983 resultados para Plaque de l’artère carotidienne


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The espins are actin-binding and -bundling proteins localized to parallel actin bundles. The 837-amino-acid “espin” of Sertoli cell–spermatid junctions (ectoplasmic specializations) and the 253-amino-acid “small espin” of brush border microvilli are splice isoforms that share a C-terminal 116-amino-acid actin-bundling module but contain different N termini. To investigate the roles of espin and its extended N terminus, we examined the actin-binding and -bundling properties of espin constructs and the stoichiometry and developmental accumulation of espin within the ectoplasmic specialization. An espin construct bound to F-actin with an approximately threefold higher affinity (Kd = ∼70 nM) than small espin and was ∼2.5 times more efficient at forming bundles. The increased affinity appeared to be due to an additional actin-binding site in the N terminus of espin. This additional actin-binding site bound to F-actin with a Kd of ∼1 μM, decorated actin stress fiber-like structures in transfected cells, and was mapped to a peptide between the two proline-rich peptides in the N terminus of espin. Espin was detected at ∼4–5 × 106 copies per ectoplasmic specialization, or ∼1 espin per 20 actin monomers and accumulated there coincident with the formation of parallel actin bundles during spermiogenesis. These results suggest that espin is a major actin-bundling protein of the Sertoli cell–spermatid ectoplasmic specialization.

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Plakophilin 2, a member of the arm-repeat protein family, is a dual location protein that occurs both in the cytoplasmic plaques of desmosomes as an architectural component and in an extractable form in the nucleoplasm. Here we report the existence of two nuclear particles containing plakophilin 2 and the largest subunit of RNA polymerase (pol) III (RPC155), both of which colocalize and are coimmunoselected with other pol III subunits and with the transcription factor TFIIIB. We also show that plakophilin 2 is present in the pol III holoenzyme, but not the core complex, and that it binds specifically to RPC155 in vitro. We propose the existence of diverse nuclear particles in which proteins known as plaque proteins of intercellular junctions are complexed with specific nuclear proteins.

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Representational difference analysis was used to search for pathogens in multiple sclerosis brains. We detected a 341-nucleotide fragment that was 99.4% identical to the major DNA binding protein gene of human herpesvirus 6 (HHV-6). Examination of 86 brain specimens by PCR demonstrated that HHV-6 was present in > 70% of MS cases and controls and is thus a commensal virus of the human brain. By DNA sequencing, 36/37 viruses from MS cases and controls were typed as HHV-6 variant B group 2. Other herpesviruses, retroviruses, and measles virus were detected infrequently or not at all. HHV-6 expression was examined by immunocytochemistry with monoclonal antibodies against HHV-6 virion protein 101K and DNA binding protein p41. Nuclear staining of oligodendrocytes was observed in MS cases but not in controls, and in MS cases it was observed around plaques more frequently than in uninvolved white matter. MS cases showed prominent cytoplasmic staining of neurons in gray matter adjacent to plaques, although neurons expressing HHV-6 were also found in certain controls. Since destruction of oligodendrocytes is a hallmark of MS, these studies suggest an association of HHV-6 with the etiology or pathogenesis of MS.

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In the glomeruli of the granule cell layer of mammalian cerebellum, neuronal extensions are interconnected by numerous small, nearly isodiametric (diameters up to 0.1 micron), junctions previously classified as puncta adherentia related to the vinculin-containing, actin microfilament-anchoring junctions of the zonula adherens of epithelial and certain other cells. Using immunofluorescence and immunoelectron microscopy, we have found, however, that these junctions are negative for E- and VE-cadherin, for desmosomal cadherins, and also for vinculin, alpha-actinin, and desmoplakin, but they do contain, in addition to the protein plakoglobin common to all forms of adhering junctions, the plaque proteins alpha- and beta-catenin and the transmembrane glycoprotein M-cadherin previously found as a spread--i.e., not junction bound--plasma membrane protein in certain fetal and regenerating muscle cells and in satellite cells of adult skeletal muscle. We conclude that these M-cadherin-containing junctions of the granule cell layer represent a special type of adhering junction, for which we propose the term contactus adherens (from the Latin contactus, for touch, site of bordering upon, also influence), and we discuss the differences between the various adhering junctions on the basis of their molecular constituents.

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Comunicación presentada en el VII Symposium Nacional de Reconocimiento de Formas y Análisis de Imágenes, SNRFAI, Barcelona, abril 1997.

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En chirurgie vasculaire, l’accès à l’artère fémorale, qu’il soit par une incision chirurgicale ou par une approche percutanée, est très fréquemment utilisé pour une multitude d’interventions vasculaires ou endovasculaires; pour des pontages divers, le traitement d’occlusions artérielles, la réparation d’anévrismes et la pose d’endoprothèses. L’objectif général de ce projet de recherche est de faciliter et réduire les risques des approches de l’artère fémorale par une meilleure compréhension anatomique du triangle fémoral. La méthodologie a été réalisée grâce à l’utilisation de cadavres spécialement embaumés par la méthode développée par Walter Thiel. Les résultats présentés dans ce mémoire ont permis de proposer des solutions en réponse à des problèmes cliniques en chirurgie vasculaire. Dans un premier temps, l’étude de la vascularisation cutanée du triangle fémoral a mené à proposer de nouvelles incisions chirurgicales afin de limiter la dévascularisation cutanée des plaies et ainsi réduire les problèmes de cicatrisation observés. Ensuite, nous avons validé l’identification radiographique et échographique de l’artère fémorale à son croisement avec le ligament inguinal afin de faciliter l’identification d’un site de ponction artérielle adéquat. Enfin, nous avons développé une méthode échographique simple qui facilite l’approche percutanée de l’artère fémorale, même chez les patients obèses. Les retombées de ce projet de recherche sont multiples pour les cliniciens, l’étude fournit une meilleure compréhension anatomique tridimensionnelle du triangle fémoral et les techniques proposées dans ce mémoire pourront apporter une amélioration de la pratique chirurgicale et faciliter le travail des médecins. Toutefois, ces propositions devront maintenant être validées en clinique.

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On verso: M-14

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York and Sawyer, architects. Given to the university by William W. Cook, the four buildings comprising the Law Quadrangle with their construction dates are: the Lawyers Club, 1924; the John P. Cook Dormitory, 1930; the Legal Research Building, 1931, and Hutchins Hall, 1933. The Legal Research Building includes the original library.

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Plaque given by the Sarah Caswell Angell chapter of the Daughters of the American Revolution to commemorate Mason Hall. The first University building devoted to instruction, the building was known as the University Building upon completion in 1841. It was both dormitory and classroom facility. It was named after Govenor Stevens T. Mason in 1843. In 1856 the central part of the North Wing was renovated to house the University Library and Museum. A similar building was erected to the South. University Hall (built 1871-1873) connected the two buildings, which then were referred to as South Wing and North Wing. Mason Hall, South Wing and University Hall were removed in 1950.

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