phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Tue, 19 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Mon, 18 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Sun, 17 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Sat, 16 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Fri, 15 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Slavic/REEES Grad Film Series| Bordenlens: Queer Outlines of Geography and Gender By www.princeton.edu Published On :: Thu, 14 Nov 2024 18:30:00 -0500 REEES/Slavic Grad Film Series Bordenlens: Queer Outlines of Geography and Gender Organized by Sofia Guerra Sponsored by the Program in Russian, East European and Eurasian Studies, the Department of Slavic Languages and Literatures, the Humanities Council, the Princeton Institute for International and Regional Studies and the Program in Gender and Sexuality Studies. All Films Shown with English Subtitles Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Thu, 14 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy Exhibition — Poetic Record: Photography in a Transformed World By www.princeton.edu Published On :: Wed, 13 Nov 2024 10:00:00 -0500 Exhibition co-curated by Princeton professor Deana Lawson and Michael Famighetti, editor-in-chief of Aperture magazine. Featuring work by 23 artists who explore the poetics of photography, its instability, and its latent potential. Hurley Gallery open daily 10 AM - 8 PM. Gallery closed 11/28-12/1 for Thanksgiving; reopens 12/2-5. Full Article
phy 10 Best Fountain Pen For Calligraphy for Beginners 2024 – Create Ornamental Lettering and Symbols By www.star2.org Published On :: Sun, 01 Jan 2023 18:29:51 +0000 Calligraphy indeed requires practice and patience but having the right calligraphy supplies does help your case. Thus, having the Best Fountain Pen For Calligraphy. The post 10 Best Fountain Pen For Calligraphy for Beginners 2024 – Create Ornamental Lettering and Symbols appeared first on Star Two. Full Article Entertainment Best Fountain Pen For Calligraphy Best Fountain Pen for Drawing Lettering Ornamental Symbols
phy The ice cream that changed physics By www.pbs.org Published On :: Thu, 01 Sep 2022 18:43:48 +0000 Sixty years ago a teenager’s homemade ice cream raised a surprisingly complicated question: Can hot liquids freeze faster than cold ones? Full Article
phy India Abraham: Healing physical and psychological scars through medical tattooing By www.jpost.com Published On :: Sun, 10 Nov 2024 08:41:01 GMT Jerusalemite of the week: India Abraham is a practitioner of medical tattooing who had already helped scores of people before Oct. 7, but her work has taken on even greater significance since then. Full Article health cancer Tattoos Beauty Jerusalemite of the Week
phy New biography shows an evil Woodrow Wilson By quinhillyer.com Published On :: Tue, 29 Oct 2024 00:54:47 +0000 (Oct. 28) The roots of this nation’s Progressive Movement were racist, repressive, dismissive of the First Amendment and other civil liberties, and hostile to women’s rights to vote or to petition elected officials. Those […] The post New biography shows an evil Woodrow Wilson appeared first on Quin Hillyer. Full Article National Politics Sports and Culture
phy 'Hybrid' Champions Trophy not acceptable - PCB By www.bbc.com Published On :: Fri, 08 Nov 2024 17:26:36 GMT A 'hybrid model' for hosting the Champions Trophy will not be accepted by Pakistan, according to its Cricket Board chairman Mohsin Naqvi. Full Article
phy India will not travel to Champions Trophy - PCB By www.bbc.com Published On :: Mon, 11 Nov 2024 11:42:14 GMT India has informed the International Cricket Council it will not travel to the Champions Trophy, according to hosts Pakistan. Full Article
phy Keeper's penalty heroics send Wigan through in EFL Trophy By www.bbc.com Published On :: Tue, 12 Nov 2024 22:38:48 GMT Wigan Athletic goalkeeper Tom Watson saves all three penalties in a shootout victory over Nottingham Forest U21s to send them through to the EFL Trophy knockout phase. Full Article
phy The Best Places in Brazil for Photography By brendansadventures.com Published On :: Sun, 18 Feb 2024 13:41:25 +0000 I’m not sure why, but Brazil seems to be somewhat overlooked by photographers. It doesn’t quite add up for those who have extensively traveled the country. It’s such a beautiful nation. Hopefully, this guide to the best places in Brazil for photography will encourage a few photographers to give this wonderfully diverse country a chance. In this guide, I’ll delve into some of the top spots to capture stunning photos in Brazil, while also addressing some of the logistical challenges […] The post The Best Places in Brazil for Photography appeared first on Brendan van Son Photography. Full Article Travel Photography Blog Brazil
phy What is Travel Photography? By brendansadventures.com Published On :: Sun, 18 Feb 2024 21:15:25 +0000 The genres of photography are so often mischaracterized. But, most of these genres are at least pretty obvious. In street photography, you’re photographing the street life. In landscape photography, you’re photographing the landscapes. And of course in wildlife photography you’re photographing the, well, you get the idea. So what is travel photography? What makes travel photography so interesting is that it isn’t a subject that you’re photographing: it’s an activity. But also, it is a subject…? Wait… let me explain. […] The post What is Travel Photography? appeared first on Brendan van Son Photography. Full Article Travel Photography Blog travel photography
phy Is AI Photography Here to Stay? Ethics, Goals, and Questions. By brendansadventures.com Published On :: Sun, 25 Feb 2024 09:04:57 +0000 I’ve been toying at the idea of recording a podcast about my thoughts on AI photography for a while now. For a while, I’ve put it off because I really don’t know if I want to add any more volume to a subject that’s already been talked about and debated for a while. But, it seems like AI photography, or even just AI photography tools aren’t going anywhere. So, here are my thoughts, questions, and my own personal ethics when […] The post Is AI Photography Here to Stay? Ethics, Goals, and Questions. appeared first on Brendan van Son Photography. Full Article Travel Photography Blog AI generated photography
phy Physicists find evidence of "negative time" in photons By boingboing.net Published On :: Tue, 01 Oct 2024 19:58:15 +0000 Time's arrow may not be as unidirectional as we were led to believe. According to Scientific American, a group of quantum physical researchers at the University of Toronto had observed evidence of what they're calling "negative time"—specifically, of photons exiting a material before they ever entered it, to begin with. — Read the rest The post Physicists find evidence of "negative time" in photons appeared first on Boing Boing. Full Article Post about time are we living in a parallel timeline? negative time physics quantum culture quantum mechanics quantum physics quantum weirdness subjective temporal experiences temporal anomalies temporal distortion time
phy Unusual zwitterionic catalytic site of SARS-CoV-2 main protease revealed by neutron crystallography [Enzymology] By www.jbc.org Published On :: 2020-12-11T00:06:21-08:00 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. Full Article
phy Toward a Comprehensive Atlas of the Physical Interactome of Saccharomyces cerevisiae By www.mcponline.org Published On :: 2007-03-01 Sean R. CollinsMar 1, 2007; 6:439-450Research Full Article
phy A Multidimensional Chromatography Technology for In-depth Phosphoproteome Analysis By www.mcponline.org Published On :: 2008-07-01 Claudio P. AlbuquerqueJul 1, 2008; 7:1389-1396Research Full Article
phy Development and validation of a high-throughput whole cell assay to investigate Staphylococcus aureus adhesion to host ligands [Microbiology] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Staphylococcus aureus adhesion to the host's skin and mucosae enables asymptomatic colonization and the establishment of infection. This process is facilitated by cell wall-anchored adhesins that bind to host ligands. Therapeutics targeting this process could provide significant clinical benefits; however, the development of anti-adhesives requires an in-depth knowledge of adhesion-associated factors and an assay amenable to high-throughput applications. Here, we describe the development of a sensitive and robust whole cell assay to enable the large-scale profiling of S. aureus adhesion to host ligands. To validate the assay, and to gain insight into cellular factors contributing to adhesion, we profiled a sequence-defined S. aureus transposon mutant library, identifying mutants with attenuated adhesion to human-derived fibronectin, keratin, and fibrinogen. Our screening approach was validated by the identification of known adhesion-related proteins, such as the housekeeping sortase responsible for covalently linking adhesins to the cell wall. In addition, we also identified genetic loci that could represent undescribed anti-adhesive targets. To compare and contrast the genetic requirements of adhesion to each host ligand, we generated a S. aureus Genetic Adhesion Network, which identified a core gene set involved in adhesion to all three host ligands, and unique genetic signatures. In summary, this assay will enable high-throughput chemical screens to identify anti-adhesives and our findings provide insight into the target space of such an approach. Full Article
phy Identification of a domain critical for Staphylococcus aureus LukED receptor targeting and lysis of erythrocytes [Molecular Bases of Disease] By www.jbc.org Published On :: 2020-12-11T00:06:21-08:00 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. Full Article
phy Genes, Germs and Geography: The Future of Medicine By f1.media.brightcove.com Published On :: Tue, 24 Apr 2018 00:00:00 +0100 Full Article
phy Molecular physiology of reverse cholesterol transport By www.jlr.org Published On :: 1995-02-01 CJ FieldingFeb 1, 1995; 36:211-228Reviews Full Article
phy Functional and structural characterization of allosteric activation of phospholipase Cϵ by Rap1A [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Phospholipase Cε (PLCε) is activated downstream of G protein–coupled receptors and receptor tyrosine kinases through direct interactions with small GTPases, including Rap1A and Ras. Although Ras has been reported to allosterically activate the lipase, it is not known whether Rap1A has the same ability or what its molecular mechanism might be. Rap1A activates PLCε in response to the stimulation of β-adrenergic receptors, translocating the complex to the perinuclear membrane. Because the C-terminal Ras association (RA2) domain of PLCε was proposed to the primary binding site for Rap1A, we first confirmed using purified proteins that the RA2 domain is indeed essential for activation by Rap1A. However, we also showed that the PLCε pleckstrin homology (PH) domain and first two EF hands (EF1/2) are required for Rap1A activation and identified hydrophobic residues on the surface of the RA2 domain that are also necessary. Small-angle X-ray scattering showed that Rap1A binding induces and stabilizes discrete conformational states in PLCε variants that can be activated by the GTPase. These data, together with the recent structure of a catalytically active fragment of PLCε, provide the first evidence that Rap1A, and by extension Ras, allosterically activate the lipase by promoting and stabilizing interactions between the RA2 domain and the PLCε core. Full Article
phy Biochemical and biophysical analyses of hypoxia sensing prolyl hydroxylases from Dictyostelium discoideum and Toxoplasma gondii [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 In animals, the response to chronic hypoxia is mediated by prolyl hydroxylases (PHDs) that regulate the levels of hypoxia-inducible transcription factor α (HIFα). PHD homologues exist in other types of eukaryotes and prokaryotes where they act on non HIF substrates. To gain insight into the factors underlying different PHD substrates and properties, we carried out biochemical and biophysical studies on PHD homologues from the cellular slime mold, Dictyostelium discoideum, and the protozoan parasite, Toxoplasma gondii, both lacking HIF. The respective prolyl-hydroxylases (DdPhyA and TgPhyA) catalyze prolyl-hydroxylation of S-phase kinase-associated protein 1 (Skp1), a reaction enabling adaptation to different dioxygen availability. Assays with full-length Skp1 substrates reveal substantial differences in the kinetic properties of DdPhyA and TgPhyA, both with respect to each other and compared with human PHD2; consistent with cellular studies, TgPhyA is more active at low dioxygen concentrations than DdPhyA. TgSkp1 is a DdPhyA substrate and DdSkp1 is a TgPhyA substrate. No cross-reactivity was detected between DdPhyA/TgPhyA substrates and human PHD2. The human Skp1 E147P variant is a DdPhyA and TgPhyA substrate, suggesting some retention of ancestral interactions. Crystallographic analysis of DdPhyA enables comparisons with homologues from humans, Trichoplax adhaerens, and prokaryotes, informing on differences in mobile elements involved in substrate binding and catalysis. In DdPhyA, two mobile loops that enclose substrates in the PHDs are conserved, but the C-terminal helix of the PHDs is strikingly absent. The combined results support the proposal that PHD homologues have evolved kinetic and structural features suited to their specific sensing roles. Full Article
phy Building better polymerases: Engineering the replication of expanded genetic alphabets [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-11T00:06:20-08:00 DNA polymerases are today used throughout scientific research, biotechnology, and medicine, in part for their ability to interact with unnatural forms of DNA created by synthetic biologists. Here especially, natural DNA polymerases often do not have the “performance specifications” needed for transformative technologies. This creates a need for science-guided rational (or semi-rational) engineering to identify variants that replicate unnatural base pairs (UBPs), unnatural backbones, tags, or other evolutionarily novel features of unnatural DNA. In this review, we provide a brief overview of the chemistry and properties of replicative DNA polymerases and their evolved variants, focusing on the Klenow fragment of Taq DNA polymerase (Klentaq). We describe comparative structural, enzymatic, and molecular dynamics studies of WT and Klentaq variants, complexed with natural or noncanonical substrates. Combining these methods provides insight into how specific amino acid substitutions distant from the active site in a Klentaq DNA polymerase variant (ZP Klentaq) contribute to its ability to replicate UBPs with improved efficiency compared with Klentaq. This approach can therefore serve to guide any future rational engineering of replicative DNA polymerases. Full Article
phy Novel fluorescent GPCR biosensor detects retinal equilibrium binding to opsin and active G protein and arrestin signaling conformations [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Rhodopsin is a canonical class A photosensitive G protein–coupled receptor (GPCR), yet relatively few pharmaceutical agents targeting this visual receptor have been identified, in part due to the unique characteristics of its light-sensitive, covalently bound retinal ligands. Rhodopsin becomes activated when light isomerizes 11-cis-retinal into an agonist, all-trans-retinal (ATR), which enables the receptor to activate its G protein. We have previously demonstrated that, despite being covalently bound, ATR can display properties of equilibrium binding, yet how this is accomplished is unknown. Here, we describe a new approach for both identifying compounds that can activate and attenuate rhodopsin and testing the hypothesis that opsin binds retinal in equilibrium. Our method uses opsin-based fluorescent sensors, which directly report the formation of active receptor conformations by detecting the binding of G protein or arrestin fragments that have been fused onto the receptor's C terminus. We show that these biosensors can be used to monitor equilibrium binding of the agonist, ATR, as well as the noncovalent binding of β-ionone, an antagonist for G protein activation. Finally, we use these novel biosensors to observe ATR release from an activated, unlabeled receptor and its subsequent transfer to the sensor in real time. Taken together, these data support the retinal equilibrium binding hypothesis. The approach we describe should prove directly translatable to other GPCRs, providing a new tool for ligand discovery and mutant characterization. Full Article
phy Structural basis for allosteric regulation of pyruvate kinase M2 by phosphorylation and acetylation [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Pyruvate kinase muscle isoform 2 (PKM2) is a key glycolytic enzyme and transcriptional coactivator and is critical for tumor metabolism. In cancer cells, native tetrameric PKM2 is phosphorylated or acetylated, which initiates a switch to a dimeric/monomeric form that translocates into the nucleus, causing oncogene transcription. However, it is not known how these post-translational modifications (PTMs) disrupt the oligomeric state of PKM2. We explored this question via crystallographic and biophysical analyses of PKM2 mutants containing residues that mimic phosphorylation and acetylation. We find that the PTMs elicit major structural reorganization of the fructose 1,6-bisphosphate (FBP), an allosteric activator, binding site, impacting the interaction with FBP and causing a disruption in oligomerization. To gain insight into how these modifications might cause unique outcomes in cancer cells, we examined the impact of increasing the intracellular pH (pHi) from ∼7.1 (in normal cells) to ∼7.5 (in cancer cells). Biochemical studies of WT PKM2 (wtPKM2) and the two mimetic variants demonstrated that the activity decreases as the pH is increased from 7.0 to 8.0, and wtPKM2 is optimally active and amenable to FBP-mediated allosteric regulation at pHi 7.5. However, the PTM mimetics exist as a mixture of tetramer and dimer, indicating that physiologically dimeric fraction is important and might be necessary for the modified PKM2 to translocate into the nucleus. Thus, our findings provide insight into how PTMs and pH regulate PKM2 and offer a broader understanding of its intricate allosteric regulation mechanism by phosphorylation or acetylation. Full Article
phy Mapping invisible epitopes by NMR spectroscopy [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Defining discontinuous antigenic epitopes remains a substantial challenge, as exemplified by the case of lipid transfer polyproteins, which are common pollen allergens. Hydrogen/deuterium exchange monitored by NMR can be used to map epitopes onto folded protein surfaces, but only if the complex rapidly dissociates. Modifying the standard NMR-exchange measurement to detect substoichiometric complexes overcomes this time scale limitation and provides new insights into recognition of lipid transfer polyprotein by antibodies. In the future, this new and exciting development should see broad application to a range of tight macromolecular interactions. Full Article
phy Co-crystal structures of HIV TAR RNA bound to lab-evolved proteins show key roles for arginine relevant to the design of cyclic peptide TAR inhibitors [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 RNA-protein interfaces control key replication events during the HIV-1 life cycle. The viral trans-activator of transcription (Tat) protein uses an archetypal arginine-rich motif (ARM) to recruit the host positive transcription elongation factor b (pTEFb) complex onto the viral trans-activation response (TAR) RNA, leading to activation of HIV transcription. Efforts to block this interaction have stimulated production of biologics designed to disrupt this essential RNA-protein interface. Here, we present four co-crystal structures of lab-evolved TAR-binding proteins (TBPs) in complex with HIV-1 TAR. Our results reveal that high-affinity binding requires a distinct sequence and spacing of arginines within a specific β2-β3 hairpin loop that arose during selection. Although loops with as many as five arginines were analyzed, only three arginines could bind simultaneously with major-groove guanines. Amino acids that promote backbone interactions within the β2-β3 loop were also observed to be important for high-affinity interactions. Based on structural and affinity analyses, we designed two cyclic peptide mimics of the TAR-binding β2-β3 loop sequences present in two high-affinity TBPs (KD values of 4.2 ± 0.3 and 3.0 ± 0.3 nm). Our efforts yielded low-molecular weight compounds that bind TAR with low micromolar affinity (KD values ranging from 3.6 to 22 μm). Significantly, one cyclic compound within this series blocked binding of the Tat-ARM peptide to TAR in solution assays, whereas its linear counterpart did not. Overall, this work provides insight into protein-mediated TAR recognition and lays the ground for the development of cyclic peptide inhibitors of a vital HIV-1 RNA-protein interaction. Full Article
phy Higher Structures in Topology, Geometry, and Physics By www.ams.org Published On :: Mon, 01 Jul 2024 10:29 EDT Ralph M. Kaufmann, Martin Markl and Alexander A. Voronov, editors. American Mathematical Society, 2024, CONM, volume 802, approx. 330 pp. ISBN: 978-1-4704-7142-2 (print), 978-1-4704-7642-7 (online). This volume contains the proceedings of the AMS Special Session on Higher Structures in Topology, Geometry, and Physics, held virtually on March... Full Article
phy LEGO Classic Space: the robot final rebellion on the capital planet ousts the federation rule and replace with a techno republic and dictatorship (the final episode (for a while)) (AFOL toy hobby photography with droids, police and minifigures city MOC By www.flickr.com Published On :: Tue, 12 Nov 2024 05:00:15 -0800 dannyhennesy posted a photo: On the Capital planet the rebellious droids had followed maily the Bat-Bot, but as time progressed his circuits had gone all mushy at 780 years or so without maintenance… Several splinter groups all with their local bot leaders emerged such as the Che-bot, the traffic-light-robot and the Butt-bot, but none of these collected enough sentient circuits to call themselves a popular (or Animata) mass movement! That was until a cyborg came along, one known as Jones, a long time prisoner and terrorist, his easy solutions to every problem rang well in the masses' auditory circuits!!! His slogans and simple rhetoric were simple enough for the simple traffic-light to comprehend and cheer! His language was full of hate towards the organics and especially the humans who were the most common races among the ruling class of the federation!!! Despite being a “Fleshie” himself his message collected the angry enslaved bot community by only weeks all rebellious robots except for a few fringe loonies had forgotten the old leaders… One morning at Jones gave the signal… All over the capital planet hordes and swarms of any form of mechanical sentient beings attacked first the police stations, then the Company boards running the planet and the federation as well as their starfleet… Many died, especially the low level police and army! Many mechanicals died too, but their ranks were soon filled by Mutant fleshie allies of the lower levels who hated the Federation feudal society and upper classes as much as their technological allies… The Federation state apparatus and ruling class, most of their fleet army fled when they knew the game was up, they activated the emergency escape plan and whole city blocks with important factories, administrational units, valuable assets and so on separated from the capital by hidden rocket engines and homed in their course to Mars… On Mars the federation regrouped and formed their new society… On the Capital planet, the robots proclaimed the first Techno-republic of the advanced inorganic civilization, the low level fleshies left behind, became slaves and their mutant allies got to rule their own minute chiefdoms as protectorates under the Techno-republic… Jones was now the undisputed ruler of the capital planet, but the victory was a pyrros one since, all important buildings, all of value was now one Mars! But as Jones put it: Our proud race the Techno-species didn’t need the Fleshies administration, their infrastructure, their spaceships… We shall start from scratch, with a new administration, a new order, every droid shall work at 4x speed than they did during human oppression since now we are free and the fleshies shall work twice as hard than the Techno-Race, until we have breed enough new fleshies so they can do all work! Our future is bright and shiny like glistering shiny metal! The snapshot seen here is from the first police station attacked in sector 45-34v-ss-g the first one to fall according to official techno-history! ———————————————/ Designers note: I am sad to say that this is the last episode in this years-spanning space series… At least for a while, I will still post LEGO hobby stuff here but without a storyline, perhaps small designs and builds… and occasionally a story when I feel like it!!! I would like to thank all who had been in this journey of our heros, but it has taken far to much time and effort and since the state of the world is as it is, I am spiraling down in another depression, I must stop it before I reach the abyss, so I have remove some stress out of my equation… I ended it in a cliffhanger so I can easily restart it when my mental health improves… I hope that won’t be forever??? I would love if someone used my characters or ideas, please send me a link if you do, I would love to read it or look at it!!! But there will be more Lego, just in different format without long stories, I need to focus more on my art and to be honest that is the only time the mental pain eases, when I create!!! Peace and Noise! MushroomBrain a FOL Full Article
phy Structural and biochemical characteristics of two Staphylococcus epidermidis RNase J paralogs RNase J1 and RNase J2 [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-04T00:06:06-08:00 RNase J enzymes are metallohydrolases that are involved in RNA maturation and RNA recycling, govern gene expression in bacteria, and catalyze both exonuclease and endonuclease activity. The catalytic activity of RNase J is regulated by multiple mechanisms which include oligomerization, conformational changes to aid substrate recognition, and the metal cofactor at the active site. However, little is known of how RNase J paralogs differ in expression and activity. Here we describe structural and biochemical features of two Staphylococcus epidermidis RNase J paralogs, RNase J1 and RNase J2. RNase J1 is a homodimer with exonuclease activity aided by two metal cofactors at the active site. RNase J2, on the other hand, has endonuclease activity and one metal ion at the active site and is predominantly a monomer. We note that the expression levels of these enzymes vary across Staphylococcal strains. Together, these observations suggest that multiple interacting RNase J paralogs could provide a strategy for functional improvisation utilizing differences in intracellular concentration, quaternary structure, and distinct active site architecture despite overall structural similarity. Full Article
phy The cation diffusion facilitator protein MamM's cytoplasmic domain exhibits metal-type dependent binding modes and discriminates against Mn2+ [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:05-08:00 Cation diffusion facilitator (CDF) proteins are a conserved family of divalent transition metal cation transporters. CDF proteins are usually composed of two domains: the transmembrane domain, in which the metal cations are transported through, and a regulatory cytoplasmic C-terminal domain (CTD). Each CDF protein transports either one specific metal or multiple metals from the cytoplasm, and it is not known whether the CTD takes an active regulatory role in metal recognition and discrimination during cation transport. Here, the model CDF protein MamM, an iron transporter from magnetotactic bacteria, was used to probe the role of the CTD in metal recognition and selectivity. Using a combination of biophysical and structural approaches, the binding of different metals to MamM CTD was characterized. Results reveal that different metals bind distinctively to MamM CTD in terms of their binding sites, thermodynamics, and binding-dependent conformations, both in crystal form and in solution, which suggests a varying level of functional discrimination between CDF domains. Furthermore, these results provide the first direct evidence that CDF CTDs play a role in metal selectivity. We demonstrate that MamM's CTD can discriminate against Mn2+, supporting its postulated role in preventing magnetite formation poisoning in magnetotactic bacteria via Mn2+ incorporation. Full Article
phy Snapshots during the catalytic cycle of a histidine acid phytase reveal an induced-fit structural mechanism [Protein Structure and Folding] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Highly engineered phytases, which sequentially hydrolyze the hexakisphosphate ester of inositol known as phytic acid, are routinely added to the feeds of monogastric animals to improve phosphate bioavailability. New phytases are sought as starting points to further optimize the rate and extent of dephosphorylation of phytate in the animal digestive tract. Multiple inositol polyphosphate phosphatases (MINPPs) are clade 2 histidine phosphatases (HP2P) able to carry out the stepwise hydrolysis of phytate. MINPPs are not restricted by a strong positional specificity making them attractive targets for development as feed enzymes. Here, we describe the characterization of a MINPP from the Gram-positive bacterium Bifidobacterium longum (BlMINPP). BlMINPP has a typical HP2P-fold but, unusually, possesses a large α-domain polypeptide insertion relative to other MINPPs. This insertion, termed the U-loop, spans the active site and contributes to substrate specificity pockets underpopulated in other HP2Ps. Mutagenesis of U-loop residues reveals its contribution to enzyme kinetics and thermostability. Moreover, four crystal structures of the protein along the catalytic cycle capture, for the first time in an HP2P, a large ligand-driven α-domain motion essential to allow substrate access to the active site. This motion recruits residues both downstream of a molecular hinge and on the U-loop to participate in specificity subsites, and mutagenesis identified a mobile lysine residue as a key determinant of positional specificity of the enzyme. Taken together, these data provide important new insights to the factors determining stability, substrate recognition, and the structural mechanism of hydrolysis in this industrially important group of enzymes. Full Article
phy Mapping the transition state for a binding reaction between ancient intrinsically disordered proteins [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-18T00:06:18-08:00 Intrinsically disordered protein domains often have multiple binding partners. It is plausible that the strength of pairing with specific partners evolves from an initial low affinity to a higher affinity. However, little is known about the molecular changes in the binding mechanism that would facilitate such a transition. We previously showed that the interaction between two intrinsically disordered domains, NCBD and CID, likely emerged in an ancestral deuterostome organism as a low-affinity interaction that subsequently evolved into a higher-affinity interaction before the radiation of modern vertebrate groups. Here we map native contacts in the transition states of the low-affinity ancestral and high-affinity human NCBD/CID interactions. We show that the coupled binding and folding mechanism is overall similar but with a higher degree of native hydrophobic contact formation in the transition state of the ancestral complex and more heterogeneous transient interactions, including electrostatic pairings, and an increased disorder for the human complex. Adaptation to new binding partners may be facilitated by this ability to exploit multiple alternative transient interactions while retaining the overall binding and folding pathway. Full Article
phy Seeded fibrils of the germline variant of human {lambda}-III immunoglobulin light chain FOR005 have a similar core as patient fibrils with reduced stability [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Systemic antibody light chains (AL) amyloidosis is characterized by deposition of amyloid fibrils derived from a particular antibody light chain. Cardiac involvement is a major risk factor for mortality. Using MAS solid-state NMR, we studied the fibril structure of a recombinant light chain fragment corresponding to the fibril protein from patient FOR005, together with fibrils formed by protein sequence variants that are derived from the closest germline (GL) sequence. Both analyzed fibril structures were seeded with ex-vivo amyloid fibrils purified from the explanted heart of this patient. We find that residues 11-42 and 69-102 adopt β-sheet conformation in patient protein fibrils. We identify arginine-49 as a key residue that forms a salt bridge to aspartate-25 in the patient protein fibril structure. In the germline sequence, this residue is replaced by a glycine. Fibrils from the GL protein and from the patient protein harboring the single point mutation R49G can be both heterologously seeded using patient ex-vivo fibrils. Seeded R49G fibrils show an increased heterogeneity in the C-terminal residues 80-102, which is reflected by the disappearance of all resonances of these residues. By contrast, residues 11-42 and 69-77, which are visible in the MAS solid-state NMR spectra, show 13Cα chemical shifts that are highly like patient fibrils. The mutation R49G thus induces a conformational heterogeneity at the C terminus in the fibril state, whereas the overall fibril topology is retained. These findings imply that patient mutations in FOR005 can stabilize the fibril structure. Full Article
phy Determinants of replication protein A subunit interactions revealed using a phosphomimetic peptide [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Replication protein A (RPA) is a eukaryotic ssDNA-binding protein and contains three subunits: RPA70, RPA32, and RPA14. Phosphorylation of the N-terminal region of the RPA32 subunit plays an essential role in DNA metabolism in processes such as replication and damage response. Phosphorylated RPA32 (pRPA32) binds to RPA70 and possibly regulates the transient RPA70-Bloom syndrome helicase (BLM) interaction to inhibit DNA resection. However, the structural details and determinants of the phosphorylated RPA32–RPA70 interaction are still unknown. In this study, we provide molecular details of the interaction between RPA70 and a mimic of phosphorylated RPA32 (pmRPA32) using fluorescence polarization and NMR analysis. We show that the N-terminal domain of RPA70 (RPA70N) specifically participates in pmRPA32 binding, whereas the unphosphorylated RPA32 does not bind to RPA70N. Our NMR data revealed that RPA70N binds pmRPA32 using a basic cleft region. We also show that at least 6 negatively charged residues of pmRPA32 are required for RPA70N binding. By introducing alanine mutations into hydrophobic positions of pmRPA32, we found potential points of contact between RPA70N and the N-terminal half of pmRPA32. We used this information to guide docking simulations that suggest the orientation of pmRPA32 in complex with RPA70N. Our study demonstrates detailed features of the domain-domain interaction between RPA70 and RPA32 upon phosphorylation. This result provides insight into how phosphorylation tunes transient bindings between RPA and its partners in DNA resection. Full Article
phy Structural transitions in Orb2 prion-like domain relevant for functional aggregation in memory consolidation [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The recent structural elucidation of ex vivo Drosophila Orb2 fibrils revealed a novel amyloid formed by interdigitated Gln and His residue side chains belonging to the prion-like domain. However, atomic-level details on the conformational transitions associated with memory consolidation remain unknown. Here, we have characterized the nascent conformation and dynamics of the prion-like domain (PLD) of Orb2A using a nonconventional liquid-state NMR spectroscopy strategy based on 13C detection to afford an essentially complete set of 13Cα, 13Cβ, 1Hα, and backbone 13CO and 15N assignments. At pH 4, where His residues are protonated, the PLD is disordered and flexible, except for a partially populated α-helix spanning residues 55–60, and binds RNA oligos, but not divalent cations. At pH 7, in contrast, His residues are predominantly neutral, and the Q/H segments adopt minor populations of helical structure, show decreased mobility and start to self-associate. At pH 7, the His residues do not bind RNA or Ca2+, but do bind Zn2+, which promotes further association. These findings represent a remarkable case of structural plasticity, based on which an updated model for Orb2A functional amyloidogenesis is suggested. Full Article
phy Comparison Between Brain and Cerebellar Autoradiography Using [18F]Flortaucipir, [18F]MK6240, and [18F]PI2620 in Postmortem Human Brain Tissue By jnm.snmjournals.org Published On :: 2024-10-30T08:04:16-07:00 Visual Abstract Full Article
phy Identification of Microorganisms by Liquid Chromatography-Mass Spectrometry (LC-MS1) and in Silico Peptide Mass Libraries By www.mcponline.org Published On :: 2020-12-01 Peter LaschDec 1, 2020; 19:2125-2138Technological Innovation and Resources Full Article
phy In depth characterization of the Staphylococcus aureus phosphoproteome reveals new targets of Stk1 By www.mcponline.org Published On :: 2020-12-17 Nadine PrustDec 17, 2020; 0:RA120.002232v1-mcp.RA120.002232Research Full Article
phy Mutation-independent Proteomic Signatures of Pathological Progression in Murine Models of Duchenne Muscular Dystrophy By www.mcponline.org Published On :: 2020-12-01 Tirsa L. E. van WesteringDec 1, 2020; 19:2047-2067Research Full Article
phy Pluripotency of embryonic stem cells lacking clathrin-mediated endocytosis cannot be rescued by restoring cellular stiffness [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-04T00:06:06-08:00 Mouse embryonic stem cells (mESCs) display unique mechanical properties, including low cellular stiffness in contrast to differentiated cells, which are stiffer. We have previously shown that mESCs lacking the clathrin heavy chain (Cltc), an essential component for clathrin-mediated endocytosis (CME), display a loss of pluripotency and an enhanced expression of differentiation markers. However, it is not known whether physical properties such as cellular stiffness also change upon loss of Cltc, similar to what is seen in differentiated cells, and if so, how these altered properties specifically impact pluripotency. Using atomic force microscopy (AFM), we demonstrate that mESCs lacking Cltc display higher Young's modulus, indicative of greater cellular stiffness, compared with WT mESCs. The increase in stiffness was accompanied by the presence of actin stress fibers and accumulation of the inactive, phosphorylated, actin-binding protein cofilin. Treatment of Cltc knockdown mESCs with actin polymerization inhibitors resulted in a decrease in the Young's modulus to values similar to those obtained with WT mESCs. However, a rescue in the expression profile of pluripotency factors was not obtained. Additionally, whereas WT mouse embryonic fibroblasts could be reprogrammed to a state of pluripotency, this was inhibited in the absence of Cltc. This indicates that the presence of active CME is essential for the pluripotency of embryonic stem cells. Additionally, whereas physical properties may serve as a simple readout of the cellular state, they may not always faithfully recapitulate the underlying molecular fate. Full Article
phy Site-specific contacts enable distinct modes of TRPV1 regulation by the potassium channel Kv{beta}1 subunit [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-11T00:06:21-08:00 Transient receptor potential vanilloid 1 (TRPV1) channel is a multimodal receptor that is responsible for nociceptive, thermal, and mechanical sensations. However, which biomolecular partners specifically interact with TRPV1 remains to be elucidated. Here, we used cDNA library screening of genes from mouse dorsal root ganglia combined with patch-clamp electrophysiology to identify the voltage-gated potassium channel auxiliary subunit Kvβ1 physically interacting with TRPV1 channel and regulating its function. The interaction was validated in situ using endogenous dorsal root ganglia neurons, as well as a recombinant expression model in HEK 293T cells. The presence of Kvβ1 enhanced the expression stability of TRPV1 channels on the plasma membrane and the nociceptive current density. Surprisingly, Kvβ1 interaction also shifted the temperature threshold for TRPV1 thermal activation. Using site-specific mapping, we further revealed that Kvβ1 interacted with the membrane-distal domain and membrane-proximal domain of TRPV1 to regulate its membrane expression and temperature-activation threshold, respectively. Our data therefore suggest that Kvβ1 is a key element in the TRPV1 signaling complex and exerts dual regulatory effects in a site-specific manner. Full Article
phy GUCY2D mutations in retinal guanylyl cyclase 1 provide biochemical reasons for dominant cone-rod dystrophy but not for stationary night blindness [Cell Biology] By www.jbc.org Published On :: 2020-12-25T00:06:31-08:00 Mutations in the GUCY2D gene coding for the dimeric human retinal membrane guanylyl cyclase (RetGC) isozyme RetGC1 cause various forms of blindness, ranging from rod dysfunction to rod and cone degeneration. We tested how the mutations causing recessive congenital stationary night blindness (CSNB), recessive Leber's congenital amaurosis (LCA1), and dominant cone–rod dystrophy-6 (CORD6) affected RetGC1 activity and regulation by RetGC-activating proteins (GCAPs) and retinal degeneration-3 protein (RD3). CSNB mutations R666W, R761W, and L911F, as well as LCA1 mutations R768W and G982VfsX39, disabled RetGC1 activation by human GCAP1, -2, and -3. The R666W and R761W substitutions compromised binding of GCAP1 with RetGC1 in HEK293 cells. In contrast, G982VfsX39 and L911F RetGC1 retained the ability to bind GCAP1 in cyto but failed to effectively bind RD3. R768W RetGC1 did not bind either GCAP1 or RD3. The co-expression of GUCY2D allelic combinations linked to CSNB did not restore RetGC1 activity in vitro. The CORD6 mutation R838S in the RetGC1 dimerization domain strongly dominated the Ca2+ sensitivity of cyclase regulation by GCAP1 in RetGC1 heterodimer produced by co-expression of WT and the R838S subunits. It required higher Ca2+ concentrations to decelerate GCAP-activated RetGC1 heterodimer—6-fold higher than WT and 2-fold higher than the Ser838-harboring homodimer. The heterodimer was also more resistant than homodimers to inhibition by RD3. The observed biochemical changes can explain the dominant CORD6 blindness and recessive LCA1 blindness, both of which affect rods and cones, but they cannot explain the selective loss of rod function in recessive CSNB. Full Article
phy A kinetic dissection of the fast and superprocessive kinesin-3 KIF1A reveals a predominant one-head-bound state during its chemomechanical cycle [Molecular Biophysics] By www.jbc.org Published On :: 2020-12-25T00:06:30-08:00 The kinesin-3 family contains the fastest and most processive motors of the three neuronal transport kinesin families, yet the sequence of states and rates of kinetic transitions that comprise the chemomechanical cycle and give rise to their unique properties are poorly understood. We used stopped-flow fluorescence spectroscopy and single-molecule motility assays to delineate the chemomechanical cycle of the kinesin-3, KIF1A. Our bacterially expressed KIF1A construct, dimerized via a kinesin-1 coiled-coil, exhibits fast velocity and superprocessivity behavior similar to WT KIF1A. We established that the KIF1A forward step is triggered by hydrolysis of ATP and not by ATP binding, meaning that KIF1A follows the same chemomechanical cycle as established for kinesin-1 and -2. The ATP-triggered half-site release rate of KIF1A was similar to the stepping rate, indicating that during stepping, rear-head detachment is an order of magnitude faster than in kinesin-1 and kinesin-2. Thus, KIF1A spends the majority of its hydrolysis cycle in a one-head-bound state. Both the ADP off-rate and the ATP on-rate at physiological ATP concentration were fast, eliminating these steps as possible rate-limiting transitions. Based on the measured run length and the relatively slow off-rate in ADP, we conclude that attachment of the tethered head is the rate-limiting transition in the KIF1A stepping cycle. Thus, KIF1A's activity can be explained by a fast rear-head detachment rate, a rate-limiting step of tethered-head attachment that follows ATP hydrolysis, and a relatively strong electrostatic interaction with the microtubule in the weakly bound post-hydrolysis state. Full Article