首页> 外文期刊>The Journal of Clinical Investigation: The Official Journal of the American Society for Clinical Investigation >CD2AP in mouse and human podocytes controls a proteolytic program that regulates cytoskeletal structure and cellular survival.
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CD2AP in mouse and human podocytes controls a proteolytic program that regulates cytoskeletal structure and cellular survival.

机译:小鼠和人足细胞中的 CD2AP 控制调节细胞骨架结构和细胞存活的蛋白水解程序。

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摘要

Kidney podocytes are highly differentiated epithelial cells that form interdigitating foot processes with bridging slit diaphragms (SDs) that regulate renal ultrafiltration. Podocyte injury results in proteinuric kidney disease, and genetic deletion of SD-associated CD2-associated protein (CD2AP) leads to progressive renal failure in mice and humans. Here, we have shown that CD2AP regulates the TGF-beta1-dependent translocation of dendrin from the SD to the nucleus. Nuclear dendrin acted as a transcription factor to promote expression of cytosolic cathepsin L (CatL). CatL proteolyzed the regulatory GTPase dynamin and the actin-associated adapter synaptopodin, leading to a reorganization of the podocyte microfilament system and consequent proteinuria. CD2AP itself was proteolyzed by CatL, promoting sustained expression of the protease during podocyte injury, and in turn increasing the apoptotic susceptibility of podocytes to TGF-beta1. Our study identifies CD2AP as the gatekeeper of the podocyte TGF-beta response through its regulation of CatL expression and defines a molecular mechanism underlying proteinuric kidney disease.
机译:肾足细胞是高度分化的上皮细胞,与调节肾脏超滤的桥接裂膈膜 (SD) 形成指间足突。足细胞损伤导致蛋白尿性肾病,SD 相关 CD2 相关蛋白 (CD2AP) 的基因缺失导致小鼠和人类进行性肾功能衰竭。在这里,我们已经证明 CD2AP 调节树突蛋白从 SD 到细胞核的 TGF-β1 依赖性易位。核树突蛋白作为转录因子促进胞质组织蛋白酶 L (CatL) 的表达。CatL 蛋白水解调节性 GTP 酶动力蛋白和肌动蛋白相关接头突触蛋白,导致足细胞微丝系统的重组和随之而来的蛋白尿。CD2AP 本身被 CatL 蛋白水解,促进足细胞损伤期间蛋白酶的持续表达,进而增加足细胞对 TGF-β1 的凋亡敏感性。我们的研究通过调节 CatL 表达将 CD2AP 确定为足细胞 TGF-β 反应的守门人,并定义了蛋白尿性肾病的分子机制。

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