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Nephrin通过衔接蛋白Nck和WTIP抑制Hippo信号通路。

Nephrin Suppresses Hippo Signaling through the Adaptor Proteins Nck and WTIP.

作者信息

Keyvani Chahi Ava, Martin Claire E, Jones Nina

机构信息

From the Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

From the Department of Molecular and Cellular Biology, University of Guelph, Guelph, Ontario N1G 2W1, Canada.

出版信息

J Biol Chem. 2016 Jun 10;291(24):12799-12808. doi: 10.1074/jbc.M116.724245. Epub 2016 Mar 31.

Abstract

Podocytes are key components of the kidney blood filtration barrier, and their ability to withstand hemodynamic strain is proposed to be closely tied to their unique and flexible cytoarchitecture. However, the mechanisms that control such mechanotransduction are poorly understood. We have previously established that tyrosine phosphorylation of the transmembrane protein nephrin promotes recruitment of the Nck1/2 cytoskeletal adaptor proteins and downstream actin remodeling. We now reveal that Nck integrates nephrin with the Hippo kinase cascade through association with the adaptor protein WTIP. Using mutational analysis, we show that Nck sequesters WTIP and its binding partner Lats1 to phosphorylated nephrin, resulting in decreased phospho-activation of Lats1. We further demonstrate that, coincident with nephrin dephosphorylation in a transient model of podocyte injury in mice, Lats1 is rapidly activated, and this precedes significant down-regulation of the transcription regulator Yap. Moreover, we show reduced levels of Yap protein in mice with chronic disruption of nephrin phospho-signaling. Together, these findings support the existence of a dynamic molecular link between nephrin signaling and the canonical Hippo pathway in podocytes, which may facilitate the conversion of mechanical cues to biochemical signals promoting podocyte viability.

摘要

足细胞是肾血液滤过屏障的关键组成部分,其承受血流动力学应变的能力被认为与其独特且灵活的细胞结构密切相关。然而,控制这种机械转导的机制仍知之甚少。我们之前已经证实,跨膜蛋白nephrin的酪氨酸磷酸化促进了Nck1/2细胞骨架衔接蛋白的募集以及下游肌动蛋白重塑。我们现在发现,Nck通过与衔接蛋白WTIP结合,将nephrin与Hippo激酶级联反应整合在一起。通过突变分析,我们表明Nck将WTIP及其结合伴侣Lats1隔离到磷酸化的nephrin上,导致Lats1的磷酸化激活减少。我们进一步证明,在小鼠足细胞损伤的瞬时模型中,与nephrin去磷酸化同时发生的是,Lats1迅速被激活,且这先于转录调节因子Yap的显著下调。此外,我们发现nephrin磷酸信号长期中断的小鼠中Yap蛋白水平降低。总之,这些发现支持了足细胞中nephrin信号与经典Hippo通路之间存在动态分子联系,这可能有助于将机械信号转化为促进足细胞存活的生化信号。

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