rs have been increasingly associated with many debilitating human diseases such as ataxia, Gillespie syndrome, and generalized anhidrosis. However, how these mutations affect IP3R function, and how the perturbation of as-sociated calcium signals contribute to the pathogenesis and severity of these diseases remains largely uncharacterized. Moreover, many of these diseases occur as the result of autosomal dominant inheritance, suggesting that WT and mutant subunits associate in heterotetrameric channels. How the in-corporation of different numbers of mutant subunits within the tetrameric channels affects its activities and results in different disease phenotypes is also unclear. In this report, we investigated representative disease-associated missense mutations to determine their effects on IP3R channel activity. Additionally, we designed concatenated IP3R constructs to create tetrameric channels with a predefined subunit composition to explore the functionality of heteromeric channels. Using calcium imaging techniques to assess IP3R channel function, we observed that all the mutations studied resulted in severely attenuated Ca2+ release when expressed as homotetramers. However, some heterotetramers retained varied degrees of function dependent on the composition of the tetramer. Our findings suggest that the effect of mutations depends on the location of the mutation in the IP3R structure, as well as on the stoichiometry of mutant subunits assembled within the tetrameric channel. These studies provide insight into the pathogenesis and penetrance of these devastating human diseases.




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Identification of a domain critical for Staphylococcus aureus LukED receptor targeting and lysis of erythrocytes [Molecular Bases of Disease]

Leukocidin ED (LukED) is a pore-forming toxin produced by Staphylococcus aureus, which lyses host cells and promotes virulence of the bacteria. LukED enables S. aureus to acquire iron by lysing erythrocytes, which depends on targeting the host receptor Duffy antigen receptor for chemokines (DARC). The toxin also targets DARC on the endothelium, contributing to the lethality observed during bloodstream infection in mice. LukED is comprised of two monomers: LukE and LukD. LukE binds to DARC and facilitates hemolysis, but the closely related Panton–Valentine leukocidin S (LukS-PV) does not bind to DARC and is not hemolytic. The interaction of LukE with DARC and the role this plays in hemolysis are incompletely characterized. To determine the domain(s) of LukE that are critical for DARC binding, we studied the hemolytic function of LukE–LukS-PV chimeras, in which areas of sequence divergence (divergence regions, or DRs) were swapped between the toxins. We found that two regions of LukE's rim domain contribute to hemolysis, namely residues 57–75 (DR1) and residues 182–196 (DR4). Interestingly, LukE DR1 is sufficient to render LukS-PV capable of DARC binding and hemolysis. Further, LukE, by binding DARC through DR1, promotes the recruitment of LukD to erythrocytes, likely by facilitating LukED oligomer formation. Finally, we show that LukE targets murine Darc through DR1 in vivo to cause host lethality. These findings expand our biochemical understanding of the LukE–DARC interaction and the role that this toxin-receptor pair plays in S. aureus pathophysiology.




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Microtubule affinity-regulating kinase 4 with an Alzheimer's disease-related mutation promotes tau accumulation and exacerbates neurodegeneration [Neurobiology]

Accumulation of the microtubule-associated protein tau is associated with Alzheimer's disease (AD). In AD brain, tau is abnormally phosphorylated at many sites, and phosphorylation at Ser-262 and Ser-356 plays critical roles in tau accumulation and toxicity. Microtubule affinity–regulating kinase 4 (MARK4) phosphorylates tau at those sites, and a double de novo mutation in the linker region of MARK4, ΔG316E317D, is associated with an elevated risk of AD. However, it remains unclear how this mutation affects phosphorylation, aggregation, and accumulation of tau and tau-induced neurodegeneration. Here, we report that MARK4ΔG316E317D increases the abundance of highly phosphorylated, insoluble tau species and exacerbates neurodegeneration via Ser-262/356–dependent and –independent mechanisms. Using transgenic Drosophila expressing human MARK4 (MARK4wt) or a mutant version of MARK4 (MARK4ΔG316E317D), we found that coexpression of MARK4wt and MARK4ΔG316E317D increased total tau levels and enhanced tau-induced neurodegeneration and that MARK4ΔG316E317D had more potent effects than MARK4wt. Interestingly, the in vitro kinase activities of MARK4wt and MARK4ΔG316E317D were similar. When tau phosphorylation at Ser-262 and Ser-356 was blocked by alanine substitutions, MARK4wt did not promote tau accumulation or exacerbate neurodegeneration, whereas coexpression of MARK4ΔG316E317D did. Both MARK4wt and MARK4ΔG316E317D increased the levels of oligomeric forms of tau; however, only MARK4ΔG316E317D further increased the detergent insolubility of tau in vivo. Together, these findings suggest that MARK4ΔG316E317D increases tau levels and exacerbates tau toxicity via a novel gain-of-function mechanism and that modification in this region of MARK4 may affect disease pathogenesis.




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Differential compartmental processing and phosphorylation of pathogenic human tau and native mouse tau in the line 66 model of frontotemporal dementia [Molecular Bases of Disease]

Synapse loss is associated with motor and cognitive decline in multiple neurodegenerative disorders, and the cellular redistribution of tau is related to synaptic impairment in tauopathies, such as Alzheimer's disease and frontotemporal dementia. Here, we examined the cellular distribution of tau protein species in human tau overexpressing line 66 mice, a transgenic mouse model akin to genetic variants of frontotemporal dementia. Line 66 mice express intracellular tau aggregates in multiple brain regions and exhibit sensorimotor and motor learning deficiencies. Using a series of anti-tau antibodies, we observed, histologically, that nonphosphorylated transgenic human tau is enriched in synapses, whereas phosphorylated tau accumulates predominantly in cell bodies and axons. Subcellular fractionation confirmed that human tau is highly enriched in insoluble cytosolic and synaptosomal fractions, whereas endogenous mouse tau is virtually absent from synapses. Cytosolic tau was resistant to solubilization with urea and Triton X-100, indicating the formation of larger tau aggregates. By contrast, synaptic tau was partially soluble after Triton X-100 treatment and most likely represents aggregates of smaller size. MS corroborated that synaptosomal tau is nonphosphorylated. Tau enriched in the synapse of line 66 mice, therefore, appears to be in an oligomeric and nonphosphorylated state, and one that could have a direct impact on cognitive function.




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Hepatocyte nuclear factor 1{beta} suppresses canonical Wnt signaling through transcriptional repression of lymphoid enhancer-binding factor 1 [Molecular Bases of Disease]

Hepatocyte nuclear factor-1β (HNF-1β) is a tissue-specific transcription factor that is required for normal kidney development and renal epithelial differentiation. Mutations of HNF-1β produce congenital kidney abnormalities and inherited renal tubulopathies. Here, we show that ablation of HNF-1β in mIMCD3 renal epithelial cells results in activation of β-catenin and increased expression of lymphoid enhancer–binding factor 1 (LEF1), a downstream effector in the canonical Wnt signaling pathway. Increased expression and nuclear localization of LEF1 are also observed in cystic kidneys from Hnf1b mutant mice. Expression of dominant-negative mutant HNF-1β in mIMCD3 cells produces hyperresponsiveness to exogenous Wnt ligands, which is inhibited by siRNA-mediated knockdown of Lef1. WT HNF-1β binds to two evolutionarily conserved sites located 94 and 30 kb from the mouse Lef1 promoter. Ablation of HNF-1β decreases H3K27 trimethylation repressive marks and increases β-catenin occupancy at a site 4 kb upstream to Lef1. Mechanistically, WT HNF-1β recruits the polycomb-repressive complex 2 that catalyzes H3K27 trimethylation. Deletion of the β-catenin–binding domain of LEF1 in HNF-1β–deficient cells abolishes the increase in Lef1 transcription and decreases the expression of downstream Wnt target genes. The canonical Wnt target gene, Axin2, is also a direct transcriptional target of HNF-1β through binding to negative regulatory elements in the gene promoter. These findings demonstrate that HNF-1β regulates canonical Wnt target genes through long-range effects on histone methylation at Wnt enhancers and reveal a new mode of active transcriptional repression by HNF-1β.




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Inhibition of the SUV4-20 H1 histone methyltransferase increases frataxin expression in Friedreich's ataxia patient cells [Gene Regulation]

The molecular mechanisms of reduced frataxin (FXN) expression in Friedreich's ataxia (FRDA) are linked to epigenetic modification of the FXN locus caused by the disease-associated GAA expansion. Here, we identify that SUV4-20 histone methyltransferases, specifically SUV4-20 H1, play an important role in the regulation of FXN expression and represent a novel therapeutic target. Using a human FXN–GAA–Luciferase repeat expansion genomic DNA reporter model of FRDA, we screened the Structural Genomics Consortium epigenetic probe collection. We found that pharmacological inhibition of the SUV4-20 methyltransferases by the tool compound A-196 increased the expression of FXN by ∼1.5-fold in the reporter cell line. In several FRDA cell lines and patient-derived primary peripheral blood mononuclear cells, A-196 increased FXN expression by up to 2-fold, an effect not seen in WT cells. SUV4-20 inhibition was accompanied by a reduction in H4K20me2 and H4K20me3 and an increase in H4K20me1, but only modest (1.4–7.8%) perturbation in genome-wide expression was observed. Finally, based on the structural activity relationship and crystal structure of A-196, novel small molecule A-196 analogs were synthesized and shown to give a 20-fold increase in potency for increasing FXN expression. Overall, our results suggest that histone methylation is important in the regulation of FXN expression and highlight SUV4-20 H1 as a potential novel therapeutic target for FRDA.




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Assad’s extortion fails to ease Syria’s financial crisis

Source

Arab News

Release date

10 February 2020

Expert

Haid Haid

In the news type

Op-ed

Hide date on homepage






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FRET and optical trapping reveal mechanisms of actin activation of the power stroke and phosphate release in myosin V [Enzymology]

Myosins generate force and motion by precisely coordinating their mechanical and chemical cycles, but the nature and timing of this coordination remains controversial. We utilized a FRET approach to examine the kinetics of structural changes in the force-generating lever arm in myosin V. We directly compared the FRET results with single-molecule mechanical events examined by optical trapping. We introduced a mutation (S217A) in the conserved switch I region of the active site to examine how myosin couples structural changes in the actin- and nucleotide-binding regions with force generation. Specifically, S217A enhanced the maximum rate of lever arm priming (recovery stroke) while slowing ATP hydrolysis, demonstrating that it uncouples these two steps. We determined that the mutation dramatically slows both actin-induced rotation of the lever arm (power stroke) and phosphate release (≥10-fold), whereas our simulations suggest that the maximum rate of both steps is unchanged by the mutation. Time-resolved FRET revealed that the structure of the pre– and post–power stroke conformations and mole fractions of these conformations were not altered by the mutation. Optical trapping results demonstrated that S217A does not dramatically alter unitary displacements or slow the working stroke rate constant, consistent with the mutation disrupting an actin-induced conformational change prior to the power stroke. We propose that communication between the actin- and nucleotide-binding regions of myosin assures a proper actin-binding interface and active site have formed before producing a power stroke. Variability in this coupling is likely crucial for mediating motor-based functions such as muscle contraction and intracellular transport.




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Environmental Change and Emerging Diseases

Environmental Change and Emerging Diseases 28 October 2020 — 3:00PM TO 4:00PM Anonymous (not verified) 13 October 2020 Online

Understanding how environmental changes are directly and indirectly affecting the emergence and spread of disease has assumed global importance.

There is growing awareness that deforestation and land-use conversion, urbanization, human migration, international commerce, and climate change are having significant impacts on human health, but their impact on increasing infectious disease risks has only become more evident with the coronavirus pandemic.

With climate change, and environmental change more generally, disrupting ecologies, and people interacting with wildlife in new ways, it creates the conditions for new diseases to emerge: a better understanding of the health dimensions of environmental change will be critical to managing pandemic risks in future. 

Our event will examine the relationship between environmental change and disease, how these linkages have manifested in historical outbreaks and in the coronavirus pandemic, and the role of environmental policies in minimizing the risk of future emerging diseases.  What can be done to ensure equitable action? What can we learn from our responses to previous pandemics? And will the growing recognition of the diverse risks arising from climate change motivate more climate action?

This event will launch the Energy, Environment and Resources (EER) Programme’s Environment and Society Discussion Series. This series aims to provide a platform to promote interdisciplinary knowledge sharing and policy dialogue to mitigate and adapt to the impacts that climate change, biodiversity loss and natural resource depletion are having on people and communities globally, and on geopolitics, security and international development.

Sign up to find out about more events in this series here




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2025 Medicare Part B premium increase outpaces both Social Security COLA and inflation




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Ski resort announces immediate closure as relentless threat brings fewer visitors and increases debts: 'I feel like I'm in mourning'




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Genetic diseases of the Kennedy pathways for membrane synthesis [Molecular Bases of Disease]

The two branches of the Kennedy pathways (CDP-choline and CDP-ethanolamine) are the predominant pathways responsible for the synthesis of the most abundant phospholipids, phosphatidylcholine and phosphatidylethanolamine, respectively, in mammalian membranes. Recently, hereditary diseases associated with single gene mutations in the Kennedy pathways have been identified. Interestingly, genetic diseases within the same pathway vary greatly, ranging from muscular dystrophy to spastic paraplegia to a childhood blinding disorder to bone deformations. Indeed, different point mutations in the same gene (PCYT1; CCTα) result in at least three distinct diseases. In this review, we will summarize and review the genetic diseases associated with mutations in genes of the Kennedy pathway for phospholipid synthesis. These single-gene disorders provide insight, indeed direct genotype-phenotype relationships, into the biological functions of specific enzymes of the Kennedy pathway. We discuss potential mechanisms of how mutations within the same pathway can cause disparate disease.




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Fluctuation in O-GlcNAcylation inactivates STIM1 to reduce store-operated calcium ion entry via down-regulation of Ser621 phosphorylation [Molecular Bases of Disease]

Stromal interaction molecule 1 (STIM1) plays a pivotal role in store-operated Ca2+ entry (SOCE), an essential mechanism in cellular calcium signaling and in maintaining cellular calcium balance. Because O-GlcNAcylation plays pivotal roles in various cellular function, we examined the effect of fluctuation in STIM1 O-GlcNAcylation on SOCE activity. We found that both increase and decrease in STIM1 O-GlcNAcylation impaired SOCE activity. To determine the molecular basis, we established STIM1-knockout HEK293 (STIM1-KO-HEK) cells using the CRISPR/Cas9 system and transfected STIM1 WT (STIM1-KO-WT-HEK), S621A (STIM1-KO-S621A-HEK), or T626A (STIM1-KO-T626A-HEK) cells. Using these cells, we examined the possible O-GlcNAcylation sites of STIM1 to determine whether the sites were O-GlcNAcylated. Co-immunoprecipitation analysis revealed that Ser621 and Thr626 were O-GlcNAcylated and that Thr626 was O-GlcNAcylated in the steady state but Ser621 was not. The SOCE activity in STIM1-KO-S621A-HEK and STIM1-KO-T626A-HEK cells was lower than that in STIM1-KO-WT-HEK cells because of reduced phosphorylation at Ser621. Treatment with the O-GlcNAcase inhibitor Thiamet G or O-GlcNAc transferase (OGT) transfection, which increases O-GlcNAcylation, reduced SOCE activity, whereas treatment with the OGT inhibitor ST045849 or siOGT transfection, which decreases O-GlcNAcylation, also reduced SOCE activity. Decrease in SOCE activity due to increase and decrease in O-GlcNAcylation was attributable to reduced phosphorylation at Ser621. These data suggest that both decrease in O-GlcNAcylation at Thr626 and increase in O-GlcNAcylation at Ser621 in STIM1 lead to impairment of SOCE activity through decrease in Ser621 phosphorylation. Targeting STIM1 O-GlcNAcylation could provide a promising treatment option for the related diseases, such as neurodegenerative diseases.




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N-acetylglucosamine drives myelination by triggering oligodendrocyte precursor cell differentiation [Molecular Bases of Disease]

Myelination plays an important role in cognitive development and in demyelinating diseases like multiple sclerosis (MS), where failure of remyelination promotes permanent neuro-axonal damage. Modification of cell surface receptors with branched N-glycans coordinates cell growth and differentiation by controlling glycoprotein clustering, signaling, and endocytosis. GlcNAc is a rate-limiting metabolite for N-glycan branching. Here we report that GlcNAc and N-glycan branching trigger oligodendrogenesis from precursor cells by inhibiting platelet-derived growth factor receptor-α cell endocytosis. Supplying oral GlcNAc to lactating mice drives primary myelination in newborn pups via secretion in breast milk, whereas genetically blocking N-glycan branching markedly inhibits primary myelination. In adult mice with toxin (cuprizone)-induced demyelination, oral GlcNAc prevents neuro-axonal damage by driving myelin repair. In MS patients, endogenous serum GlcNAc levels inversely correlated with imaging measures of demyelination and microstructural damage. Our data identify N-glycan branching and GlcNAc as critical regulators of primary myelination and myelin repair and suggest that oral GlcNAc may be neuroprotective in demyelinating diseases like MS.




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Ischemic stroke disrupts the endothelial glycocalyx through activation of proHPSE via acrolein exposure [Molecular Bases of Disease]

Infiltration of peripheral immune cells after blood-brain barrier dysfunction causes severe inflammation after a stroke. Although the endothelial glycocalyx, a network of membrane-bound glycoproteins and proteoglycans that covers the lumen of endothelial cells, functions as a barrier to circulating cells, the relationship between stroke severity and glycocalyx dysfunction remains unclear. In this study, glycosaminoglycans, a component of the endothelial glycocalyx, were studied in the context of ischemic stroke using a photochemically induced thrombosis mouse model. Decreased levels of heparan sulfate and chondroitin sulfate and increased activity of hyaluronidase 1 and heparanase (HPSE) were observed in ischemic brain tissues. HPSE expression in cerebral vessels increased after stroke onset and infarct volume greatly decreased after co-administration of N-acetylcysteine + glycosaminoglycan oligosaccharides as compared with N-acetylcysteine administration alone. These results suggest that the endothelial glycocalyx was injured after the onset of stroke. Interestingly, scission activity of proHPSE produced by immortalized endothelial cells and HEK293 cells transfected with hHPSE1 cDNA were activated by acrolein (ACR) exposure. We identified the ACR-modified amino acid residues of proHPSE using nano LC–MS/MS, suggesting that ACR modification of Lys139 (6-kDa linker), Lys107, and Lys161, located in the immediate vicinity of the 6-kDa linker, at least in part is attributed to the activation of proHPSE. Because proHPSE, but not HPSE, localizes outside cells by binding with heparan sulfate proteoglycans, ACR-modified proHPSE represents a promising target to protect the endothelial glycocalyx.




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{alpha}2-Macroglobulin-like protein 1 can con&#x0237;ugate and inhibit proteases through their hydroxyl groups, because of an enhanced reactivity of its thiol ester [Protein Structure and Folding]

Proteins in the α-macroglobulin (αM) superfamily use thiol esters to form covalent conjugation products upon their proteolytic activation. αM protease inhibitors use theirs to conjugate proteases and preferentially react with primary amines (e.g. on lysine side chains), whereas those of αM complement components C3 and C4B have an increased hydroxyl reactivity that is conveyed by a conserved histidine residue and allows conjugation to cell surface glycans. Human α2-macroglobulin–like protein 1 (A2ML1) is a monomeric protease inhibitor but has the hydroxyl reactivity–conveying histidine residue. Here, we have investigated the role of hydroxyl reactivity in a protease inhibitor by comparing recombinant WT A2ML1 and the A2ML1 H1084N mutant in which this histidine is removed. Both of A2ML1s' thiol esters were reactive toward the amine substrate glycine, but only WT A2ML1 reacted with the hydroxyl substrate glycerol, demonstrating that His-1084 increases the hydroxyl reactivity of A2ML1's thiol ester. Although both A2ML1s conjugated and inhibited thermolysin, His-1084 was required for the conjugation and inhibition of acetylated thermolysin, which lacks primary amines. Using MS, we identified an ester bond formed between a thermolysin serine residue and the A2ML1 thiol ester. These results demonstrate that a histidine-enhanced hydroxyl reactivity can contribute to protease inhibition by an αM protein. His-1084 did not improve A2ML1's protease inhibition at pH 5, indicating that A2ML1's hydroxyl reactivity is not an adaption to its acidic epidermal environment.




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Representative cancer-associated U2AF2 mutations alter RNA interactions and splicing [Molecular Bases of Disease]

High-throughput sequencing of hematologic malignancies and other cancers has revealed recurrent mis-sense mutations of genes encoding pre-mRNA splicing factors. The essential splicing factor U2AF2 recognizes a polypyrimidine-tract splice-site signal and initiates spliceosome assembly. Here, we investigate representative, acquired U2AF2 mutations, namely N196K or G301D amino acid substitutions associated with leukemia or solid tumors, respectively. We determined crystal structures of the wild-type (WT) compared with N196K- or G301D-substituted U2AF2 proteins, each bound to a prototypical AdML polypyrimidine tract, at 1.5, 1.4, or 1.7 Å resolutions. The N196K residue appears to stabilize the open conformation of U2AF2 with an inter-RNA recognition motif hydrogen bond, in agreement with an increased apparent RNA-binding affinity of the N196K-substituted protein. The G301D residue remains in a similar position as the WT residue, where unfavorable proximity to the RNA phosphodiester could explain the decreased RNA-binding affinity of the G301D-substituted protein. We found that expression of the G301D-substituted U2AF2 protein reduces splicing of a minigene transcript carrying prototypical splice sites. We further show that expression of either N196K- or G301D-substituted U2AF2 can subtly alter splicing of representative endogenous transcripts, despite the presence of endogenous, WT U2AF2 such as would be present in cancer cells. Altogether, our results demonstrate that acquired U2AF2 mutations such as N196K and G301D are capable of dysregulating gene expression for neoplastic transformation.




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Antibiotic binding releases autoinhibition of the TipA multidrug-resistance transcriptional regulator [Gene Regulation]

Investigations of bacterial resistance strategies can aid in the development of new antimicrobial drugs as a countermeasure to the increasing worldwide prevalence of bacterial antibiotic resistance. One such strategy involves the TipA class of transcription factors, which constitute minimal autoregulated multidrug resistance (MDR) systems against diverse antibiotics. However, we have insufficient information regarding how antibiotic binding induces transcriptional activation to design molecules that could interfere with this process. To learn more, we determined the crystal structure of SkgA from Caulobacter crescentus as a representative TipA protein. We identified an unexpected spatial orientation and location of the antibiotic-binding TipAS effector domain in the apo state. We observed that the α6–α7 region of the TipAS domain, which is canonically responsible for forming the lid of antibiotic-binding cleft to tightly enclose the bound antibiotic, is involved in the dimeric interface and stabilized via interaction with the DNA-binding domain in the apo state. Further structural and biochemical analyses demonstrated that the unliganded TipAS domain sterically hinders promoter DNA binding but undergoes a remarkable conformational shift upon antibiotic binding to release this autoinhibition via a switch of its α6–α7 region. Hence, the promoters for MDR genes including tipA and RNA polymerases become available for transcription, enabling efficient antibiotic resistance. These insights into the molecular mechanism of activation of TipA proteins advance our understanding of TipA proteins, as well as bacterial MDR systems, and may provide important clues to block bacterial resistance.




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Lipid-tuned Zinc Transport Activity of Human ZnT8 Protein Correlates with Risk for Type-2 Diabetes [Molecular Bases of Disease]

Zinc is a critical element for insulin storage in the secretory granules of pancreatic beta cells. The islet-specific zinc transporter ZnT8 mediates granular sequestration of zinc ions. A genetic variant of human ZnT8 arising from a single nonsynonymous nucleotide change contributes to increased susceptibility to type-2 diabetes (T2D), but it remains unclear how the high risk variant (Arg-325), which is also a higher frequency (>50%) allele, is correlated with zinc transport activity. Here, we compared the activity of Arg-325 with that of a low risk ZnT8 variant (Trp-325). The Arg-325 variant was found to be more active than the Trp-325 form following induced expression in HEK293 cells. We further examined the functional consequences of changing lipid conditions to mimic the impact of lipid remodeling on ZnT8 activity during insulin granule biogenesis. Purified ZnT8 variants in proteoliposomes exhibited more than 4-fold functional tunability by the anionic phospholipids, lysophosphatidylcholine and cholesterol. Over a broad range of permissive lipid compositions, the Arg-325 variant consistently exhibited accelerated zinc transport kinetics versus the Trp-form. In agreement with the human genetic finding that rare loss-of-function mutations in ZnT8 are associated with reduced T2D risk, our results suggested that the common high risk Arg-325 variant is hyperactive, and thus may be targeted for inhibition to reduce T2D risk in the general populations.




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Coronavirus infection and PARP expression dysregulate the NAD metabolome: An actionable component of innate immunity [Molecular Bases of Disease]

Poly(ADP-ribose) polymerase (PARP) superfamily members covalently link either a single ADP-ribose (ADPR) or a chain of ADPR units to proteins using NAD as the source of ADPR. Although the well-known poly(ADP-ribosylating) (PARylating) PARPs primarily function in the DNA damage response, many noncanonical mono(ADP-ribosylating) (MARylating) PARPs are associated with cellular antiviral responses. We recently demonstrated robust up-regulation of several PARPs following infection with murine hepatitis virus (MHV), a model coronavirus. Here we show that SARS-CoV-2 infection strikingly up-regulates MARylating PARPs and induces the expression of genes encoding enzymes for salvage NAD synthesis from nicotinamide (NAM) and nicotinamide riboside (NR), while down-regulating other NAD biosynthetic pathways. We show that overexpression of PARP10 is sufficient to depress cellular NAD and that the activities of the transcriptionally induced enzymes PARP7, PARP10, PARP12 and PARP14 are limited by cellular NAD and can be enhanced by pharmacological activation of NAD synthesis. We further demonstrate that infection with MHV induces a severe attack on host cell NAD+ and NADP+. Finally, we show that NAMPT activation, NAM, and NR dramatically decrease the replication of an MHV that is sensitive to PARP activity. These data suggest that the antiviral activities of noncanonical PARP isozyme activities are limited by the availability of NAD and that nutritional and pharmacological interventions to enhance NAD levels may boost innate immunity to coronaviruses.




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Guidance and best practices for nuclear cardiology laboratories during the coronavirus disease 2019 (COVID-19) pandemic: An Information Statement from ASNC and SNMMI




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Comparison of Posttherapy 4- and 24-Hour [177Lu]Lu-PSMA SPECT/CT and Pretherapy PSMA PET/CT in Assessment of Disease in Men with Metastatic Castration-Resistant Prostate Cancer

Visual Abstract




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Citrus Vascular Proteomics Highlights the Role of Peroxidases and Serine Proteases during Huanglongbing Disease Progression

Jessica Y. Franco
Dec 1, 2020; 19:1936-1951
Research