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Characterization of the kinase activity of a WNK4 protein complex

机译:WNK4蛋白复合物激酶活性的表征

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摘要

Mutations in WNK4 protein kinase cause pseudohypoaldosteronism type II (PHAII), a genetic disorder that is characterized by renal NaCl and K+ retention leading to hypertension and hyperkalemia. Consistent with this, WNK4 is known to regulate several renal tubule transporters, including the NaCl cotransporter, NCC, and the K+ channel, ROMK, but the mechanisms are incompletely understood, and the role of the kinase activity in its actions is highly controversial. To assay WNK4 kinase activity, we have now succeeded in expressing and purifying full-length, enzymatically active WNK4 protein from HEK293 cells. We show that full-length wild-type WNK4 phosphorylates oxidative stress response kinase 1 (OSR1) and Ste20/SPS1-related proline/alanine-rich kinase (SPAK) in vitro. Introducing the PHAII-associated mutations, E559K, D561A, and Q562E, into our protein had no significant effect on this phosphorylation. We conclude that PHAII is unlikely to be caused by abnormal WNK4 kinase activity. We also made the intriguing observation that inactivating mutations of the WNK4 kinase domain did not completely abolish in vitro phosphorylation of OSR1/SPAK. Led by this, we identified a novel 40-kDa kinase that associates specifically with the COOH-terminal half of WNK4 and is able to phosphorylate both WNK4 and SPAK/OSR1. We suggest that this 40-kDa kinase functions in the WNK4 signal transduction pathway and may mediate some of the physiological actions attributed to WNK4.
机译:WNK4蛋白激酶的突变会导致II型假性低醛固酮增多症(PHAII),这是一种遗传性疾病,其特征在于肾脏NaCl和K + 保留,从而导致高血压和高钾血症。与此相一致,已知WNK4调节几种肾小管转运蛋白,包括NaCl协同转运蛋白NCC和K + 通道ROMK,但其机理尚不完全清楚,而且激酶活性的作用尚不清楚。在其行动上存在很大争议。为了测定WNK4激酶的活性,我们现在已经成功地从HEK293细胞表达和纯化了全长的,具有酶促活性的WNK4蛋白。我们显示全长野生型WNK4磷酸化体外氧化应激反应激酶1(OSR1)和Ste20 / SPS1相关的脯氨酸/富含丙氨酸的激酶(SPAK)。将PHAII相关的突变E559K,D561A和Q562E引入我们的蛋白质对这种磷酸化作用没有明显影响。我们得出结论,PHAII不太可能由异常的WNK4激酶活性引起。我们还做了一个有趣的观察,即WNK4激酶结构域的失活突变并未完全消除OSR1 / SPAK的体外磷酸化作用。因此,我们鉴定了一种新型的40 kDa激酶,该激酶与WNK4的COOH末端一半特异性结合,并且能够磷酸化WNK4和SPAK / OSR1。我们建议该40 kDa激酶在WNK4信号转导途径中起作用,并可能介导归因于WNK4的某些生理作用。

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