79 resultados para Michaelis constant


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Alterations of the p53 pathway are among the most frequent aberrations observed in human cancers. We have performed an exhaustive analysis of TP53, p14, p15, and p16 status in a large series of 143 soft tissue sarcomas, rare tumors accounting for around 1% of all adult cancers, with complex genetics. For this purpose, we performed genomic studies, combining sequencing, copy number assessment, and expression analyses. TP53 mutations and deletions are more frequent in leiomyosarcomas than in undifferentiated pleomorphic sarcomas. Moreover, 50% of leiomyosarcomas present TP53 biallelic inactivation, whereas most undifferentiated pleomorphic sarcomas retain one wild-type TP53 allele (87.2%). The spectrum of mutations between these two groups of sarcomas is different, particularly with a higher rate of complex mutations in undifferentiated pleomorphic sarcomas. Most tumors without TP53 alteration exhibit a deletion of p14 and/or lack of mRNA expression, suggesting that p14 loss could be an alternative genotype for direct TP53 inactivation. Nevertheless, the fact that even in tumors altered for TP53, we could not detect p14 protein suggests that other p14 functions, independent of p53, could be implicated in sarcoma oncogenesis. In addition, both p15 and p16 are frequently codeleted or transcriptionally co-inhibited with p14, essentially in tumors with two wild-type TP53 alleles. Conversely, in TP53-altered tumors, p15 and p16 are well expressed, a feature not incompatible with an oncogenic process.

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The time constant of cerebral arterial bed (in brief time constant) is a product of brain arterial compliance (C(a)) and resistance (CVR). We tested the hypothesis that in normal subjects, changes in end-tidal CO(2) (EtCO(2)) affect the value of the time constant. C(a) and CVR were estimated using mathematical transformations of arterial pressure (ABP) and transcranial Doppler (TCD) cerebral blood flow velocity waveforms. Responses of the time constant to controlled changes in EtCO(2) were compared in 34 young volunteers. Hypercapnia shortened the time constant (0.22 s [0.17, 0.26] vs. 0.16 s [0.13, 0.20]; p = 0.000001), while hypocapnia lengthened the time constant (0.22 s [0.17, 0.26] vs. 0.23 s [0.19, 0.32]; p < 0.0032). The time constant was negatively correlated with changes in EtCO(2) (R(partial) = -0.68, p < 0.000001). This was associated with a decrease in CVR when EtCO(2) increased (R(partial) = -0.80, p < 0.000001) and C(a) remained independent of changes in EtCO(2). C(a) was negatively correlated with mean ABP (R(partial) = -0.68, p < 0.000001). In summary, the time constant shortens with increasing EtCO(2). Its potential role in cerebrovascular investigations needs further studies.

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Inositol and its phosphorylated derivatives play a major role in brain function, either as osmolytes, second messengers or regulators of vesicle endo- and exocytosis. Here we describe the identification and functional characterization of a novel H(+)-myo- inositol co-transporter, HMIT, expressed predominantly in the brain. HMIT cDNA encodes a 618 amino acid polypeptide with 12 predicted transmembrane domains. Functional expression of HMIT in Xenopus oocytes showed that transport activity was specific for myo-inositol and related stereoisomers with a Michaelis-Menten constant of approximately 100 microM, and that transport activity was strongly stimulated by decreasing pH. Electrophysiological measurements revealed that transport was electrogenic with a maximal transport activity reached at pH 5.0. In rat brain membrane preparations, HMIT appeared as a 75-90 kDa protein that could be converted to a 67 kDa band upon enzymatic deglycosylation. Immunofluorescence microscopy analysis showed HMIT expression in glial cells and some neurons. These data provide the first characterization of a mammalian H(+)-coupled myo- inositol transporter. Predominant central expression of HMIT suggests that it has a key role in the control of myo-inositol brain metabolism.

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Même si Alison Fairlie, Tzvetan Todorov, Han Verhoeff et Simone Balayé ont reconnu l'importance de la parole dans les récits littéraires de Benjamin Constant (Amélie et Germaine, Cécile, Ma vie et Adolphe), dans leurs commentaires ces critiques ont surtout mis en évidence les échecs et les malentendus inhérents à toute communication verbale. Au-delà de ces constatations, il restait à montrer que les récits constantiens donnent à voir et à comprendre l'intérêt que cet écrivain nourrissait pour la parole, tout particulièrement pour la parole privée -celle qu'il a choisi de mettre en scène dans ces quatre oeuvres, qui acquièrent, grâce à cette spécificité, une manière d'unité. Cette parole intime, aux antipodes de la parole publique, s'offre comme un champ d'investigation illimité tant le locuteur est alors impliqué dans sa pratique verbale. Les introspections des narrateurs-personnages constantiens font naître la peinture d'un sujet moderne, fragilisé dans sa vie personnelle et peu engagé dans la vie sociale, mais elles offrent surtout un vaste panorama des situations d'interlocution et présentent en creux les nombreuses ressources de la parole. Ces récits, qui accordent une attention tout à fait signifiante à l'écriture de la parole, mais échappent parfois à toute classification générique, parviennent à mimer les incertitudes de leur narrateur-personnage tout en révélant que c'est par la parole, originale et singulière, que le sujet s'individualise expérience rendue souvent difficile à cause de la langue conventionnelle dont usent ceux que l'on rencontre dans les lieux de sociabilité, en ce XIXe siècle naissant.

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