998 resultados para Structural Descriptions
Resumo:
Redescriptions are given of the mature oocysts of Isospora ameivae Carini, 1932, from the teiid lizard Ameiva ameiva, and Isospora hemidactyli Carini,1936 from the gecko Hemidactylus mabouia, in north Brazil. The endogenous stages of the two parasites in the small intestine are described. Those of I. ameivae are intracytoplasmic, whereas those of I. hemidactyli are intranuclear.
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The authors examined the associations of social support with socioeconomic status (SES) and with mortality, as well as how SES differences in social support might account for SES differences in mortality. Analyses were based on 9,333 participants from the British Whitehall II Study cohort, a longitudinal cohort established in 1985 among London-based civil servants who were 35-55 years of age at baseline. SES was assessed using participant's employment grades at baseline. Social support was assessed 3 times in the 24.4-year period during which participants were monitored for death. In men, marital status, and to a lesser extent network score (but not low perceived support or high negative aspects of close relationships), predicted both all-cause and cardiovascular mortality. Measures of social support were not associated with cancer mortality. Men in the lowest SES category had an increased risk of death compared with those in the highest category (for all-cause mortality, hazard ratio = 1.59, 95% confidence interval: 1.21, 2.08; for cardiovascular mortality, hazard ratio = 2.48, 95% confidence interval: 1.55, 3.92). Network score and marital status combined explained 27% (95% confidence interval: 14, 43) and 29% (95% confidence interval: 17, 52) of the associations between SES and all-cause and cardiovascular mortality, respectively. In women, there was no consistent association between social support indicators and mortality. The present study suggests that in men, social isolation is not only an important risk factor for mortality but is also likely to contribute to differences in mortality by SES.
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Growing experimental evidence indicates that, in addition to the physical virion components, the non-structural proteins of hepatitis C virus (HCV) are intimately involved in orchestrating morphogenesis. Since it is dispensable for HCV RNA replication, the non-structural viral protein NS2 is suggested to play a central role in HCV particle assembly. However, despite genetic evidences, we have almost no understanding about NS2 protein-protein interactions and their role in the production of infectious particles. Here, we used co-immunoprecipitation and/or fluorescence resonance energy transfer with fluorescence lifetime imaging microscopy analyses to study the interactions between NS2 and the viroporin p7 and the HCV glycoprotein E2. In addition, we used alanine scanning insertion mutagenesis as well as other mutations in the context of an infectious virus to investigate the functional role of NS2 in HCV assembly. Finally, the subcellular localization of NS2 and several mutants was analyzed by confocal microscopy. Our data demonstrate molecular interactions between NS2 and p7 and E2. Furthermore, we show that, in the context of an infectious virus, NS2 accumulates over time in endoplasmic reticulum-derived dotted structures and colocalizes with both the envelope glycoproteins and components of the replication complex in close proximity to the HCV core protein and lipid droplets, a location that has been shown to be essential for virus assembly. We show that NS2 transmembrane region is crucial for both E2 interaction and subcellular localization. Moreover, specific mutations in core, envelope proteins, p7 and NS5A reported to abolish viral assembly changed the subcellular localization of NS2 protein. Together, these observations indicate that NS2 protein attracts the envelope proteins at the assembly site and it crosstalks with non-structural proteins for virus assembly.
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Retroelements are important evolutionary forces but can be deleterious if left uncontrolled. Members of the human APOBEC3 family of cytidine deaminases can inhibit a wide range of endogenous, as well as exogenous, retroelements. These enzymes are structurally organized in one or two domains comprising a zinc-coordinating motif. APOBEC3G contains two such domains, only the C terminal of which is endowed with editing activity, while its N-terminal counterpart binds RNA, promotes homo-oligomerization, and is necessary for packaging into human immunodeficiency virus type 1 (HIV-1) virions. Here, we performed a large-scale mutagenesis-based analysis of the APOBEC3G N terminus, testing mutants for (i) inhibition of vif-defective HIV-1 infection and Alu retrotransposition, (ii) RNA binding, and (iii) oligomerization. Furthermore, in the absence of structural information on this domain, we used homology modeling to examine the positions of functionally important residues and of residues found to be under positive selection by phylogenetic analyses of primate APOBEC3G genes. Our results reveal the importance of a predicted RNA binding dimerization interface both for packaging into HIV-1 virions and inhibition of both HIV-1 infection and Alu transposition. We further found that the HIV-1-blocking activity of APOBEC3G N-terminal mutants defective for packaging can be almost entirely rescued if their virion incorporation is forced by fusion with Vpr, indicating that the corresponding region of APOBEC3G plays little role in other aspects of its action against this pathogen. Interestingly, residues forming the APOBEC3G dimer interface are highly conserved, contrasting with the rapid evolution of two neighboring surface-exposed amino acid patches, one targeted by the Vif protein of primate lentiviruses and the other of yet-undefined function.
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Lutzomyia georgii n. sp. and the female of L. tarapacaensis in the Series infraspinosa of the subgenus Evandromyia are described, from specimens collected in rainforest in the north of the State of Pará, Brazil. The new species was taken together with five other Evandromyia species including L. infraspinosa (sensu strictu) in the same locality. L. georgii has previously been confused with both L. begonae and L. infraspinosa, whereas L. tarapacaensis would run to L. infraspinosa in recent taxonomic keys. The fact that both L. georgii and L. tarapacaensis are locally sympatric with L. infraspinosa helps to clarify the taxonomic limits of the latter species. New keys to the subgenus Evandromyia are provided.
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Serine repeat antigen 5 (SERA5) is an abundant antigen of the human malaria parasite Plasmodium falciparum and is the most strongly expressed member of the nine-gene SERA family. It appears to be essential for the maintenance of the erythrocytic cycle, unlike a number of other members of this family, and has been implicated in parasite egress and/or erythrocyte invasion. All SERA proteins possess a central domain that has homology to papain except in the case of SERA5 (and some other SERAs), where the active site cysteine has been replaced with a serine. To investigate if this domain retains catalytic activity, we expressed, purified, and refolded a recombinant form of the SERA5 enzyme domain. This protein possessed chymotrypsin-like proteolytic activity as it processed substrates downstream of aromatic residues, and its activity was reversed by the serine protease inhibitor 3,4-diisocoumarin. Although all Plasmodium SERA enzyme domain sequences share considerable homology, phylogenetic studies revealed two distinct clusters across the genus, separated according to whether they possess an active site serine or cysteine. All Plasmodia appear to have at least one member of each group. Consistent with separate biological roles for members of these two clusters, molecular modeling studies revealed that SERA5 and SERA6 enzyme domains have dramatically different surface properties, although both have a characteristic papain-like fold, catalytic cleft, and an appropriately positioned catalytic triad. This study provides impetus for the examination of SERA5 as a target for antimalarial drug design.
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his paper proposes a structural investigation of the Turtle Mountain anticline (Alberta, Canada) to better understand the role of the different tectonic features on the development of both local and large scale rock slope instabilities occurring in Turtle Mountain. The study area is investigated by combining remote methods with detailed field surveys. In particular, the benefit of Terrestrial Laser Scanning for ductile and brittle tectonic structure interpretations is illustrated. The proposed tectonic interpretation allows the characterization of the fracturing pattern, the fold geometry and the role of these tectonic features in rock slope instability development. Ten discontinuity sets are identified in the study area, their local variations permitting the differentiation of the study zone into 20 homogenous structural domains. The anticline is described as an eastern verging fold that displays considerable geometry differences along its axis and developed by both flexural slip and tangential longitudinal strain folding mechanisms. Moreover, the origins of the discontinuity sets are determined according to the tectonic phases affecting the region (pre-folding, folding, post-folding). The localization and interpretation of kinematics of the different instabilities revealed the importance of considering the discrete brittle planes of weakness, which largely control the kinematic release of the local instabilities, and also the rock mass damage induced by large tectonic structures (fold hinge, thrust).
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Résumé Contexte et objectifs Les activités de recherche appliquée et développement (Ra&D) font partie du mandat de prestations des hautes écoles spécialisées (HES) prescrit par la loi. Néanmoins la tradition, le type et l'importance de la recherche varient fortement en fonction des domaines d'études. Il en va de même pour les liens avec les autres domaines de prestations que sont l'enseignement, la formation continue et les prestations de services. Les activités de Ra&D dans chaque HES s'inscrivent dans la tension entre l'orientation pratique (qui signifie le plus souvent une orientation vers le marché économique) et l'orientation vers la science (signe de leur rattachement au système scientifique). Il en découle des conflits d'intérêts entre les critères de qualité du « succès sur le marché » et de la « réputation scientifique ». En 2005, sur mandat de la Commission pour la technologie et l'innovation (CTI), B. Lepori et L. Attar (2006) ont mené une étude visant à examiner plus particulièrement les stratégies de recherche et l'organisation de la recherche au sein des hautes écoles spécialisées. Aujourd'hui, six ans plus tard, la phase de mise sur pied est en grande partie terminée. En lançant une nouvelle étude, l'Office fédéral de la formation professionnelle et de la technologie (OFFT) et la Commission fédérale des hautes écoles spécialisées (CFHES) souhaitaient faire le point sur les activités de recherche des HES, c'està- dire examiner les résultats des stratégies et de l'organisation de cette phase. Cette étude s'articule principalement autour de l'état actuel de la recherche, de ses problèmes et de ses perspectives. Structure de l'étude La recherche dans les HES se caractérise par différents facteurs d'influence (cultures disciplinaires, traditions, ancrage dans les régions linguistiques, structures organisationnelles, gouvernance, stratégies de positionnement, personnel, etc.). Dans la présente étude, ces facteurs sont systématiquement examinés selon deux dimensions: le « domaine d'études » et la « haute école spécialisée». L'analyse repose notamment sur l'exploitation de documents et de données. Mais cette étude se fonde principalement sur les entretiens menés avec les représentants des HES à différents niveaux de responsabilités. Les hautes écoles spécialisées (HES) Les entretiens avec les directions des HES ainsi que l'exploitation des données et des documents mettent en évidence la grande diversité des sept HES suisses de droit public dans leur structure, leurs combinaisons de domaines d'études et leurs orientations. Les modes de financement de la recherche varient fortement entre les HES. Concrètement, les sources de financement ne sont pas les mêmes d'une HES à l'autre (contributions des organes responsables, fonds de tiers, etc.). Les degrés et formes du pilotage concernant les contenus de la recherche diffèrent également dans une large mesure (définition de pôles de recherche, soutien cumulatif à l'acquisition de fonds de tiers), de même que les stratégies en matière de recrutement et d'encouragement du personnel. La politique de chaque HES implique des tensions et des problèmes spécifiques. Les domaines d'études Sur les dix domaines d'études, quatre ont été choisis à titre d'exemples pour des études approfondies : Technique et technologies de l'information (TI), Economie et services, Travail social, Musique, arts de la scène et autres arts. Chaque domaine d'études a été examiné à chaque fois dans deux HES. Cette méthode permet de relever les différences et les similitudes. Les résultats confirment qu'il existe des différences importantes à bien des égards entre les domaines d'études évalués. Ces différences concernent la position dans le système des hautes écoles, le volume des activités de recherche, l'importance de la recherche au sein des HES, la tradition, l'identité et l'orientation. Elles se retrouvent par ailleurs dans les buts et la place de la Ra&D dans les domaines d'études concernés. Il ressort toutefois qu'il n'y a pas lieu de parler d'une dichotomie entre les « anciens » et les « nouveaux » domaines d'études : Technique, économie et design (TED) d'une part et Santé, social et arts (SSA) d'autre part. Il semble plus pertinent de désigner le domaine d'études 4/144 Technique et TI comme le domaine dominant auquel se référent le pilotage et le financement des HES, que ce soit implicitement ou explicitement. Cadre homogène et espaces hétérogènes Le pilotage et le financement de la Ra&D au sein des hautes écoles spécialisées s'inscrivent dans un modèle-cadre fixé à l'échelle fédérale et principalement axé sur le domaine d'études Technique. Ce modèle-cadre se caractérise par un apport élevé de fonds de tiers (notamment les subventions de la CTI et les fonds privés) et des incitations en faveur de ce mode de financement, par une orientation vers le marché et par un haut degré d'autonomie des établissements partenaires/départements et instituts. Par comparaison avec les hautes écoles universitaires, les HES affichent notamment un faible niveau de financement de base dans le secteur Ra&D. Cet état de fait est certes compatible avec la forme actuelle du financement par la CTI, mais pas avec les règles de financement du Fonds national suisse (FNS). Un financement principalement basé sur les fonds de tiers signifie par ailleurs que l'orientation du contenu de la recherche et la définition de critères de qualité sont confiées à des instances externes, notamment aux mandants et aux institutions d'encouragement de la recherche. Il apparaît en dernier lieu qu'un tel modèle-cadre ne favorise pas les politiques visant à la constitution de pôles de recherche, l'obtention d'une taille critique, et la mise en place d'une coordination. Ces résultats concernent tous les domaines d'études sans avoir pour autant les mêmes conséquences : les domaines d'études se prêtant dans une faible mesure à l'acquisition de fonds de tiers sur des marchés économiques (dans cette étude, il s'agit essentiellement de la Musique, arts de la scène et autres arts, mais également du Travail social dans certains cas) ont plus de difficultés à répondre aux attentes énoncées en termes de succès et de profit. Les HES modifient plus ou moins le modèle-cadre en élaborant elles-mêmes des modèles d'organisation qui prennent en compte leur combinaison de domaines d'études et soutiennent leurs propres orientations et positionnements stratégiques. La combinaison de domaines d'études hétérogènes et de politiques différentes au sein des HES se traduit par une complexité du système des HES, beaucoup plus importante que ce que généralement supposée. De plus, au regard des connaissances lacunaires sur les structures « réelles » de gouvernance des HES, il n'est quasiment pas possible de comparer directement les hautes écoles spécialisées entre elles. Conclusions et recommandations Le principal constat qui ressort d'un ensemble de conclusions et de recommandations des auteurs est que le secteur Ra&D dans les HES doit être plus explicitement évalué en fonction des spécificités des domaines d'études, à savoir du rôle de la recherche pour l'économie et la société, des différences entre les marchés (économiques) correspondants et de l'importance de la Ra&D pour les objectifs visés. L'étude montre clairement qu'il n'y a pas à proprement parler une seule et unique recherche au sein des hautes écoles spécialisées et que la notion de « recherche appliquée » ne suffit ni comme description ni, par conséquence, comme critère d'identité commun. Partant de ce constat, nous recommandons de revoir le mode de financement de la recherche dans les HES et d'approfondir le débat sur les structures de gouvernance sur l'orientation de la Ra&D (et notamment sur les critères de qualité appliqués), de même que sur l'autonomie et la coordination. Les recommandations constituent des points de discussion et n'engagent aucunement l'OFFT ou la CFHES.
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A major advance in our understanding of the natural history of Schistosoma haematobium-related morbidity has come through the introduction of the portable ultrasound machines for non-invasive examination of the kidneys and bladder. With the use of generators or battery packs to supply power in non-clinical field settings, and with the use of instant photography or miniaturized thermal printers to record permanent images, it is possible to examine scores of individuals in endemic communities every day. Broad-based ultrasound screening has allowed better definition of age-specific disease risks in urinary schistosomiasis. Results indicate that urinary tract abnormalities are common (18% overall prevalence) in S. haematobium transmission areas, with a 2-4% risk of either severe bladder abnormality or advanced ureteral obstruction. In longitudinal surveys, ultrasound studies have shown that praziquantel and metrifonate therapy are rapidly effective in reversing urinary tract abnormalities among children. The benefits of treating adults are less well known, but research in progress should help to define this issue. Similarly, the prognosis of specific ultrasound findings needs to be clarified, and the ease of sonographic examination will make such long-term follow-up studies feasible. In summary, the painless, quick, and reproducible ultrasound examination has become an essential tool in the study of urinary schistosomiasis.
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BACKGROUND: The cerebellum is a complex structure that can be affected by several congenital and acquired diseases leading to alteration of its function and neuronal circuits. Identifying the structural bases of cerebellar neuronal networks in humans in vivo may provide biomarkers for diagnosis and management of cerebellar diseases. OBJECTIVES: To define the anatomy of intrinsic and extrinsic cerebellar circuits using high-angular resolution diffusion spectrum imaging (DSI). METHODS: We acquired high-resolution structural MRI and DSI of the cerebellum in four healthy female subjects at 3T. DSI tractography based on a streamline algorithm was performed to identify the circuits connecting the cerebellar cortex with the deep cerebellar nuclei, selected brainstem nuclei, and the thalamus. RESULTS: Using in-vivo DSI in humans we were able to demonstrate the structure of the following cerebellar neuronal circuits: (1) connections of the inferior olivary nucleus with the cerebellar cortex, and with the deep cerebellar nuclei (2) connections between the cerebellar cortex and the deep cerebellar nuclei, (3) connections of the deep cerebellar nuclei conveyed in the superior (SCP), middle (MCP) and inferior (ICP) cerebellar peduncles, (4) complex intersections of fibers in the SCP, MCP and ICP, and (5) connections between the deep cerebellar nuclei and the red nucleus and the thalamus. CONCLUSION: For the first time, we show that DSI tractography in humans in vivo is capable of revealing the structural bases of complex cerebellar networks. DSI thus appears to be a promising imaging method for characterizing anatomical disruptions that occur in cerebellar diseases, and for monitoring response to therapeutic interventions.
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In eukaryotes, homologous recombination proteins such as RAD51 and RAD52 play crucial roles in DNA repair and genome stability. Human RAD52 is a member of a large single-strand annealing protein (SSAP) family [1] and stimulates Rad51-dependent recombination [2, 3]. In prokaryotes and phages, it has been difficult to establish the presence of RAD52 homologs with conserved sequences. Putative SSAPs were recently found in several phages that infect strains of Lactococcus lactis[4]. One of these SSAPs was identified as Sak and was found in the virulent L. lactis phage ul36, which belongs to the Siphoviridae family [4, 5]. In this study, we show that Sak is homologous to the N terminus of human RAD52. Purified Sak binds single-stranded DNA (ssDNA) preferentially over double-stranded DNA (dsDNA) and promotes the renaturation of long complementary ssDNAs. Sak also binds RecA and stimulates homologous recombination reactions. Mutations shown to modulate RAD52 DNA binding [6] affect Sak similarly. Remarkably, electron-microscopic reconstruction of Sak reveals an undecameric (11) subunit ring, similar to the crystal structure of the N-terminal fragment of human RAD52 [7, 8]. For the first time, we propose a viral homolog of RAD52 at the amino acid, phylogenic, functional, and structural levels.
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BACKGROUND: Accurate catalogs of structural variants (SVs) in mammalian genomes are necessary to elucidate the potential mechanisms that drive SV formation and to assess their functional impact. Next generation sequencing methods for SV detection are an advance on array-based methods, but are almost exclusively limited to four basic types: deletions, insertions, inversions and copy number gains. RESULTS: By visual inspection of 100 Mbp of genome to which next generation sequence data from 17 inbred mouse strains had been aligned, we identify and interpret 21 paired-end mapping patterns, which we validate by PCR. These paired-end mapping patterns reveal a greater diversity and complexity in SVs than previously recognized. In addition, Sanger-based sequence analysis of 4,176 breakpoints at 261 SV sites reveal additional complexity at approximately a quarter of structural variants analyzed. We find micro-deletions and micro-insertions at SV breakpoints, ranging from 1 to 107 bp, and SNPs that extend breakpoint micro-homology and may catalyze SV formation. CONCLUSIONS: An integrative approach using experimental analyses to train computational SV calling is essential for the accurate resolution of the architecture of SVs. We find considerable complexity in SV formation; about a quarter of SVs in the mouse are composed of a complex mixture of deletion, insertion, inversion and copy number gain. Computational methods can be adapted to identify most paired-end mapping patterns.
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ABSTRACT This dissertation investigates the, nature of space-time as described by the theory of general relativity. It mainly argues that space-time can be naturally interpreted as a physical structure in the precise sense of a network of concrete space-time relations among concrete space-time points that do not possess any intrinsic properties and any intrinsic identity. Such an interpretation is fundamentally based on two related key features of general relativity, namely substantive general covariance and background independence, where substantive general covariance is understood as a gauge-theoretic invariance under active diffeomorphisms and background independence is understood in the sense that the metric (or gravitational) field is dynamical and that, strictly speaking, it cannot be uniquely split into a purely gravitational part and a fixed purely inertial part or background. More broadly, a precise notion of (physical) structure is developed within the framework of a moderate version of structural realism understood as a metaphysical claim about what there is in the world. So, the developement of this moderate structural realism pursues two main aims. The first is purely metaphysical, the aim being to develop a coherent metaphysics of structures and of objects (particular attention is paid to the questions of identity and individuality of these latter within this structural realist framework). The second is to argue that moderate structural realism provides a convincing interpretation of the world as described by fundamental physics and in particular of space-time as described by general relativity. This structuralist interpretation of space-time is discussed within the traditional substantivalist-relationalist debate, which is best understood within the broader framework of the question about the relationship between space-time on the one hand and matter on the other. In particular, it is claimed that space-time structuralism does not constitute a 'tertium quid' in the traditional debate. Some new light on the question of the nature of space-time may be shed from the fundamental foundational issue of space-time singularities. Their possible 'non-local' (or global) feature is discussed in some detail and it is argued that a broad structuralist conception of space-time may provide a physically meaningful understanding of space-time singularities, which is not plagued by the conceptual difficulties of the usual atomsitic framework. Indeed, part of these difficulties may come from the standard differential geometric description of space-time, which encodes to some extent this atomistic framework; it raises the question of the importance of the mathematical formalism for the interpretation of space-time.