The WNK-regulated SPAK/OSR1 kinases directly phosphorylate and inhibit the K+-Cl- co-transporters

被引:159
作者
de los Heros, Paola [1 ]
Alessi, Dario R. [1 ]
Gourlay, Robert [1 ]
Campbell, David G. [1 ]
Deak, Maria [1 ]
Macartney, Thomas J. [1 ]
Kahle, Kristopher T. [2 ,3 ,4 ]
Zhang, Jinwei [1 ]
机构
[1] Univ Dundee, Coll Life Sci, MRC, Prot Phosphorylat & Ubiguitylat Unit, Dundee DD1 5EH, Scotland
[2] Massachusetts Gen Hosp, Dept Neurosurg, Boston, MA 02114 USA
[3] Harvard Univ, Sch Med, Boston, MA 02114 USA
[4] Childrens Hosp Boston, Manton Ctr Orphan Dis Res, Boston, MA 02115 USA
基金
英国惠康基金; 英国医学研究理事会;
关键词
gamma-aminobutyric acid (GABA); blood pressure/hypertension; ion homoeostasis; K+-Cl- co-transporter 2 (KCC2); K+-Cl- co-transporter 3 (KCC3); Na+-Cl- co-transporter (NCC); Na+-K+-2Cl(-) co-transporter 1 (NKCC1); protein kinase; signal transduction; CATION-CHLORIDE COTRANSPORTERS; ALANINE-RICH KINASE; BLOOD-PRESSURE; MOLECULAR PHYSIOLOGY; PROTEIN-KINASES; CELL-VOLUME; HYPOKALEMIC ALKALOSIS; BARTTERS-SYNDROME; SALT TRANSPORT; ION-TRANSPORT;
D O I
10.1042/BJ20131478
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Precise homoeostasis of the intracellular concentration of Cl- is achieved via the co-ordinated activities of the Cl- influx and efflux. We demonstrate that the WNK (WNK lysine-deficient protein kinase)-activated SPAK (SPS1-related proline/alanine-rich kinase)/OSR1 (oxidative stress-responsive kinase 1) known to directly phosphorylate and stimulate the N[K]CCs (Na+-K+ ion co-transporters), also promote inhibition of the KCCs (K+-Cl- co-transporters) by directly phosphorylating a recently described C-terminal threonine residue conserved in all KCC isoforms [Site-2 (Thr(1048))]. First, we demonstrate that SPAK and OSR1, in the presence of the MO25 regulatory subunit, robustly phosphorylates all KCC isoforms at Site-2 in vitro. Secondly, STOCK1S-50699, a WNK pathway inhibitor, suppresses SPAK/OSR1 activation and KCC3A Site-2 phosphorylation with similar efficiency. Thirdly, in ES (embryonic stem) cells lacking SPAK/OSR1 activity, endogenous phosphorylation of KCC isoforms at Site-2 is abolished and these cells display elevated basal activity of Rb-86(+) uptake that was not markedly stimulated further by hypotonic high K+ conditions, consistent with KCC3A activation. Fourthly, a tight correlation exists between SPAK/OSR1 activity and the magnitude of KCC3A Site-2 phosphorylation. Lastly, a Site-2 alanine KCC3A mutant preventing SPAK/OSR1 phosphorylation exhibits increased activity. We also observe that KCCs are directly phosphorylated by SPAK/OSR1, at a novel Site-3 (Thr(5) in KCC1/KCC3 and Thr(6) in KCC2/KCC4), and a previously recognized KCC3-specific residue, Site-4 (Ser(96)). These data demonstrate that the WNK-regulated SPAK/OSR1 kinases directly phosphorylate the N[K]CCs and KCCs, promoting their stimulation and inhibition respectively. Given these reciprocal actions with anticipated net effects of increasing Cl- influx, we propose that the targeting of WNK-SPAK/OSR1 with kinase inhibitors might be a novel potent strategy to enhance cellular Cl- extrusion, with potential implications for the therapeutic modulation of epithelial and neuronal ion transport in human disease states.
引用
收藏
页码:559 / 573
页数:15
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