982 resultados para Cl Cotransport


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We present a set of photometric data concerning two distant clusters of galaxies: Cl 1613+3104 (z=0.415) and Cl 1600+4109 (z=0.540). The photometric survey extends to a field of about 4' x 3'. It was performed in 3 filters: Johnson B, and Thuan-Gunn g and r. The sample includes 679 objects in the field of Cl 1613+3104 and 334 objects in Cl 1600+4109.

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Os mecanismos de tolerância à salinidade são complexos e dependem de mudanças fisiológicas e anatômicas que ocorrem na planta inteira. Este trabalho teve como objetivo avaliar a retenção de íons, o crescimento e a partição de matéria seca em dois genótipos de sorgo forrageiro [Sorghum bicolor (L.) Moench] irrigados com água com crescentes níveis de salinidade. Sementes selecionadas foram germinadas em vasos com 12 kg de Argissolo Vermelho-Amarelo textura arenosa em condições de casa de vegetação. O delineamento foi inteiramente casualizado, em esquema fatorial 2 x 5, composto por dois genótipos (CSF 18, sensível, e CSF 20, tolerante) e cinco concentrações de sais na água de irrigação, correspondentes às condutividades elétricas (CEa) de 0,5 (controle), 2,0, 4,0, 6,0 e 8,0 dS m-1, com quatro repetições. A aplicação dos tratamentos (concentrações de sais) teve início aos cinco dias após a emergência, e a coleta das plantas foi realizada aos 44 dias depois do início dos tratamentos. Foram determinadas a produção e a partição de matéria seca, bem como a distribuição das raízes nos vasos e os teores de íons (Na+, K+ e Cl-) nas diversas partes da planta. A salinidade reduziu a área foliar e a produção de matéria seca da parte aérea e das raízes; a redução no crescimento da parte aérea foi maior no genótipo CSF 18. A salinidade alterou a partição de fotoassimilados de forma similar nos dois genótipos, resultando em aumento na proporção entre fontes e drenos, o que pode contribuir para a aclimatação das plantas ao estresse salino. As plantas de sorgo mostraram eficiente mecanismo de retenção de Na+, prevenindo seu acúmulo nos tecidos foliares. Esse mecanismo, no entanto, provocou diminuição na suculência foliar. Os teores foliares de K+ e a retenção de Na+ nos colmos foram maiores no genótipo CSF 20 (tolerante).

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Regulation of renal Na(+) transport is essential for controlling blood pressure, as well as Na(+) and K(+) homeostasis. Aldosterone stimulates Na(+) reabsorption by the Na(+)-Cl(-) cotransporter (NCC) in the distal convoluted tubule (DCT) and by the epithelial Na(+) channel (ENaC) in the late DCT, connecting tubule, and collecting duct. Aldosterone increases ENaC expression by inhibiting the channel's ubiquitylation and degradation; aldosterone promotes serum-glucocorticoid-regulated kinase SGK1-mediated phosphorylation of the ubiquitin-protein ligase Nedd4-2 on serine 328, which prevents the Nedd4-2/ENaC interaction. It is important to note that aldosterone increases NCC protein expression by an unknown post-translational mechanism. Here, we present evidence that Nedd4-2 coimmunoprecipitated with NCC and stimulated NCC ubiquitylation at the surface of transfected HEK293 cells. In Xenopus laevis oocytes, coexpression of NCC with wild-type Nedd4-2, but not its catalytically inactive mutant, strongly decreased NCC activity and surface expression. SGK1 prevented this inhibition in a kinase-dependent manner. Furthermore, deficiency of Nedd4-2 in the renal tubules of mice and in cultured mDCT(15) cells upregulated NCC. In contrast to ENaC, Nedd4-2-mediated inhibition of NCC did not require the PY-like motif of NCC. Moreover, the mutation of Nedd4-2 at either serine 328 or 222 did not affect SGK1 action, and mutation at both sites enhanced Nedd4-2 activity and abolished SGK1-dependent inhibition. Taken together, these results suggest that aldosterone modulates NCC protein expression via a pathway involving SGK1 and Nedd4-2 and provides an explanation for the well-known aldosterone-induced increase in NCC protein expression.

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Après un historique du concept de coparentage, globalement défini comme le soutien que les parents s'apportent mutuellement dans leurs rôles de parents, une brève revue de la littérature exposera les liens entre le coparentage et d'autres aspects du fonctionnement familial Puis quelques vignettes illustreront la variabilité observée dans les familles. Enfin, l'utilité du concept de coparentage sera discutée, pour la recherche comme pour la clinique.

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Arrays of vertically aligned ZnO:Cl/ZnO core-shell nanowires were used to demonstrate that the control of the coaxial doping profile in homojunction nanostructures can improve their surface charge carrier transfer while conserving potentially excellent transport properties. It is experimentally shown that the presence of a ZnO shell enhances the photoelectrochemical properties of ZnO:Cl nanowires up to a factor 5. Likewise, the ZnO shell promotes the visible photoluminescence band in highly conducting ZnO:Cl nanowires. These lines of evidence are associated with the increase of the nanowires" surface depletion layer

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The interaction of atomic F and Cl with Si4H9 and Ge4H9 cluster models has been studied by using ab initio pseudopotentials and basis sets of increasing complexity. The results show that the effect of d orbitals is important in order to reproduce the experimental findings. However, the use of polarization functions in the atoms which are directly involved in the chemisorption bond leads to results which are very close to those obtained using extended basis sets. The local nature of the chemisorption bond is also interpreted by means of a Mulliken population analysis. For F-Si4H9 and Cl-Si4H9 the present results are in good agreement with previous ab initio all-electron calculations, and for the chemisorption of Cl on Si(111) and Ge(111) surfaces, good agreement is found with respect to the available experimental results as well as with previous slab calculations based on the local-density-functional formalism.

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Regulation of renal Na(+) transport is essential for controlling blood pressure, as well as Na(+) and K(+) homeostasis. Aldosterone stimulates Na(+) reabsorption by the Na(+)-Cl(-) cotransporter (NCC) in the distal convoluted tubule (DCT) and by the epithelial Na(+) channel (ENaC) in the late DCT, connecting tubule, and collecting duct. Aldosterone increases ENaC expression by inhibiting the channel's ubiquitylation and degradation; aldosterone promotes serum-glucocorticoid-regulated kinase SGK1-mediated phosphorylation of the ubiquitin-protein ligase Nedd4-2 on serine 328, which prevents the Nedd4-2/ENaC interaction. It is important to note that aldosterone increases NCC protein expression by an unknown post-translational mechanism. Here, we present evidence that Nedd4-2 coimmunoprecipitated with NCC and stimulated NCC ubiquitylation at the surface of transfected HEK293 cells. In Xenopus laevis oocytes, coexpression of NCC with wild-type Nedd4-2, but not its catalytically inactive mutant, strongly decreased NCC activity and surface expression. SGK1 prevented this inhibition in a kinase-dependent manner. Furthermore, deficiency of Nedd4-2 in the renal tubules of mice and in cultured mDCT(15) cells upregulated NCC. In contrast to ENaC, Nedd4-2-mediated inhibition of NCC did not require the PY-like motif of NCC. Moreover, the mutation of Nedd4-2 at either serine 328 or 222 did not affect SGK1 action, and mutation at both sites enhanced Nedd4-2 activity and abolished SGK1-dependent inhibition. Taken together, these results suggest that aldosterone modulates NCC protein expression via a pathway involving SGK1 and Nedd4-2 and provides an explanation for the well-known aldosterone-induced increase in NCC protein expression.