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WNK1 促进 PIP₂ 的合成以协调生长因子和 GPCR-Gq 信号转导。

WNK1 promotes PIP₂ synthesis to coordinate growth factor and GPCR-Gq signaling.

机构信息

Department of Medicine, University of Texas Southwestern Medical Center, Dallas, TX 75390, USA.

出版信息

Curr Biol. 2011 Dec 6;21(23):1979-87. doi: 10.1016/j.cub.2011.11.002. Epub 2011 Nov 23.

Abstract

BACKGROUND

PLC-β signaling is generally thought to be mediated by allosteric activation by G proteins and Ca(2+). Although availability of the phosphatidylinositol-4,5-biphosphate (PIP(2)) substrate is limiting in some cases, its production has not been shown to be independently regulated as a signaling mechanism. WNK1 protein kinase is known to regulate ion homeostasis and cause hypertension when expression is increased by gene mutations. However, its signaling functions remain largely elusive.

RESULTS

Using diacylglycerol-stimulated TRPC6 and inositol trisphosphate-mediated Ca(2+) transients as cellular biosensors, we show that WNK1 stimulates PLC-β signaling in cells by promoting the synthesis of PIP(2) via stimulation of phosphatidylinositol 4-kinase IIIα. WNK1 kinase activity is not required. Stimulation of PLC-β by WNK1 and by Gα(q) are synergistic; WNK1 activity is essential for regulation of PLC-β signaling by G(q)-coupled receptors, and basal input from G(q) is necessary for WNK1 signaling via PLC-β. WNK1 further amplifies PLC-β signaling when it is phosphorylated by Akt kinase in response to insulin-like growth factor.

CONCLUSIONS

WNK1 is a novel regulator of PLC-β that acts by controlling substrate availability. WNK1 thereby coordinates signaling between G protein and Akt kinase pathways. Because PIP(2) is itself a signaling molecule, regulation of PIP(2) synthesis by WNK1 also allows the cell to initiate PLC signaling while independently controlling the effects of PIP(2) on other targets. These findings describe a new signaling pathway for Akt-activating growth factors, a mechanism for G protein-growth factor crosstalk, and a means to independently control PLC signaling and PIP(2) availability.

摘要

背景

PLC-β 信号通常被认为是通过 G 蛋白和 Ca2+的变构激活来介导的。尽管在某些情况下,磷酸肌醇-4,5-二磷酸(PIP2)底物的可用性是有限的,但尚未证明其产生作为一种信号机制可以独立调节。WNK1 蛋白激酶已知可调节离子稳态,并在基因突变导致表达增加时引起高血压。然而,其信号功能仍然很大程度上难以捉摸。

结果

我们使用二酰基甘油刺激的 TRPC6 和肌醇三磷酸介导的 Ca2+瞬变作为细胞生物传感器,表明 WNK1 通过刺激磷酸肌醇 4-激酶 IIIα来促进 PIP2 的合成,从而刺激 PLC-β 信号。WNK1 激酶活性不是必需的。WNK1 和 Gα(q) 对 PLC-β 的刺激具有协同作用;WNK1 活性对于 G(q) 偶联受体调节 PLC-β 信号是必不可少的,并且 G(q) 的基础输入对于通过 PLC-β 的 WNK1 信号是必需的。WNK1 进一步放大 PLC-β 信号,当它在胰岛素样生长因子响应时被 Akt 激酶磷酸化。

结论

WNK1 是 PLC-β 的一种新型调节剂,通过控制底物可用性起作用。WNK1 从而协调 G 蛋白和 Akt 激酶途径之间的信号。由于 PIP2 本身也是一种信号分子,WNK1 对 PIP2 合成的调节也允许细胞在独立控制 PIP2 对其他靶标的影响的同时启动 PLC 信号。这些发现描述了 Akt 激活生长因子的新信号通路、G 蛋白-生长因子串扰的机制以及独立控制 PLC 信号和 PIP2 可用性的方法。

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