Runembert Isabelle, Couette Sylviane, Federici Pierre, Colucci-Guyon Emma, Babinet Charles, Briand Pascale, Friedlander Gérard, Terzi Fabiola
INSERM U426, Faculté de Médecine Xavier Bichat, 16 Rue Henri Huchard, BP 416, 75870 Paris Cedex 18, France.
Am J Physiol Renal Physiol. 2004 Nov;287(5):F960-8. doi: 10.1152/ajprenal.00064.2004. Epub 2004 Jul 6.
Vimentin, an intermediate filament protein mainly expressed in mesenchyma-derived cells, is reexpressed in renal tubular epithelial cells under many pathological conditions, characterized by intense cell proliferation. Whether vimentin reexpression is only a marker of cell dedifferentiation or is instrumental in the maintenance of cell structure and/or function is still unknown. Here, we used vimentin knockout mice (Vim(-/-)) and an experimental model of acute renal injury (30-min bilateral renal ischemia) to explore the role of vimentin. Bilateral renal ischemia induced an initial phase of acute tubular necrosis that did not require vimentin and was similar, in terms of morphological and functional changes, in Vim(+/+) and Vim(-/-) mice. However, vimentin was essential to favor Na-glucose cotransporter 1 localization to brush-border membranes and to restore Na-glucose cotransport activity in regenerating tubular cells. We show that the effect of vimentin inactivation is specific and results in persistent glucosuria. We propose that vimentin is part of a structural network that favors carrier localization to plasma membranes to restore transport activity in injured kidneys.
波形蛋白是一种主要在间充质来源细胞中表达的中间丝蛋白,在许多以细胞强烈增殖为特征的病理条件下,肾小管上皮细胞中会重新表达波形蛋白。波形蛋白的重新表达仅仅是细胞去分化的标志,还是有助于维持细胞结构和/或功能,目前仍不清楚。在此,我们使用波形蛋白基因敲除小鼠(Vim(-/-))和急性肾损伤实验模型(30分钟双侧肾缺血)来探究波形蛋白的作用。双侧肾缺血诱导了急性肾小管坏死的初始阶段,这一阶段并不需要波形蛋白,并且在形态和功能变化方面,Vim(+/+)和Vim(-/-)小鼠相似。然而,波形蛋白对于促进钠-葡萄糖协同转运蛋白1定位于刷状缘膜以及恢复再生肾小管细胞中的钠-葡萄糖协同转运活性至关重要。我们表明波形蛋白失活的作用是特异性的,并导致持续性糖尿。我们提出波形蛋白是一个结构网络的一部分,该网络有助于载体定位于质膜以恢复受损肾脏中的转运活性。