638 research outputs found

    Genetic modifiers ameliorate endocytic and neuromuscular defects in a model of spinal muscular atrophy

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    © 2020 The Author(s). This article is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/), which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons licence, and indicate if changes were made.Background: Understanding the genetic modifiers of neurodegenerative diseases can provide insight into the mechanisms underlying these disorders. Here, we examine the relationship between the motor neuron disease spinal muscular atrophy (SMA), which is caused by reduced levels of the survival of motor neuron (SMN) protein, and the actin-bundling protein Plastin 3 (PLS3). Increased PLS3 levels suppress symptoms in a subset of SMA patients and ameliorate defects in SMA disease models, but the functional connection between PLS3 and SMN is poorly understood.Results: We provide immunohistochemical and biochemical evidence for large protein complexes localized in vertebrate motor neuron processes that contain PLS3, SMN and members of the hnRNP F/H family of proteins. Using a Caenorhabditis elegans (C. elegans) SMA model, we determine that overexpression of PLS3 or loss of the C. elegans hnRNP F/H ortholog SYM-2 enhances endocytic function and ameliorates neuromuscular defects caused by decreased SMN-1 levels. Furthermore, either increasing PLS3 or decreasing SYM-2 levels suppresses defects in a C. elegans ALS model.Conclusions: We propose that hnRNP F/H act in the same protein complex as PLS3 and SMN and that the function of this complex is critical for endocytic pathways, suggesting that hnRNP F/H proteins could be potential targets for therapy development.Peer reviewe

    Динамика маркеров острого повреждения почек при использовании эпидуральной блокады во время резекции в условиях тепловой ишемии

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    Objective: to investigate the time course of changes in the early biomarkers of acute kidney injury in patients with clinically localized cancer during partial nephrectomy, as electively indicated, under thermal ischemia with prior epidural block.Materials and methods. To analyze the nephroprotective effect of an epidural block in kidney resection with warm ischemia, markers of acute kidney injury (cystatin C, interleukin 18, NGAL, L-FABP and KIM-1) were studied by ELISA in the blood and urine of 35 patients with local cancer with an epidural block (main group) and 37 patients with local cancer without an epidural block (control group) before surgery and 40 min after its beginning and on days 1 and 3 of the postoperative period. All patients were divided into 2 groups by the levels of cystatin C in the blood serum: 1000 ng/ml and lower, and over 1000 ng/ml.Results. Epidural block during the perioperative period in kidney resection with warm ischemia for patients with local cancer had an obvious nephroprotective effect allowing maintaining the initial renal functional parameters, in contrast to the standard disease management.Цель исследования – изучение динамики ранних биомаркеров острого повреждения почек у больных клинически локализованным раком при резекции почки по элективным показаниям в условиях тепловой ишемии с предварительным проведением эпидуральной блокады.Материалы и методы. Для изучения нефропротективного влияния эпидуральной блокады при резекции почки и тепловой ишемии в крови и моче 35 больных локализованным раком с проведением эпидуральной блокады (основная группа) и 37 пациентов с локализованным раком без проведения эпидуральной блокады (контрольная группа) до вмешательства и через 40 мин после начала операции, а также на 1-е и 3-и сутки послеоперационного периода методом иммуноферментного анализа были исследованы 5 маркеров острого повреждения почек: цистатин С, интерлейкин 18, NGAL, L-FABP и КIМ-1. По фоновому уровню цистатина С в сыворотке крови все больные были разделены на 2 группы: с уровнем показателя ≤1000 нг/мл и >1000 нг/мл.Результаты. Применение эпидуральной блокады в периоперационном периоде у больных локализованным раком при резекции почки в условиях тепловой ишемии оказывает нефропротективный эффект, позволяя сохранить функциональные показатели почек на исходном уровне в отличие от стандартного ведения больных

    Measurement of ZZ production cross-sections in the four-lepton final state in pp collisions at √s = 13.6 TeV with the ATLAS experiment

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    Studies of new Higgs boson interactions through nonresonant HH production in the b¯bγγ fnal state in pp collisions at √s = 13 TeV with the ATLAS detector

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    A search for nonresonant Higgs boson pair production in the b ¯bγγ fnal state is performed using 140 fb−1 of proton-proton collisions at a centre-of-mass energy of 13 TeV recorded by the ATLAS detector at the CERN Large Hadron Collider. This analysis supersedes and expands upon the previous nonresonant ATLAS results in this fnal state based on the same data sample. The analysis strategy is optimised to probe anomalous values not only of the Higgs (H) boson self-coupling modifer κλ but also of the quartic HHV V (V = W, Z) coupling modifer κ2V . No signifcant excess above the expected background from Standard Model processes is observed. An observed upper limit µHH < 4.0 is set at 95% confdence level on the Higgs boson pair production cross-section normalised to its Standard Model prediction. The 95% confdence intervals for the coupling modifers are −1.4 < κλ < 6.9 and −0.5 < κ2V < 2.7, assuming all other Higgs boson couplings except the one under study are fxed to the Standard Model predictions. The results are interpreted in the Standard Model efective feld theory and Higgs efective feld theory frameworks in terms of constraints on the couplings of anomalous Higgs boson (self-)interactions

    Search for Nearly Mass-Degenerate Higgsinos Using Low-Momentum Mildly Displaced Tracks in pp Collisions at sqrt(s)=13 TeV with the ATLAS Detector

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    Measurement of vector boson production cross sections and their ratios using pp collisions at s=13.6 TeV with the ATLAS detector

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    Electron and photon energy calibration with the ATLAS detector using LHC Run 2 data

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    This paper presents the electron and photon energy calibration obtained with the ATLAS detector using 140 fb−1 of LHC proton-proton collision data recorded at root(s) = 13 TeV between 2015 and 2018. Methods for the measurement of electron and photon energies are outlined, along with the current knowledge of the passive material in front of the ATLAS electromagnetic calorimeter. The energy calibration steps are discussed in detail, with emphasis on the improvements introduced in this paper. The absolute energy scale is set using a large sample of Z-boson decays into electron-positron pairs, and its residual dependence on the electron energy is used for the first time to further constrain systematic uncertainties. The achieved calibration uncertainties are typically 0.05% for electrons from resonant Z-boson decays, 0.4% at ET tilde 10 GeV, and 0.3% at ET tilde 1 TeV; for photons at ET tilde 60 GeV, they are 0.2% on average. This is more than twice as precise as the previous calibration. The new energy calibration is validated using J/psi -> ee and radiative Z-boson decays

    Search for pair-production of vector-like quarks in lepton+jets final states containing at least one b-tagged jet using the Run 2 data from the ATLAS experiment

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    Performance of the ATLAS forward proton Time-of-Flight detector in Run 2

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