Department of Pharmacology, University of Texas Southwestern Medical Center at Dallas, Dallas, Texas 75390-9041, USA.
J Biol Chem. 2012 Nov 2;287(45):37868-79. doi: 10.1074/jbc.M112.398750. Epub 2012 Sep 18.
Two of the four WNK (with no lysine (K)) protein kinases are associated with a heritable form of ion imbalance culminating in hypertension. WNK1 affects ion transport in part through activation of the closely related Ste20 family protein kinases oxidative stress-responsive 1 (OSR1) and STE20/SPS1-related proline-, alanine-rich kinase (SPAK). Once activated by WNK1, OSR1 and SPAK phosphorylate and stimulate the sodium, potassium, two chloride co-transporters, NKCC1 and NKCC2, and also affect other related ion co-transporters. We find that WNK1 and OSR1 co-localize on cytoplasmic puncta in HeLa and other cell types. We show that the C-terminal region of WNK1 including a coiled coil is sufficient to localize the fragment in a manner similar to the full-length protein, but some other fragments lacking this region are mislocalized. Photobleaching experiments indicate that both hypertonic and hypotonic conditions reduce the mobility of GFP-WNK1 in cells. The four WNK family members can phosphorylate the activation loop of OSR1 to increase its activity with similar kinetic constants. C-terminal fragments of WNK1 that contain three RFXV interaction motifs can bind OSR1, block activation of OSR1 by sorbitol, and prevent the OSR1-induced enhancement of ion co-transporter activity in cells, further supporting the conclusion that association with WNK1 is required for OSR1 activation and function at least in some contexts. C-terminal WNK1 fragments can be phosphorylated by OSR1, suggesting that OSR1 catalyzes feedback phosphorylation of WNK1.
WNK(无赖氨酸(K))蛋白激酶家族中的两个成员与遗传性离子失衡有关,最终导致高血压。WNK1 通过激活密切相关的 Ste20 家族蛋白激酶氧化应激反应 1(OSR1)和 STE20/SPS1 相关脯氨酸-丙氨酸丰富激酶(SPAK)来影响离子转运。一旦被 WNK1 激活,OSR1 和 SPAK 磷酸化并刺激钠、钾、两氯共转运体 NKCC1 和 NKCC2,还会影响其他相关的离子共转运体。我们发现 WNK1 和 OSR1 在 HeLa 和其他细胞类型的细胞质点状结构中共定位。我们表明 WNK1 的 C 端区域(包括一个卷曲螺旋)足以将该片段以类似于全长蛋白的方式定位,但其他一些缺乏该区域的片段则发生错误定位。光漂白实验表明,高渗和低渗条件都会降低 GFP-WNK1 在细胞中的流动性。四个 WNK 家族成员可以磷酸化 OSR1 的激活环,以增加其活性,动力学常数相似。含有三个 RFXV 相互作用基序的 WNK1 C 端片段可以与 OSR1 结合,阻止山梨醇激活 OSR1,并防止 OSR1 诱导的细胞中离子共转运体活性增强,进一步支持以下结论:在某些情况下,与 WNK1 的关联是 OSR1 激活和功能所必需的。OSR1 可以磷酸化 C 端 WNK1 片段,表明 OSR1 催化 WNK1 的反馈磷酸化。