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WNK3与SPAK的相互作用是调节NCC和SLC12家族其他成员所必需的。

WNK3-SPAK interaction is required for the modulation of NCC and other members of the SLC12 family.

作者信息

Pacheco-Alvarez Diana, Vázquez Norma, Castañeda-Bueno María, de-Los-Heros Paola, Cortes-González César, Moreno Erika, Meade Patricia, Bobadilla Norma A, Gamba Gerardo

机构信息

Escuela de Medicina, Universidad Panamericana, Mexico City, Mexico.

出版信息

Cell Physiol Biochem. 2012;29(1-2):291-302. doi: 10.1159/000337610. Epub 2012 Mar 1.

Abstract

The serine/threonine with no lysine kinase 3 (WNK3) modulates the activity of the electroneutral cation-coupled chloride cotransporters (CCC) to promote Cl(-) influx and prevent Cl(-) efflux, thus fitting the profile for a putative "Cl(-)-sensing kinase". The Ste20-type kinases, SPAK/OSR1, become phosphorylated in response to reduction in intracellular chloride concentration and regulate the activity of NKCC1. Several studies have now shown that WNKs function upstream of SPAK/OSR1. This study was designed to analyze the role of WNK3-SPAK interaction in the regulation of CCCs with particular emphasis on NCC. In this study we used the functional expression system of Xenopus laevis oocytes to show that different SPAK binding sites in WNK3 ((241, 872, 1336)RFxV) are required for the kinase to have effects on CCCs. WNK3-F1337A no longer activated NKCC2, but the effects on NCC, NKCC1, and KCC4 were preserved. In contrast, the effects of WNK3 on these cotransporters were prevented in WNK3-F242A. The elimination of F873 had no consequence on WNK3 effects. WNK3 promoted NCC phosphorylation at threonine 58, even in the absence of the unique SPAK binding site of NCC, but this effect was abolished in the mutant WNK3-F242A. Thus, our data support the hypothesis that the effects of WNK3 upon NCC and other CCCs require the interaction and activation of the SPAK kinase. The effect is dependent on one of the three binding sites for SPAK that are present in WNK3, but not on the SPAK binding sites on the CCCs, which suggests that WNK3 is capable of binding both SPAK and CCCs to promote their phosphorylation.

摘要

无赖氨酸激酶3(WNK3)可调节电中性阳离子偶联氯离子共转运体(CCC)的活性,促进Cl⁻内流并阻止Cl⁻外流,因此符合假定的“Cl⁻传感激酶”特征。Ste20型激酶SPAK/OSR1会因细胞内氯离子浓度降低而发生磷酸化,并调节NKCC1的活性。现在有多项研究表明,WNK在SPAK/OSR1的上游发挥作用。本研究旨在分析WNK3-SPAK相互作用在CCC调节中的作用,尤其着重于对NCC的研究。在本研究中,我们使用非洲爪蟾卵母细胞的功能表达系统来表明,WNK3中不同的SPAK结合位点((241, 872, 1336)RFxV)是激酶对CCC产生作用所必需的。WNK3-F1337A不再激活NKCC2,但对NCC、NKCC1和KCC4的作用得以保留。相比之下,WNK3-F242A中WNK3对这些共转运体的作用受到了抑制。去除F873对WNK3的作用没有影响。WNK3可促进NCC苏氨酸58位点的磷酸化,即使在没有NCC独特的SPAK结合位点的情况下也是如此,但在突变体WNK3-F242A中这种作用被消除。因此,我们的数据支持以下假设:WNK3对NCC和其他CCC的作用需要SPAK激酶的相互作用和激活。这种作用取决于WNK3中存在的三个SPAK结合位点之一,而不是取决于CCC上的SPAK结合位点,这表明WNK3能够同时结合SPAK和CCC以促进它们的磷酸化。

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