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The WNK1 and WNK4 protein kinases that are mutated in Gordon's hypertension syndrome phosphorylate and activate SPAK and OSR1 protein kinases

机译:在戈登高血压综合征中突变的WNK1和WNK4蛋白激酶磷酸化并激活SPAK和OSR1蛋白激酶

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摘要

Mutations in the human genes encoding WNK1 [with no K (lysine) protein kinase-1] and the related protein kinase WNK4 are the cause of Gordon's hypertension syndrome. Little is known about the molecular mechanism by which WNK isoforms regulate cellular processes. We immunoprecipitated WNK1 from extracts of rat testis and found that it was specifically associated with a protein kinase of the STE20 family termed ‘STE20/SPS1-related proline/alanine-rich kinase’ (SPAK). We demonstrated that WNK1 and WNK4 both interacted with SPAK as well as a closely related kinase, termed ‘oxidative stress response kinase-1’ (OSR1). Wildtype (wt) but not catalytically inactive WNK1 and WNK4 phosphorylated SPAK and OSR1 to a much greater extent than with other substrates utilized previously, such as myelin basic protein and claudin-4. Phosphorylation by WNK1 or WNK4 markedly increased SPAK and OSR1 activity. Phosphopeptide mapping studies demonstrated that WNK1 phosphorylated kinase-inactive SPAK and OSR1 at an equivalent residue located within the T-loop of the catalytic domain (Thr233 in SPAK, Thr185 in OSR1) and a serine residue located within a C-terminal non-catalytic region (Ser373 in SPAK, Ser325 in OSR1). Mutation of Thr185 to alanine prevented the activation of OSR1 by WNK1, whereas mutation of Thr185 to glutamic acid (to mimic phosphorylation) increased the basal activity of OSR1 over 20-fold and prevented further activation by WNK1. Mutation of Ser325 in OSR1 to alanine or glutamic acid did not affect the basal activity of OSR1 or its ability to be activated by WNK1. These findings suggest that WNK isoforms operate as protein kinases that activate SPAK and OSR1 by phosphorylating the T-loops of these enzymes, resulting in their activation. Our analysis also describes the first facile assay that can be employed to quantitatively assess WNK1 and WNK4 activity.
机译:编码WNK1 [无K(赖氨酸)蛋白激酶-1]和相关蛋白激酶WNK4的人类基因突变是戈登高血压综合征的病因。关于WNK亚型调节细胞过程的分子机制知之甚少。我们从大鼠睾丸提取物中免疫沉淀了WNK1,发现它与STE20家族的蛋白激酶(STE20 / SPS1相关的脯氨酸/富含丙氨酸的激酶)(SPAK)特别相关。我们证明WNK1和WNK4都与SPAK以及密切相关的激酶(称为“氧化应激反应激酶1”(OSR1))相互作用。野生型(wt),但没有催化活性的WNK1和WNK4磷酸化SPAK和OSR1的程度比以前使用的其他底物(如髓磷脂碱性蛋白和claudin-4)更大。 WNK1或WNK4的磷酸化显着增加了SPAK和OSR1的活性。磷酸肽图研究表明,WNK1磷酸化激酶失活的SPAK和OSR1位于催化域T环内的等效残基(SPAK中的Thr233,OSR1中的Thr185)和位于C末端非催化区域中的丝氨酸残基(SPAK中的Ser373,OSR1中的Ser325)。 Thr185突变为丙氨酸阻止了WNK1激活OSR1,而Thr185突变为谷氨酸(模仿磷酸化)使OSR1的基础活性增加了20倍,并阻止了WNK1的进一步激活。 OSR1中Ser325突变为丙氨酸或谷氨酸不影响OSR1的基础活性或被WNK1激活的能力。这些发现表明,WNK同工型作为蛋白激酶起作用,它们通过使这些酶的T环磷酸化来激活SPAK和OSR1。我们的分析还描述了可用于定量评估WNK1和WNK4活性的第一种简便测定法。

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