首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Reduction of renal mass is lethal in mice lacking vimentin. Role of endothelin-nitric oxide imbalance.
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Reduction of renal mass is lethal in mice lacking vimentin. Role of endothelin-nitric oxide imbalance.

机译:缺乏波形蛋白的小鼠肾脏重量的减少是致命的。内皮素一氧化氮失衡的作用。

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摘要

Modulation of vascular tone by chemical and mechanical stimuli is a crucial adaptive phenomenon which involves cytoskeleton elements. Disruption, by homologous recombination, of the gene encoding vimentin, a class III intermediate filament protein mainly expressed in vascular cells, was reported to result in apparently normal phenotype under physiological conditions. In this study, we evaluated whether the lack of vimentin affects vascular adaptation to pathological situations, such as reduction of renal mass, a pathological condition which usually results in immediate and sustained vasodilation of the renal vascular bed. Ablation of 3/4 of renal mass was constantly lethal within 72 h in mice lacking vimentin (Vim-/-), whereas no lethality was observed in wild-type littermates. Death in Vim-/- mice resulted from end-stage renal failure. Kidneys from Vim-/- mice synthesized more endothelin, but less nitric oxide (NO), than kidneys from normal animals. In vitro, renal resistance arteries from Vim-/- mice were selectively more sensitive to endothelin, less responsive to NO-dependent vasodilators, and exhibited an impaired flow (shear stress)- induced vasodilation, which is NO dependent, as compared with those from normal littermates. Finally, in vivo administration of bosentan, an endothelin receptor antagonist, totally prevented lethality in Vim-/- mice. These results suggest that vimentin plays a key role in the modulation of vascular tone, possibly via the tuning of endothelin-nitric oxide balance.
机译:化学和机械刺激对血管张力的调节是至关重要的适应性现象,涉及细胞骨架成分。据报道,通过同源重组破坏波形蛋白(一种主要在血管细胞中表达的III类中间细丝蛋白)的基因,在生理条件下可导致表型正常。在这项研究中,我们评估了波形蛋白的缺乏是否会影响血管对病理状况的适应性,例如肾脏重量的减少,这种病理状况通常会导致肾脏血管床的即时和持续血管舒张。在缺乏波形蛋白(Vim-/-)的小鼠中,肾脏体积的3/4消融在72 h内持续致死,而野生型同窝幼仔中未观察到致死性。 Vim-/-小鼠的死亡是由终末期肾衰竭导致的。与正常动物的肾脏相比,Vim-/-小鼠的肾脏合成的内皮素更多,但一氧化氮(NO)更少。在体外,来自Vim-/-小鼠的肾抵抗性动脉对内皮素的选择性更高,对NO依赖性血管舒张剂的反应较弱,并且表现出的血流(剪切应力)诱导的血管舒张功能受损(与NO相比)。普通同窝仔。最后,体内给予内皮素受体拮抗剂波生坦可以完全防止Vim-/-小鼠的致死性。这些结果表明波形蛋白在调节血管紧张度中可能起关键作用,可能是通过调节内皮素一氧化氮平衡来实现的。

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