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PINCH-1-整合素连接激酶-α-纽蛋白复合物的形成和磷酸化对于调节肾小球足细胞的黏附、结构和存活至关重要。

Formation and phosphorylation of the PINCH-1-integrin linked kinase-alpha-parvin complex are important for regulation of renal glomerular podocyte adhesion, architecture, and survival.

作者信息

Yang Yanqiang, Guo Lida, Blattner Simone M, Mundel Peter, Kretzler Matthias, Wu Chuanyue

机构信息

707B Scaife Hall, Department of Pathology, University of Pittsburgh, 3550 Terrace Street, Pittsburgh, PA 15261, USA.

出版信息

J Am Soc Nephrol. 2005 Jul;16(7):1966-76. doi: 10.1681/ASN.2004121112. Epub 2005 May 4.

Abstract

Alterations in the cellular architecture, adhesion, and/or loss of glomerular podocytes are causal factors in the development of proteinuria and the progression to end-stage renal failure. With the use of an inducible podocyte differentiation system, it was found that the cellular levels of PINCH-1, integrin linked kinase (ILK), and alpha-parvin, cytoplasmic components of cell-extracellular matrix adhesions, were significantly increased during podocyte differentiation. Concomitantly, an increased amount of the PINCH-1-ILK-alpha-parvin complex was detected in the differentiated, foot process-containing podocytes. Overexpression of the PINCH-1-binding ankyrin repeat domain of ILK but not that of a PINCH-1-binding defective mutant form of the ankyrin domain effectively inhibited the formation of the PINCH-1-ILK-alpha-parvin complex. Disruption of the PINCH-1-ILK-alpha-parvin complex significantly reduced the podocyte-matrix adhesion and foot process formation. Furthermore, a marked increase of apoptosis in the podocytes in which the assembly of the PINCH-1-ILK-alpha-parvin complex was compromised was detected. Inhibition of ILK with a small compound inhibitor also altered podocyte cytoskeleton and increased apoptosis. Finally, it is shown that alpha-parvin is phosphorylated in podocytes. Mutations at the alpha-parvin N-terminal proline-directed serine phosphorylation sites reduced its complex formation with ILK and resulted in defects in podocyte adhesion, architecture, and survival. These results provide important evidence for a crucial role of the PINCH-1-ILK-alpha-parvin complex in the control of podocyte adhesion, morphology, and survival.

摘要

肾小球足细胞的细胞结构、黏附性改变和/或丢失是蛋白尿发生及进展至终末期肾衰竭的致病因素。利用诱导性足细胞分化系统发现,在足细胞分化过程中,细胞外基质黏附的细胞质成分PINCH-1、整合素连接激酶(ILK)和α-纽蛋白的细胞水平显著升高。同时,在分化的、含有足突的足细胞中检测到PINCH-1-ILK-α-纽蛋白复合物的量增加。ILK的PINCH-1结合锚蛋白重复结构域过表达可有效抑制PINCH-1-ILK-α-纽蛋白复合物的形成,而锚蛋白结构域的PINCH-1结合缺陷突变体过表达则无此作用。破坏PINCH-1-ILK-α-纽蛋白复合物可显著降低足细胞与基质的黏附及足突形成。此外,检测到PINCH-1-ILK-α-纽蛋白复合物组装受损的足细胞凋亡明显增加。用小分子化合物抑制剂抑制ILK也会改变足细胞细胞骨架并增加细胞凋亡。最后发现α-纽蛋白在足细胞中发生磷酸化。α-纽蛋白N端脯氨酸定向丝氨酸磷酸化位点的突变减少了其与ILK的复合物形成,并导致足细胞黏附、结构和存活缺陷。这些结果为PINCH-1-ILK-α-纽蛋白复合物在控制足细胞黏附、形态和存活中的关键作用提供了重要证据。

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