Synaptopodin Limits TRPC6 Podocyte Surface Expression and Attenuates Proteinuria

突触素 TRPC6型 足细胞 基因敲除 细胞生物学 化学 内分泌学 生物 受体 生物化学 细胞凋亡 瞬时受体电位通道 蛋白尿
作者
Hao Yu,Andreas D. Kistler,Mohd Hafeez Faridi,James O. Meyer,Beata Tryniszewska,Dolly Mehta,Lixia Yue,Stuart E. Dryer,Jochen Reiser
出处
期刊:Journal of The American Society of Nephrology 卷期号:27 (11): 3308-3319 被引量:49
标识
DOI:10.1681/asn.2015080896
摘要

Gain-of-function mutations of classic transient receptor potential channel 6 (TRPC6) were identified in familial FSGS, and increased expression of wild-type TRPC6 in glomeruli is observed in several human acquired proteinuric diseases. Synaptopodin, an actin binding protein that is important in maintaining podocyte function, is downregulated in various glomerular diseases. Here, we investigated whether synaptopodin maintains podocyte function by regulating podocyte surface expression and activity of TRPC6. We show indirect interaction and nonrandom association of synaptopodin and TRPC6 in podocytes. Knockdown of synaptopodin in cultured mouse podocytes increased the expression of TRPC6 at the plasma membrane, whereas overexpression of synaptopodin decreased it. Mechanistically, synaptopodin–dependent TRPC6 surface expression required functional actin and microtubule cytoskeletons. Overexpression of wild–type or FSGS–inducing mutant TRPC6 in synaptopodin-depleted podocytes enhanced TRPC6–mediated calcium influx and induced apoptosis. In vivo , knockdown of synaptopodin also caused increased podocyte surface expression of TRPC6. Administration of cyclosporin A, which stabilizes synaptopodin, reduced LPS-induced proteinuria significantly in wild-type mice but to a lesser extent in TRPC6 knockout mice. Furthermore, administration of cyclosporin A reversed the LPS-induced increase in podocyte surface expression of TRPC6 in wild-type mice. Our findings suggest that alteration in synaptopodin levels under disease conditions may modify intracellular TRPC6 channel localization and activity, which further contribute to podocyte dysfunction. Reducing TRPC6 surface levels may be a new approach to restoring podocyte function.
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