Department of Life Sciences and Institute of Genome Sciences, National Yang Ming Chiao Tung University, Taipei, Taiwan.
Department of Life Sciences and Institute of Genome Sciences, National Yang Ming Chiao Tung University, Taipei, Taiwan
Life Sci Alliance. 2022 Sep 12;5(11). doi: 10.26508/lsa.202201557. Print 2022 Nov.
Cell-matrix adhesions are mainly provided by integrin-mediated focal adhesions (FAs). We previously found that Shp2 is essential for FA maturation by promoting ROCK2 activation at FAs. In this study, we further delineated the role of α-actinin-4 in the FA recruitment and activation of Shp2. We used the conditional immortalized mouse podocytes to examine the role of α-actinin-4 in the regulation of Shp2 and ROCK2 signaling. After the induction of podocyte differentiation, Shp2 and ROCK2 were strongly activated, concomitant with the formation of matured FAs, stress fibers, and interdigitating intracellular junctions in a ROCK-dependent manner. Gene knockout of α-actinin-4 abolished the Shp2 activation and subsequently reduced matured FAs in podocytes. We also demonstrated that gene knockout of ROCK2 impaired the generation of contractility and interdigitating intercellular junctions. Our results reveal the role of α-actinin-4 in the recruitment of Shp2 at FAs to potentiate ROCK2 activation for the maintenance of cellular contractility and cytoskeletal architecture in the cultured podocytes.
细胞-基质黏附主要由整合素介导的黏附斑(FA)提供。我们之前发现 Shp2 通过促进黏附斑处的 ROCK2 激活对于 FA 的成熟是必需的。在这项研究中,我们进一步描绘了α-辅肌动蛋白-4 在 FA 募集和 Shp2 激活中的作用。我们使用条件性永生化的小鼠足细胞来检查α-辅肌动蛋白-4 在调节 Shp2 和 ROCK2 信号中的作用。在足细胞分化的诱导之后,Shp2 和 ROCK2 被强烈激活,伴随着成熟 FA、应力纤维和细胞内连接的形成,这是一种 ROCK 依赖性的方式。α-辅肌动蛋白-4 的基因敲除消除了 Shp2 的激活,并随后减少了足细胞中的成熟 FA。我们还表明,ROCK2 的基因敲除损害了收缩性和细胞内连接的形成。我们的结果揭示了 α-辅肌动蛋白-4 在 FA 募集 Shp2 中的作用,以增强 ROCK2 的激活,维持培养的足细胞中的细胞收缩性和细胞骨架结构。