523 research outputs found

    Identification de nouveaux biomarqueurs permettant la caractérisation des lymphocytes T CD8 mémoires innés

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    The pool of memory CD8 T cells is composed of two major cell classes. On one hand, conventional memory CD8 T cells are generated consequently to the specific recognition of pathogen or tumor derived antigens. On the other hand, innate memory CD8 T cells are generated through several mechanisms involving strong yc cytokine stimulation in the absence of cognate antigen recognition. However, these cell classes harbor a very similar phenotype. As a consequence, innate memory CD8 T cell population remains poorly characterized. This PhD has two main objectives : 1 / Identify new biomarkers that enable the discrimination between memory CD8 T cell classes 2/ Characterize the population of innate memory CD8 T cells in physiological condition Our results show that among the pool of memory CD8 T cells, only the conventional ones express the chemokine CCL5 and the NK receptor NKG2D. These two biomarkers enable for the first time the discrimination of memory CD8 T cell classes in physiological settings, in both mouse and human. Thanks to these new tools, we show that innate memory CD8 T cells hold typical memory features, such as an increased reactivity compared to naïve cells and a genetic program similar to the one of conventional memory cells. Nevertheless, this cell population also retains some features typical of naïve cells. The diversified TCR repertoire of this cell population allows it to participate to primary immune responses against various intracellular pathogens. Moreover, like naïve cells, innate memory CD8 T cells fail to access peripheral tissues upon local inflammation, which correlate with an absence of expression of some integrins. Altogether, these results demonstrate that innate memory CD8 T cells, characterized by the absence of expression of CCL5 and NKG2D, represent a hybrid cell population, at the boundary between naïve cells and conventional memory cellsDeux grandes classes de cellules composent le pool de lymphocytes T (LT) CD8 mémoires. D'une part, les LT CD8 mémoires conventionnels sont générés via la reconnaissance spécifique d'antigènes dérivés de pathogènes ou de tumeurs. D'autre part, les LT CD8 mémoires innés sont générés via différents mécanismes impliquant de fortes stimulations par des cytokines γc indépendamment de la reconnaissance d'antigènes du non soi. Le phénotype extrêmement similaire de ces deux populations cellulaires ne permet pas de les distinguer in vivo. En conséquence, la population de LT CD8 mémoires innés est relativement peu caractérisée. Mon travail de thèse comportait donc deux objectifs majeurs : 1 / Identifier des marqueurs permettant de distinguer in vivo ces deux classes de LT CD8 mémoires. 2/ Caractériser la population de LT CD8 mémoires innés. Dans cette étude, nous démontrons qu'au sein du pool de LT CD8 mémoires, seules les cellules conventionnelles expriment la chimiokine CCL5 et le récepteur NKG2D. Ces deux biomarqueurs permettent ainsi pour la première fois de distinguer les LT CD8 mémoires innés et conventionnels in vivo, à la fois chez la souris et chez l'homme. Grâce à l'expression de NKG2D, nous démontrons que ces LT CD8 mémoires innés possèdent des caractéristiques typiques de cellules mémoires, notamment une réactivité augmentée ainsi qu'un programme génétique comparable à celui des LT CD8 mémoires conventionnels. Néanmoins, cette population cellulaire conserve certaines caractéristiques de cellules naïves. Ainsi, le répertoire TCR diversifié de cette population cellulaire permet à ces cellules de participer à des réponses immunitaires primaires contre différents pathogènes. Enfin, dans un contexte inflammatoire, les LT CD8 mémoires innés présentent un défaut d'accès au tissu pulmonaire comparé aux LT CD8 mémoires conventionnels. Ceci corrèle avec un déficit d'expression de certaines intégrines par les LT CD8 mémoires innés. L'ensemble de nos résultats démontre que les LT CD8 mémoires innés, caractérisés par l'absence d'expression de CCL5 et NKG2D, constituent une population cellulaire hybride, à la frontière entre cellules naïves et cellules mémoires conventionnelle

    Climate change regulation : implications for business executives

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    Purpose &ndash; The purpose of this paper is to provide an overarching conceptual decision model that delineates the major issues and decisions associated with carbon regulations that will allow executives to better understand the potential regulatory schemes and implications that may be imposed in the near future.Design/methodology/approach &ndash; The authors use the extant literature as the foundation to develop a conceptual model of the decisions pertaining to climate change regulation that face business executives today.Findings &ndash; This paper suggests four major categories of issues that must be addressed in any climate change regulatory scheme. These include: &ldquo;scope&rdquo; &ndash; will carbon emission management systems be global or regional; &ldquo;who pays&rdquo; &ndash; will the consumer or will the supply chain be responsible for the cost of their emissions; &ldquo;market or compliance-based mechanisms&rdquo; &ndash; will the CO2 emissions system be market-based or a compliance-based regulatory system; and &ldquo;criteria&rdquo; &ndash; how can credence of the remedy be established &ndash; what is necessary for a business initiative to qualify for as a creditable carbon offset?Research limitations/implications &ndash; This paper offers a framework that categories the fundamental decisions that must be made in any climate change regulation. This framework may be useful in advancing research into any of the four categories of decisions and their implications on commerce and the environment. This paper is designed to be managerially useful and in that way does limit its ability to specifically advance many dimensions of research.Practical implications &ndash; The paper offers executives for a simple model of the decisions that must be made to craft an effective climate change regulatory scheme. In addition, it suggests how these decisions may create exploitable economic opportunities for innovative and proactive firms.Originality/value &ndash; This paper adds value to the debate by clarifying the decisions that must be addressed in any climate change regulation scheme.<br /

    AnnoTALE : bioinformatics tools for identification, annotation, and nomenclature of TALEs from Xanthomonas genomic sequences

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    Transcription activator-like effectors (TALEs) are virulence factors, produced by the bacterial plant-pathogen Xanthomonas, that function as gene activators inside plant cells. Although the contribution of individual TALEs to infectivity has been shown, the specific roles of most TALEs, and the overall TALE diversity in Xanthomonas spp. is not known. TALEs possess a highly repetitive DNA-binding domain, which is notoriously difficult to sequence. Here, we describe an improved method for characterizing TALE genes by the use of PacBio sequencing. We present 'AnnoTALE', a suite of applications for the analysis and annotation of TALE genes from Xanthomonas genomes, and for grouping similar TALEs into classes. Based on these classes, we propose a unified nomenclature for Xanthomonas TALEs that reveals similarities pointing to related functionalities. This new classification enables us to compare related TALEs and to identify base substitutions responsible for the evolution of TALE specificities

    Land system science and sustainable development of the earth system: A global land project perspective

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    Land systems are the result of human interactions with the natural environment. Understanding the drivers, state, trends and impacts of different land systems on social and natural processes helps to reveal how changes in the land system affect the functioning of the socio-ecological system as a whole and the tradeoff these changes may represent. The Global Land Project has led advances by synthesizing land systems research across different scales and providing concepts to further understand the feedbacks between social-and environmental systems, between urban and rural environments and between distant world regions. Land system science has moved from a focus on observation of change and understanding the drivers of these changes to a focus on using this understanding to design sustainable transformations through stakeholder engagement and through the concept of land governance. As land use can be seen as the largest geo-engineering project in which mankind has engaged, land system science can act as a platform for integration of insights from different disciplines and for translation of knowledge into action

    Assembling highly repetitive Xanthomonas TALomes using Oxford Nanopore sequencing

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    Background: Most plant-pathogenic Xanthomonas bacteria harbor transcription activator-like effector (TALE) genes, which function as transcriptional activators of host plant genes and support infection. The entire repertoire of up to 29 TALE genes of a Xanthomonas strain is also referred to as TALome. The DNA-binding domain of TALEs is comprised of highly conserved repeats and TALE genes often occur in gene clusters, which precludes the assembly of TALE-carrying Xanthomonas genomes based on standard sequencing approaches. Results: Here, we report the successful assembly of the 5 Mbp genomes of five Xanthomonas strains from Oxford Nanopore Technologies (ONT) sequencing data. For one of these strains, Xanthomonas oryzae pv. oryzae (Xoo) PXO35, we illustrate why Illumina short reads and longer PacBio reads are insufficient to fully resolve the genome. While ONT reads are perfectly suited to yield highly contiguous genomes, they suffer from a specific error profile within homopolymers. To still yield complete and correct TALomes from ONT assemblies, we present a computational correction pipeline specifically tailored to TALE genes, which yields at least comparable accuracy as Illumina-based polishing. We further systematically assess the ONT-based pipeline for its multiplexing capacity and find that, combined with computational correction, the complete TALome of Xoo PXO35 could have been reconstructed from less than 20,000 ONT reads. Conclusions: Our results indicate that multiplexed ONT sequencing combined with a computational correction of TALE genes constitutes a highly capable tool for characterizing the TALomes of huge collections of Xanthomonas strains in the future

    Standalone vertex finding in the ATLAS muon spectrometer

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    A dedicated reconstruction algorithm to find decay vertices in the ATLAS muon spectrometer is presented. The algorithm searches the region just upstream of or inside the muon spectrometer volume for multi-particle vertices that originate from the decay of particles with long decay paths. The performance of the algorithm is evaluated using both a sample of simulated Higgs boson events, in which the Higgs boson decays to long-lived neutral particles that in turn decay to bbar b final states, and pp collision data at √s = 7 TeV collected with the ATLAS detector at the LHC during 2011

    Measurements of Higgs boson production and couplings in diboson final states with the ATLAS detector at the LHC

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    Measurements are presented of production properties and couplings of the recently discovered Higgs boson using the decays into boson pairs, H →γ γ, H → Z Z∗ →4l and H →W W∗ →lνlν. The results are based on the complete pp collision data sample recorded by the ATLAS experiment at the CERN Large Hadron Collider at centre-of-mass energies of √s = 7 TeV and √s = 8 TeV, corresponding to an integrated luminosity of about 25 fb−1. Evidence for Higgs boson production through vector-boson fusion is reported. Results of combined fits probing Higgs boson couplings to fermions and bosons, as well as anomalous contributions to loop-induced production and decay modes, are presented. All measurements are consistent with expectations for the Standard Model Higgs boson

    Measurement of the polarisation of W bosons produced with large transverse momentum in pp collisions at sqrt(s) = 7 TeV with the ATLAS experiment

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    This paper describes an analysis of the angular distribution of W->enu and W->munu decays, using data from pp collisions at sqrt(s) = 7 TeV recorded with the ATLAS detector at the LHC in 2010, corresponding to an integrated luminosity of about 35 pb^-1. Using the decay lepton transverse momentum and the missing transverse energy, the W decay angular distribution projected onto the transverse plane is obtained and analysed in terms of helicity fractions f0, fL and fR over two ranges of W transverse momentum (ptw): 35 < ptw < 50 GeV and ptw > 50 GeV. Good agreement is found with theoretical predictions. For ptw > 50 GeV, the values of f0 and fL-fR, averaged over charge and lepton flavour, are measured to be : f0 = 0.127 +/- 0.030 +/- 0.108 and fL-fR = 0.252 +/- 0.017 +/- 0.030, where the first uncertainties are statistical, and the second include all systematic effects.Comment: 19 pages plus author list (34 pages total), 9 figures, 11 tables, revised author list, matches European Journal of Physics C versio

    Observation of a new chi_b state in radiative transitions to Upsilon(1S) and Upsilon(2S) at ATLAS

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    The chi_b(nP) quarkonium states are produced in proton-proton collisions at the Large Hadron Collider (LHC) at sqrt(s) = 7 TeV and recorded by the ATLAS detector. Using a data sample corresponding to an integrated luminosity of 4.4 fb^-1, these states are reconstructed through their radiative decays to Upsilon(1S,2S) with Upsilon->mu+mu-. In addition to the mass peaks corresponding to the decay modes chi_b(1P,2P)->Upsilon(1S)gamma, a new structure centered at a mass of 10.530+/-0.005 (stat.)+/-0.009 (syst.) GeV is also observed, in both the Upsilon(1S)gamma and Upsilon(2S)gamma decay modes. This is interpreted as the chi_b(3P) system.Comment: 5 pages plus author list (18 pages total), 2 figures, 1 table, corrected author list, matches final version in Physical Review Letter
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