180 resultados para structure adaptive
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Three phosphatidylinositol-3-kinase-related protein kinases implement cellular responses to DNA damage. DNA-dependent protein kinase catalytic subunit (DNA-PKcs) and ataxia-telangiectasia mutated respond primarily to DNA double-strand breaks (DSBs). Ataxia-telangiectasia and RAD3-related (ATR) signals the accumulation of replication protein A (RPA)-covered single-stranded DNA (ssDNA), which is caused by replication obstacles. Stalled replication intermediates can further degenerate and yield replication-associated DSBs. In this paper, we show that the juxtaposition of a double-stranded DNA end and a short ssDNA gap triggered robust activation of endogenous ATR and Chk1 in human cell-free extracts. This DNA damage signal depended on DNA-PKcs and ATR, which congregated onto gapped linear duplex DNA. DNA-PKcs primed ATR/Chk1 activation through DNA structure-specific phosphorylation of RPA32 and TopBP1. The synergistic activation of DNA-PKcs and ATR suggests that the two kinases combine to mount a prompt and specific response to replication-born DSBs.
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Detecting local differences between groups of connectomes is a great challenge in neuroimaging, because the large number of tests that have to be performed and the impact on multiplicity correction. Any available information should be exploited to increase the power of detecting true between-group effects. We present an adaptive strategy that exploits the data structure and the prior information concerning positive dependence between nodes and connections, without relying on strong assumptions. As a first step, we decompose the brain network, i.e., the connectome, into subnetworks and we apply a screening at the subnetwork level. The subnetworks are defined either according to prior knowledge or by applying a data driven algorithm. Given the results of the screening step, a filtering is performed to seek real differences at the node/connection level. The proposed strategy could be used to strongly control either the family-wise error rate or the false discovery rate. We show by means of different simulations the benefit of the proposed strategy, and we present a real application of comparing connectomes of preschool children and adolescents.
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Purpose of review: An overview of recent advances in structural neuroimaging and their impact on movement disorders research is presented. Recent findings: Novel developments in computational neuroanatomy and improvements in magnetic resonance image quality have brought further insight into the pathophysiology of movement disorders. Sophisticated automated techniques allow for sensitive and reliable in-vivo differentiation of phenotype/genotype related traits and their interaction even at presymptomatic stages of disease. Summary: Voxel-based morphometry consistently demonstrates well defined patterns of brain structure changes in movement disorders. Advanced stages of idiopathic Parkinson's disease are characterized by grey matter volume decreases in basal ganglia. Depending on the presence of cognitive impairment, volume changes are reported in widespread cortical and limbic areas. Atypical Parkinsonian syndromes still pose a challenge for accurate morphometry-based classification, especially in early stages of disease progression. Essential tremor has been mainly associated with thalamic and cerebellar changes. Studies on preclinical Huntington's disease show progressive loss of tissue in the caudate and cortical thinning related to distinct motor and cognitive phenotypes. Basal ganglia volume in primary dystonia reveals an interaction between genotype and phenotype such that brain structure changes are modulated by the presence of symptoms under the influence of genetic factors. Tics in Tourette's syndrome correlate with brain structure changes in limbic, motor and associative fronto-striato-parietal circuits. Computational neuroanatomy provides useful tools for in-vivo assessment of brain structure in movement disorders, allowing for accurate classification in early clinical stages as well as for monitoring therapy effects and/or disease progression.
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Adaptive dynamics shows that a continuous trait under frequency dependent selection may first converge to a singular point followed by spontaneous transition from a unimodal trait distribution into a bimodal one, which is called "evolutionary branching". Here, we study evolutionary branching in a deme-structured population by constructing a quantitative genetic model for the trait variance dynamics, which allows us to obtain an analytic condition for evolutionary branching. This is first shown to agree with previous conditions for branching expressed in terms of relatedness between interacting individuals within demes and obtained from mutant-resident systems. We then show this branching condition can be markedly simplified when the evolving trait affect fecundity and/or survival, as opposed to affecting population structure, which would occur in the case of the evolution of dispersal. As an application of our model, we evaluate the threshold migration rate below which evolutionary branching cannot occur in a pairwise interaction game. This agrees very well with the individual-based simulation results.
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Five functional mammalian facilitated hexose carriers (GLUTs) have been characterized by molecular cloning. By functional expression in heterologous systems, their specificity and affinity for different hexoses have been defined. There are three high-affinity transporters (GLUT-1, GLUT-3 and GLUT-4) and one low-affinity transporter (GLUT-2), and GLUT-5 is primarily a fructose carrier. Because their Michaelis constants (Km) are below the normal blood glucose concentration, the high-affinity transporters function at rates close to maximal velocity. Thus their level of cell surface expression greatly influences the rate of glucose uptake into the cells. In contrast, the rate of glucose uptake by GLUT-2 (Km = 17 mM) increases in parallel with the rise in blood glucose over the physiological concentration range. High-affinity transporters are found in almost every tissue, but their expression is higher in cells with high glycolytic activity. Glut-2, however, is found in tissues carrying large glucose fluxes, such as intestine, kidney, and liver. As an adaptive response to variations in metabolic conditions, the expression of these transporters is regulated by glucose and different hormones. Thus, because of their specific characteristics and regulated expression, the facilitated glucose transporters control fundamental aspects of glucose homeostasis. I review data pertaining to the structure and regulated expression of the glucose carriers present in intestine, kidney, and liver and discuss their role in the control of glucose flux into or out of these different tissues.
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Coordinated function of the innate and adaptive arms of the immune system in vertebrates is essential to promote protective immunity and to avoid immunopathology. The Notch signalling pathway, which was originally identified as a pleiotropic mediator of cell fate in invertebrates, has recently emerged as an important regulator of immune cell development and function. Notch was initially shown to be a key determinant of cell-lineage commitment in developing lymphocytes, but it is now known to control the homeostasis of several innate cell populations. Moreover, the roles of Notch in adaptive immunity have expanded to include the regulation of T cell differentiation and function. The aim of this Review is to summarize the current status of immune regulation by Notch. A better understanding of Notch function in both innate and adaptive immunity will hopefully provide multiple avenues for therapeutic intervention in disease.
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The tubero-infundibular and nigrostriatal DA neurone systems of rats respond to systemic (i.p.) injection of alpha-MSH (2-100 microgram/kg). The response of the tubero-infundibular (arcuate) DA neurones, an increase in cellular fluorescence intensity which can be interpreted as a sign of increased neuronal activity, is essentially the same in males, estrogen-progesterone-pretreated ovariectomized females and hypophysectomized males, whereas the type of response elicited by alpha-MSH in the nigral DA neurones depends upon the hormonal state of the animal. Differences between the two DA neurone groups exist also with regard to the effects of peptide fragments containing the two active sites of the alpha-MSH molecule. Results of lesion experiments in the lower brainstem (area postrema) and of blockade of muscarinic mechanisms by atropine further point to differences in the mechanisms underlying the peptide effects on the two neurone systems. The reaction of the tubero-infundibular DA system (which controls the pars intermedia of the pituitary) can be considered to reflect the activation of a feedback mechanism on MSH secretion, while the functional counterpart of the changes observed in the nigral system remains unknown at the present time.
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Crushed seeds of the Moringa oleifera tree have been used traditionally as natural flocculants to clarify drinking water. We previously showed that one of the seed peptides mediates both the sedimentation of suspended particles such as bacterial cells and a direct bactericidal activity, raising the possibility that the two activities might be related. In this study, the conformational modeling of the peptide was coupled to a functional analysis of synthetic derivatives. This indicated that partly overlapping structural determinants mediate the sedimentation and antibacterial activities. Sedimentation requires a positively charged, glutamine-rich portion of the peptide that aggregates bacterial cells. The bactericidal activity was localized to a sequence prone to form a helix-loop-helix structural motif. Amino acid substitution showed that the bactericidal activity requires hydrophobic proline residues within the protruding loop. Vital dye staining indicated that treatment with peptides containing this motif results in bacterial membrane damage. Assembly of multiple copies of this structural motif into a branched peptide enhanced antibacterial activity, since low concentrations effectively kill bacteria such as Pseudomonas aeruginosa and Streptococcus pyogenes without displaying a toxic effect on human red blood cells. This study thus identifies a synthetic peptide with potent antibacterial activity against specific human pathogens. It also suggests partly distinct molecular mechanisms for each activity. Sedimentation may result from coupled flocculation and coagulation effects, while the bactericidal activity would require bacterial membrane destabilization by a hydrophobic loop.
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Introduction générale : D'après une étude réalisée en Suisse en 2004, les entreprises de famille représentent 88,14% des entreprises, dont 80,2% sont constitués en sociétés anonymes. Les chiffres parlent d'eux-mêmes : les sociétés anonymes de famille occupent une place considérable dans le paysage des entreprises suisses. Les sociétés anonymes de famille correspondent donc à une réalité pratique. Juridiquement, la notion de société de famille n'apparaît pas dans le Code des obligations ; les sociétés anonymes de famille revêtent la forme juridique de la société anonyme, qui représente l'entreprise commerciale la plus courante en pratique. Le Code des obligations, à ses art. 620 ss, se limite à donner un cadre général de réglementation, ce qui a notamment pour conséquence que la forme juridique de la société anonyme s'adapte à des entités très variées, dans toutes sortes de secteurs d'activité, que ce soient des petites et moyennes entreprises ou de grandes multinationales, des sociétés capitalistes et impersonnelles ou des sociétés purement privées. Selon la conception générale de la forme juridique de la société anonyme, celle-ci revêt en principe un caractère capitaliste. L'intérêt de l'actionnaire pour la société anonyme est normalement de nature financière. Le fait que la qualité d'actionnaire soit matérialisée dans un titre, l'action, implique tant une certaine liquidité de l'actionnariat qu'une dépersonnalisation des rapports entre les membres qui composent la société anonyme. A l'opposé, la famille repose sur des liens personnels particuliers, étroits, avec notamment des dimensions psychologiques, affectives, émotives. Au premier abord, société anonyme et famille semblent donc antinomiques. Cette dichotomie présente un intérêt dogmatique. Elle correspond en outre à l'un des principaux enjeux : comment tenir compte des intérêts d'une entité fortement personnalisée - la famille - dans une structure impersonnelle et de type capitaliste - la société anonyme ? Le fait que le Code des obligations se limite à donner un cadre général de réglementation prend alors ici toute son importance ; la marge de manoeuvre et la liberté d'aménagement que le législateur accorde aux sociétés anonymes r vont permettre - ou alors empêcher - d'adapter la forme juridique de la société anonyme aux besoins d'une entité personnalisée comme la famille. Cette liberté n'est donc pas sans limites et les membres de la famille devront peut-être aussi assumer les conséquences du choix de cette forme de société. Partant, le but de notre travail est d'étudier les raisons d'être, l'organisation et la pérennité des sociétés anonymes de famille, spécifiquement sous l'angle du maintien du caractère familial de la société. Nous nous concentrerons sur la détention du capital, mais aussi sur sa structure, son maintien et son optimisation ; nous aborderons ainsi notamment les questions relatives à la transmissibilité des actions. Au regard de l'ampleur du sujet, nous avons dû procéder à certains choix, parfois arbitraires, notamment en raison des implications presque infinies des règles avec d'autres domaines. Nous nous limiterons ainsi, dans la première partie, à exposer les notions de base employées dans la suite de notre travail et nous focaliserons sur l'élaboration des définitions d'entreprise, société et société anonyme de famille, prémisses non seulement essentielles sous l'angle théorique, mais aussi fondamentales pour nos développements ultérieurs. S'agissant ensuite de l'analyse des possibilités d'aménagement d'une société anonyme dans le cadre du maintien du caractère familial de la société, nous nous concentrerons sur les règles relatives à la société anonyme et étudierons les limites qu'elles imposent et la liberté qu'elles offrent aux actionnaires familiaux. Nous laisserons en revanche de côté les problématiques particulières de la protection des actionnaires minoritaires et des organes. Enfin, si nous traitons toutes les notions théoriques nécessaires à la compréhension de chaque thématique présentée, seules celles primordiales et déterminantes sous l'angle de la conservation de l'hégémonie familiale seront approfondies. Nous avons structuré notre étude en quatre titres. Dans un premier titre, nous développerons les notions et principes élémentaires de notre sujet. Nous rappellerons ainsi la définition et les particularités de la société anonyme en général, y compris les sources et les modifications législatives, et les conditions de la cotation en bourse. Au stade des notions introductives, nous devrons également définir la société anonyme de famille, en particulier en établissant les éléments de la définition. Qu'entend-on par famille ? Quels critères permettent de qualifier une société anonyme de « société anonyme de famille » ? La définition de la société anonyme de famille devra être à la fois suffisamment précise, afin que cette notion puisse être appréhendée de manière adéquate pour la suite de notre travail, et suffisamment large, pour qu'elle englobe toute la variété des sociétés anonymes de famille. Nous présenterons aussi les raisons du choix de la forme juridique de la société anonyme pour une société de famille. Nous terminerons nos développements introductifs par un exposé relatif à la notion d'action et à son transfert en sa qualité de papier-valeur, préalables nécessaires à nos développements sur la transmissibilité des actions. Nous mettrons ainsi en évidence les conditions de transfert des actions, en tenant compte de la tendance à la dématérialisation des titres. Une fois ces éléments mis en place, qui nous donneront une première idée de la structure du capital d'une société anonyme de famille, nous devrons préciser la manière dont le capital doit être structuré. Nous chercherons comment il peut être maintenu en mains de la famille et si d'autres moyens n'ayant pas directement trait au capital peuvent être mis en oeuvre. Ainsi, dans un deuxième titre, nous analyserons les dispositions statutaires relatives à la structure du capital et à son maintien en mains familiales, en particulier les restrictions au transfert des actions nominatives. Les dispositions statutaires constituent-elles un moyen adéquat pour maintenir le caractère familial de la société ? Quelles sont les conditions pour limiter le transfert des actions ? Le caractère familial de la société peut-il être utilisé afin de restreindre le transfert des actions ? Les solutions sont-elles différentes si les actions sont, en tout ou en partie, cotées en bourse ? Nous traiterons aussi, dans ce même titre, les modalités du droit de vote et déterminerons si des dispositions statutaires peuvent être aménagées afin de donner plus de voix aux actions des membres de la famille et ainsi d'optimiser la détention du capital. Nous examinerons, dans notre troisième titre, un acte qui a trait à la fois au droit des contrats et au droit de la société anonyme, la convention d'actionnaires. En quoi consistent ces contrats ? Quels engagements les actionnaires familiaux peuvent-ils et doivent-ils prendre ? Quelle est l'utilité de ces contrats dans les sociétés anonymes de famille ? Quelles en sont les limites ? Les clauses conventionnelles peuvent-elles être intégrées dans les statuts ? Comment combiner les différentes clauses de la convention entre elles ? Dans ce même titre, nous étudierons également la concrétisation et la mise en application des dispositions statutaires et des clauses conventionnelles, afin de déterminer si, combinées, elles constituent des moyens adéquats pour assurer la structure, le maintien et l'optimisation de la détention du capital. Enfin, dans le quatrième et dernier titre, qui est davantage conçu comme un excursus, nous nous éloignerons du domaine strict du droit des sociétés (et des contrats) pour envisager certains aspects matrimoniaux et d'ordre successoral. En effet, puisque la famille est à la base de la société, il convient de relever l'importance des règles matrimoniales et successorales pour les sociétés anonymes de famille et leur incidence sur la détention des actions et le maintien du caractère familial de la société. Nous examinerons en particulier comment ces instruments doivent être utilisés pour qu'ils n'annihilent pas les efforts entrepris pour conserver la société en mains familiales. Notre travail a pour but et pour innovation de présenter une analyse transversale aussi complète que possible du droit de la société anonyme et des instruments connexes en étudiant les moyens à disposition des actionnaires d'une société anonyme de type personnel, la société anonyme de famille. Il tentera ainsi d'apporter une approche théorique nouvelle de ces questions, de présenter certains aspects de manière pragmatique, d'analyser la mise en oeuvre des différents moyens étudiés et de discuter leur opportunité.
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Multiple organization indices have been used to predict the outcome of stepwise catheter ablation in long-standing persistent atrial fibrillation (AF), however with limited success. Our study aims at developinginnovative organization indices from baseline ECG (i.e. during the procedure, before ablation) in orderto identify the site of AF termination by catheter ablation. Seventeen consecutive male patients (age60 ± 5 years, AF duration 7 ± 5 years) underwent a stepwise catheter ablation. Chest lead V6 was placedin the back (V6b). QRST cancelation was performed from chest leads V1 to V6b. Using an innovativeadaptive harmonic frequency tracking, two measures of AF organization were computed to quantify theharmonics components of ECG activity: (1) the adaptive phase difference variance (APD) between theAF harmonic components as a measure of AF regularity, and (2) and adaptive organization index (AOI)evaluating the cyclicity of the AF oscillations. Both adaptive indices were compared to indices computedusing a time-invariant approach: (1) ECG AF cycle length (AFCL), (2) the spectrum based organizationindex (OI), and (3) the time-invariant phase difference TIPD. Long-standing persistent AF was terminatedinto sinus rhythm or atrial tachycardia in 13/17 patients during stepwise ablation, 11 during left atriumablation (left terminated patients - LT), 2 during the right atrium ablation (right terminated patients -RT), and 4 were non terminated (NT) and required electrical cardioversion. Our findings showed that LTpatients were best separated from RT/NT before ablation by the duration of sustained AF and by AOI onchest lead V1 and APD from the dorsal lead V6b as compared to ECG AFCL, OI and TIPD, respectively. Ourresults suggest that adaptive measures of AF organization computed before ablation perform better thantime-invariant based indices for identifying patients whose AF will terminate during ablation within theleft atrium. These findings are indicative of a higher baseline organization in these patients that could beused to select candidates for the termination of AF by stepwise catheter ablation.© 2013 Elsevier Ltd. All rights reserved.
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Identifying adaptive genetic variation is a challenging task, in particular in non-model species for which genomic information is still limited or absent. Here, we studied distribution patterns of amplified fragment length polymorphisms (AFLPs) in response to environmental variation, in 13 alpine plant species consistently sampled across the entire European Alps. Multiple linear regressions were performed between AFLP allele frequencies per site as dependent variables and two categories of independent variables, namely Moran's eigenvector map MEM variables (to account for spatial and unaccounted environmental variation, and historical demographic processes) and environmental variables. These associations allowed the identification of 153 loci of ecological relevance. Univariate regressions between allele frequency and each environmental factor further showed that loci of ecological relevance were mainly correlated with MEM variables. We found that precipitation and temperature were the best environmental predictors, whereas topographic factors were rarely involved in environmental associations. Climatic factors, subject to rapid variation as a result of the current global warming, are known to strongly influence the fate of alpine plants. Our study shows, for the first time for a large number of species, that the same environmental variables are drivers of plant adaptation at the scale of a whole biome, here the European Alps.
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This PhD thesis addresses the issue of scalable media streaming in large-scale networking environments. Multimedia streaming is one of the largest sink of network resources and this trend is still growing as testified by the success of services like Skype, Netflix, Spotify and Popcorn Time (BitTorrent-based). In traditional client-server solutions, when the number of consumers increases, the server becomes the bottleneck. To overcome this problem, the Content-Delivery Network (CDN) model was invented. In CDN model, the server copies the media content to some CDN servers, which are located in different strategic locations on the network. However, they require heavy infrastructure investment around the world, which is too expensive. Peer-to-peer (P2P) solutions are another way to achieve the same result. These solutions are naturally scalable, since each peer can act as both a receiver and a forwarder. Most of the proposed streaming solutions in P2P networks focus on routing scenarios to achieve scalability. However, these solutions cannot work properly in video-on-demand (VoD) streaming, when resources of the media server are not sufficient. Replication is a solution that can be used in these situations. This thesis specifically provides a family of replication-based media streaming protocols, which are scalable, efficient and reliable in P2P networks. First, it provides SCALESTREAM, a replication-based streaming protocol that adaptively replicates media content in different peers to increase the number of consumers that can be served in parallel. The adaptiveness aspect of this solution relies on the fact that it takes into account different constraints like bandwidth capacity of peers to decide when to add or remove replicas. SCALESTREAM routes media blocks to consumers over a tree topology, assuming a reliable network composed of homogenous peers in terms of bandwidth. Second, this thesis proposes RESTREAM, an extended version of SCALESTREAM that addresses the issues raised by unreliable networks composed of heterogeneous peers. Third, this thesis proposes EAGLEMACAW, a multiple-tree replication streaming protocol in which two distinct trees, named EAGLETREE and MACAWTREE, are built in a decentralized manner on top of an underlying mesh network. These two trees collaborate to serve consumers in an efficient and reliable manner. The EAGLETREE is in charge of improving efficiency, while the MACAWTREE guarantees reliability. Finally, this thesis provides TURBOSTREAM, a hybrid replication-based streaming protocol in which a tree overlay is built on top of a mesh overlay network. Both these overlays cover all peers of the system and collaborate to improve efficiency and low-latency in streaming media to consumers. This protocol is implemented and tested in a real networking environment using PlanetLab Europe testbed composed of peers distributed in different places in Europe.