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U4SSC - Guidelines on tools and mechanisms to finance Smart Sustainable Cities projects

U4SSC - Guidelines on tools and mechanisms to finance Smart Sustainable Cities projects




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U4SSC - Redefining smart city platforms: Setting the stage for Minimal Interoperability Mechanisms A U4SSC deliverable on city platforms

U4SSC - Redefining smart city platforms: Setting the stage for Minimal Interoperability Mechanisms A U4SSC deliverable on city platforms




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[ D.211 (1998) Supplement 1 (05/10) ] - Guidelines for international short message service (SMS) interconnection

Guidelines for international short message service (SMS) interconnection




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[ D.Sup4 (04/20) ] - ITU-T D.263 - Supplement on Principles for increased adoption and use of mobile financial services (MFSs) through effective consumer protection mechanisms

ITU-T D.263 - Supplement on Principles for increased adoption and use of mobile financial services (MFSs) through effective consumer protection mechanisms




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[ D.1102 (12/21) ] - Customer redress and consumer protection mechanisms for OTTs

Customer redress and consumer protection mechanisms for OTTs




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[ X.1450 (10/18) ] - Guidelines on hybrid authentication and key management mechanisms in the client-server model

Guidelines on hybrid authentication and key management mechanisms in the client-server model




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[ X.Sup28 (09/16) ] - ITU-T X.1245 - Supplement on technical measures and mechanisms on countering spoofed calls in the terminating network of voice over long term evolution (VoLTE)

ITU-T X.1245 - Supplement on technical measures and mechanisms on countering spoofed calls in the terminating network of voice over long term evolution (VoLTE)




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[ G.8121.1/Y.1381.1 (11/18) ] - Characteristics of MPLS-TP equipment functional blocks supporting ITU-T G.8113.1/Y.1372.1 OAM mechanisms

Characteristics of MPLS-TP equipment functional blocks supporting ITU-T G.8113.1/Y.1372.1 OAM mechanisms




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La Aemet alerta de un SMS fraudulento sobre "una tormenta severa"

El SMS en cuestión indica, con faltas de ortografía incluidas: "Se preve una tormenta severa en su. Preparese y mantengase a salvo. Descargue la APP: https://aemet.blog". Nunca activen ese enlace Leer




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Explorations in the History of Machines and Mechanisms Proceedings of the Fifth IFToMM Symposium on the History of Machines and Mechanisms

Location: Electronic Resource- 




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Quinoxalines Synthesis, Reactions, Mechanisms and Structure

Location: Electronic Resource- 




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Pete Davidson 'Really Excited' for Elon Musk's 'SNL' Hosting Gig Despite Fellow Cast's Criticisms

The 'Trainwreck' actor is looking forward to the upcoming episode which will see the Tesla boss as a host although some of his co-stars are seemingly not happy with the casting.



  • tv
  • Saturday Night Live
  • Pete Davidson;Elon Musk

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Pete Davidson 'Really Excited' for Elon Musk's 'SNL' Hosting Gig Despite Fellow Cast's Criticisms

The 'Trainwreck' actor is looking forward to the upcoming episode which will see the Tesla boss as a host although some of his co-stars are seemingly not happy with the casting.



  • tv
  • Saturday Night Live
  • Pete Davidson;Elon Musk

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After spending three years working on SMS verification at Zenly, Prelude wants to fix SMS onboarding

Prelude is a new a new French startup that focuses on SMS verification; it’s coming out of stealth Wednesday. The two founders met when they were working for Zenly, a popular location-sharing app with tens of millions of users that was acquired by Snap (and later shut down). While you might not…




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Global Existential Challenges: Designing Mechanisms for Addressing Political Polarization in Voter Behavior

Simon A. Levin, James S. McDonnell Distinguished University Professor in Ecology and Evolutionary Biology, Princeton University Samuel S. Wang, Professor of Neuroscience, Princeton University Discussant: Keena Lipsitz, Associate Professor of Political Science at Queens College, City University of New York






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Thematic review series: The Pathogenesis of Atherosclerosis. Effects of infection and inflammation on lipid and lipoprotein metabolism mechanisms and consequences to the host

Weerapan Khovidhunkit
Jul 1, 2004; 45:1169-1196
Thematic Reviews




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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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On a Torelli Principle for automorphisms of Klein hypersurfaces

Víctor González-Aguilera, Alvaro Liendo, Pedro Montero and Roberto Villaflor Loyola
Trans. Amer. Math. Soc. 377 (), 5483-5511.
Abstract, references and article information






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A highly potent CD73 biparatopic antibody blocks organization of the enzyme active site through dual mechanisms [Methods and Resources]

The dimeric ectonucleotidase CD73 catalyzes the hydrolysis of AMP at the cell surface to form adenosine, a potent suppressor of the immune response. Blocking CD73 activity in the tumor microenvironment can have a beneficial effect on tumor eradication and is a promising approach for cancer therapy. Biparatopic antibodies binding different regions of CD73 may be a means to antagonize its enzymatic activity. A panel of biparatopic antibodies representing the pairwise combination of 11 parental monoclonal antibodies against CD73 was generated by Fab-arm exchange. Nine variants vastly exceeded the potency of their parental antibodies with ≥90% inhibition of activity and subnanomolar EC50 values. Pairing the Fabs of parents with nonoverlapping epitopes was both sufficient and necessary whereas monovalent antibodies were poor inhibitors. Some parental antibodies yielded potent biparatopics with multiple partners, one of which (TB19) producing the most potent. The structure of the TB19 Fab with CD73 reveals that it blocks alignment of the N- and C-terminal CD73 domains necessary for catalysis. A separate structure of CD73 with a Fab (TB38) which complements TB19 in a particularly potent biparatopic shows its binding to a nonoverlapping site on the CD73 N-terminal domain. Structural modeling demonstrates a TB19/TB38 biparatopic antibody would be unable to bind the CD73 dimer in a bivalent manner, implicating crosslinking of separate CD73 dimers in its mechanism of action. This ability of a biparatopic antibody to both crosslink CD73 dimers and fix them in an inactive conformation thus represents a highly effective mechanism for the inhibition of CD73 activity.




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[18F]FDG and [68Ga]Ga-FAPI-04-Directed Imaging for Outcome Prediction in Patients with High-Grade Neuroendocrine Neoplasms

Visual Abstract




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Identification of Microorganisms by Liquid Chromatography-Mass Spectrometry (LC-MS1) and in Silico Peptide Mass Libraries

Peter Lasch
Dec 1, 2020; 19:2125-2138
Technological Innovation and Resources




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Molecular Profiling of Innate Immune Response Mechanisms in Ventilator-associated Pneumonia [Research]

Ventilator-associated pneumonia (VAP) is a common hospital-acquired infection, leading to high morbidity and mortality. Currently, bronchoalveolar lavage (BAL) is used in hospitals for VAP diagnosis and guiding treatment options. Although BAL collection procedures are invasive, alternatives such as endotracheal aspirates (ETA) may be of diagnostic value, however, their use has not been thoroughly explored. Longitudinal ETA and BAL were collected from 16 intubated patients up to 15 days, of which 11 developed VAP. We conducted a comprehensive LC–MS/MS based proteome and metabolome characterization of longitudinal ETA and BAL to detect host and pathogen responses to VAP infection. We discovered a diverse ETA proteome of the upper airways reflective of a rich and dynamic host-microbe interface. Prior to VAP diagnosis by microbial cultures from BAL, patient ETA presented characteristic signatures of reactive oxygen species and neutrophil degranulation, indicative of neutrophil mediated pathogen processing as a key host response to the VAP infection. Along with an increase in amino acids, this is suggestive of extracellular membrane degradation resulting from proteolytic activity of neutrophil proteases. The metaproteome approach successfully allowed simultaneous detection of pathogen peptides in patients' ETA, which may have potential use in diagnosis. Our findings suggest that ETA may facilitate early mechanistic insights into host-pathogen interactions associated with VAP infection and therefore provide its diagnosis and treatment.




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Identification of Microorganisms by Liquid Chromatography-Mass Spectrometry (LC-MS1) and in Silico Peptide Mass Libraries [Technological Innovation and Resources]

Over the past decade, modern methods of MS (MS) have emerged that allow reliable, fast and cost-effective identification of pathogenic microorganisms. Although MALDI-TOF MS has already revolutionized the way microorganisms are identified, recent years have witnessed also substantial progress in the development of liquid chromatography (LC)-MS based proteomics for microbiological applications. For example, LC-tandem MS (LC-MS2) has been proposed for microbial characterization by means of multiple discriminative peptides that enable identification at the species, or sometimes at the strain level. However, such investigations can be laborious and time-consuming, especially if the experimental LC-MS2 data are tested against sequence databases covering a broad panel of different microbiological taxa. In this proof of concept study, we present an alternative bottom-up proteomics method for microbial identification. The proposed approach involves efficient extraction of proteins from cultivated microbial cells, digestion by trypsin and LC–MS measurements. Peptide masses are then extracted from MS1 data and systematically tested against an in silico library of all possible peptide mass data compiled in-house. The library has been computed from the UniProt Knowledgebase covering Swiss-Prot and TrEMBL databases and comprises more than 12,000 strain-specific in silico profiles, each containing tens of thousands of peptide mass entries. Identification analysis involves computation of score values derived from correlation coefficients between experimental and strain-specific in silico peptide mass profiles and compilation of score ranking lists. The taxonomic positions of the microbial samples are then determined by using the best-matching database entries. The suggested method is computationally efficient – less than 2 mins per sample - and has been successfully tested by a test set of 39 LC-MS1 peak lists obtained from 19 different microbial pathogens. The proposed method is rapid, simple and automatable and we foresee wide application potential for future microbiological applications.




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Intracranially Administered Anti-A{beta} Antibodies Reduce {beta}-Amyloid Deposition by Mechanisms Both Independent of and Associated with Microglial Activation

Donna M. Wilcock
May 1, 2003; 23:3745-3751
Development Plasticity Repair




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Mindfulness Meditation-Based Pain Relief Employs Different Neural Mechanisms Than Placebo and Sham Mindfulness Meditation-Induced Analgesia

Fadel Zeidan
Nov 18, 2015; 35:15307-15325
BehavioralSystemsCognitive




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Baptisms at the beach

Mozaik church, pioneered by the OM team in Bar, Montenegro, has recently baptised seven new believers in the Adriatic sea, at the beach.




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Syncroness uses COSMOSMotion analysis technology to design high-quality, complex mechanisms in less time at lower cost

Cutting days and weeks from design cycle gives Syncroness more time to focus on designing lightweight, high performance products




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SMS Bible verses become daily bread

Pamir Productions radio ministry sends texts to encourage listeners and viewers.




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21st Annual Meeting of the Independent Accountability Mechanisms of Multilateral Banks and International Financial Institutions - Masatsugu Asakawa

Remarks by Masatsugu Asakawa, President, Asian Development Bank, at the 21st Annual Meeting of the Independent Accountability Mechanisms of Multilateral Banks and International Financial Institutions, 1 October 2024, ADB headquarters, Manila, Philippines




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World's largest tree is also among the oldest living organisms

DNA analysis suggests Pando, a quaking aspen in Utah with thousands of stems connected by their roots, is between 16,000 and 81,000 years old




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We physicists could learn a lot by stepping beyond our specialisms

A recent atomic physics workshop was outside my dark matter comfort zone, but learning about science beyond my usual boundaries was invigorating, says Chanda Prescod-Weinstein




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Why criticisms of the proposed Anthropocene epoch miss the point

A proposal to define the Anthropocene as a geological epoch was rejected this March, but humanity's impact on Earth is real, whether formalised or not, says Jan Zalasiewicz




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World's largest tree is also among the oldest living organisms

DNA analysis suggests Pando, a quaking aspen in Utah with thousands of stems connected by their roots, is between 16,000 and 81,000 years old




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Temperature matters: the potential impact of thermoregulatory mechanisms in brain-body physiology [Special Section: Symposium Outlook]

Thermoregulation, responsible for maintaining a stable core temperature during wide fluctuations in external and internal thermal environments, is an iconic homeostatic process. However, we suggest that despite its fundamental physiological significance, the potential for required cool housing temperatures and thermoregulatory mechanisms to influence the interpretation of experimental data is not sufficiently appreciated. Moreover, although it is generally assumed that the major thermoregulatory pathways are well understood, here we discuss new research that suggests otherwise and reveals the emergence of a new wave of exciting ideas for this "old" field of research.




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Molecular Mechanisms for the Selective Transport of Dichlorofluorescein by Human Organic Anion Transporting Polypeptide 1B1 [Articles]

Human organic anion transporting polypeptide (OATP) 1B1 and 1B3 are two highly homologous liver-specific uptake transporters. However, 2’,7’-dichlorofluorescein (DCF) is preferably transported by OATP1B1. In the present study, the molecular mechanisms for the selective transport of DCF by OATP1B1 were investigated by constructing and characterizing an array of OATP1B1/1B3 chimeras and site-directed mutagenesis. Our results show that transmembrane domain (TM) 10 is crucial for the surface expression and function of OATP1B1, in which Q541 and L545 play the most important roles in DCF transport. Replacement of TM10 in OATP1B1 with its OATP1B3 counterpart led to OATP1B1’s complete intracellular retention. Q541 and L545 may interact with DCF directly via hydrogen bonding and hydrophobic interactions. The decrease of DCF uptake by Q541A and L545S was due to their reduced binding affinity for DCF as compared with OATP1B1. In addition, Q541 and L545 are also crucial for the transport of estradiol-17β-glucuronide (E17βG) but not for the transport of estrone-3-sulfate (E3S), indicating different interaction modes between DCF/E17βG and E3S in OATP1B1. Taken together, Q541 and L545 in TM10 are critical for OATP1B1-mediated DCF uptake, but their effect is substrate-dependent.

SIGNIFICANCE STATEMENT

The key TMs and amino acid residues for the selective transport of DCF by OATP1B1 were identified. TM10 is crucial for the surface expression and function of OATP1B1. Within TM10, Q541 and L545 played the most significant roles and affected the function of OATP1B1 in a substrate-dependent manner. This information is crucial for a better understanding of the mechanism of the multispecificity of OATP1B1 and as a consequence the mechanism of OATP1B1-mediated drug–drug interactions.




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Going Rogue: Mechanisms, Regulation, and Roles of Mutationally Activated G{alpha} in Human Cancer [Minireview]

G protein–coupled receptors (GPCRs) couple to heterotrimeric G proteins, comprised of α and β subunits, to convert extracellular signals into activation of intracellular signaling pathways. Canonically, GPCR-mediated activation results in the exchange of GDP for GTP on G protein α subunits (Gα) and the dissociation of Gα-GTP and G protein β subunits (Gβ), both of which can regulate a variety of signaling pathways. Hydrolysis of bound GTP by Gα returns the protein to Gα-GDP and allows reassociation with Gβ to reform the inactive heterotrimer. Naturally occurring mutations in Gα have been found at conserved glutamine and arginine amino acids that disrupt the canonical G protein cycle by inhibiting GTP hydrolysis, rendering these mutants constitutively active. Interestingly, these dysregulated Gα mutants are found in many different cancers due to their ability to sustain aberrant signaling without a need for activation by GPCRs. This review will highlight an increased recognition of the prevalence of such constitutively activating Gα mutations in cancers and the signaling pathways activated. In addition, we will discuss new knowledge regarding how these constitutively active Gα are regulated, how different mutations are biochemically distinct, and how mutationally activated Gα are unique compared with GPCR-activated Gα. Lastly, we will discuss recent progress in developing inhibitors directly targeting constitutively active Gα mutants.

SIGNIFICANCE STATEMENT

Constitutively activating mutations in G protein α subunits (Gα) widely occur in and contribute to the development of many human cancers. To develop ways to inhibit dysregulated, oncogenic signaling by these mutant Gα, it is crucial to better understand mechanisms that lead to constitutive Gα activation and unique mechanisms that regulate mutationally activated Gα in cells. The prevalence of activating mutations in Gα in various cancers makes Gα proteins compelling targets for the development of therapeutics.




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Common clonal origin of three distinct hematopoietic neoplasms in a single patient: B-cell lymphoma, T-cell lymphoma, and polycythemia vera [RESEARCH ARTICLE]

The potential for more than one distinct hematolymphoid neoplasm to arise from a common mutated stem or precursor cell has been proposed based on findings in primary human malignancies. Particularly, angioimmunoblastic T-cell lymphoma (AITL), which shares a somatic mutation profile in common with other hematopoietic malignancies, has been reported to occur alongside myeloid neoplasms or clonal B-cell proliferations, with identical mutations occurring in more than one cell lineage. Here we report such a case of an elderly woman who was diagnosed over a period of 8 years with diffuse large B-cell lymphoma, polycythemia vera, and AITL, each harboring identical somatic mutations in multiple genes. Overall, at least five identical nucleotide mutations were shared across multiple specimens, with two identical mutations co-occurring at variable variant allele frequencies in all three specimen types. These findings lend credence to the theory that a common mutated stem cell could give rise to multiple neoplasms through parallel hematopoietic differentiation pathways.




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Blog | CATO SMS





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Bayer Pledges 1 Million Hands-On Science Learning Experiences For Children By 2020 To Help Inspire Next Generation Of Innovators - Bayer MSMS �Say TkU� Campaign

Bayer MSMS �Say TkU� Campaign




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World's largest tree is also among the oldest living organisms

DNA analysis suggests Pando, a quaking aspen in Utah with thousands of stems connected by their roots, is between 16,000 and 81,000 years old




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CRISPR's Molecular Mechanisms for Antibiotic Resistance

Assistant Prof. Ibrahim, Bitar, Department of Microbiology, Faculty of Medicine and University Hospital in Plzen, Charles University in Prague, Plzen,




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Brain Mechanisms Links Sleep Apnea and High Blood Pressure

Nearly 40 million adults in the United States suffer from medlinksleep apnea/medlink, with over 30 million relying on continuous positive airway pressure




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Depletion rates of O2-naphthenic acids from oil sands process-affected water in wetland microcosms

Environ. Sci.: Processes Impacts, 2024, 26,1859-1867
DOI: 10.1039/D4EM00227J, Paper
Alexander M. Cancelli, Frank A. P. C. Gobas
Depuration in OSPW occurs by mechanisms of natural attenuation, sorption and microbial degradation, and plant-mediated uptake and biotransformation.
The content of this RSS Feed (c) The Royal Society of Chemistry




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Quantitative read-across structure–property relationship (q-RASPR): a novel approach to estimate the bioaccumulative potential for diverse classes of industrial chemicals in aquatic organisms

Environ. Sci.: Processes Impacts, 2024, Advance Article
DOI: 10.1039/D4EM00374H, Paper
Prodipta Bhattacharyya, Pabitra Samanta, Ankur Kumar, Shubha Das, Probir Kumar Ojha
The Bioconcentration Factor (BCF) is used to evaluate the bioaccumulation potential of chemical substances in reference organisms, and it directly correlates with ecotoxicity.
To cite this article before page numbers are assigned, use the DOI form of citation above.
The content of this RSS Feed (c) The Royal Society of Chemistry




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The Third Way and beyond : Criticisms, futures and alternatives [Electronic book] / ed. by Will Leggett, Luke Martell, Sarah Hale.

Manchester : Manchester University Press, [2018]