蛋白激酶G可抑制血流诱导的Ca 2+向集合管细胞的内流

Protein kinase G inhibits flow-induced Ca 2+ entry into collecting duct cells
2012-08-16 17:18点击:140次发表评论
作者:Du, J.abc, Wong, W.-Y.ab, Sun, L.ab, Huang, Y.ab,
机构: 香港中文大学生物医学学院
期刊: J AM SOC NEPHROL2012年7月7期23卷

School of Biomedical Sciences, Chinese University of Hong Kong, HongKong, Hong Kong

The renal cortical collecting duct (CCD) contributes to the maintenance of K + homeostasis by modulating renal K + secretion. Cytosolic Ca 2+ ([Ca 2+] i) mediates flow-induced K + secretion in the CCD, but the mechanisms regulating flow-induced Ca 2+ entry into renal epithelial cells are not well understood. Here, we found that atrial natriuretic peptide, nitric oxide, and cyclic guanosine monophosphate (cGMP) act through protein kinase G (PKG) to inhibit flow-induced increases in [Ca 2+] i in M1-CCD cells. Coimmunoprecipitation, double immunostaining, and functional studies identified heteromeric TRPV4-P2 channels as the mediators of flow-induced Ca 2+ entry into M1-CCD cells and HEK293 cells that were coexpressed with both TRPV4 and TRPP2. In these HEK293 cells, introducing point mutations at two putative PKG phosphorylation sites on TRPP2 abolished the ability of cGMP to inhibit flow-induced Ca 2+ entry. In addition, treating M1-CCD cells with fusion peptides that compete with the endogenous PKG phosphorylation sites on TRPP2 also abolished the cGMP-mediated inhibition of the flow-induced Ca 2+ entry. Taken together, these data suggest that heteromeric TRPV4-P2 channelsmediate the flow-induced entry of Ca 2+into collecting duct cells. Furthermore, substances such as atrial natriuretic peptide and nitric oxide, which increase cGMP, abrogate flow-induced Ca 2+ entry through PKG-mediated inhibition of these channels. Copyright © 2012 by the American Society of Nephrology.

Yao, X.; School of Biomedical Sciences, Chinese University of Hong Kong, HongKong, Hong Kong; email: yao2068@cuhk.edu.hk

通讯作者:School of Biomedical Sciences, Chinese University of Hong Kong, HongKong, Hong Kong
学科代码:肾脏病学   关键词:蛋白激酶G可抑制血流诱导的Ca 2+向集合管细胞的内流
来源: Scopus
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