PGF2α regulates the basolateral K channels in the distal convoluted tubule

Author:

Wang Lijun12,Zhang Chengbiao2,Su Xiao-Tong2,Lin Dao-Hong2,Wu Peng2,Schwartzman Michal L.2,Wang Wen-Hui2

Affiliation:

1. Department of Physiology, Harbin Medical University, Harbin, China; and

2. Department of Pharmacology, New York Medical College, Valhalla, New York

Abstract

Our aim is to examine the role of PGF receptor (FP), a highly expressed prostaglandin receptor in the distal convoluted tubule (DCT) in regulating the basolateral 40-pS K channel. The single-channel studies demonstrated that PGF had a biphasic effect on the 40-pS K channel in the DCT–PGF stimulated at low concentrations (less than 500 nM), while at high concentrations (above 1 µM), it inhibited the 40-pS K channels. Moreover, neither 13,14-dihydro-15-keto-PGF (a metabolite of PGF) nor PGE2 was able to mimic the effect of PGF on the 40-pS K channel in the DCT. The inhibition of PKC had no significant effect on the 40-pS K channel; however, it abrogated the inhibitory effect of 5 µM PGF on the K channel. Moreover, stimulation of PKC inhibited the 40-pS K channel in the DCT, suggesting that PKC mediates the inhibitory effect of PGF on the 40-pS K channel. Conversely, the stimulatory effect of PGF on the 40-pS K channel was absent in the DCT treated with DPI, a NADPH oxidase (NOX) inhibitor. Also, adding 100 µM H2O2 mimicked the stimulatory effect of PGF and increased the 40-pS K channel activity in DCT. Moreover, the stimulatory effect of 500 nM PGF and H2O2 was not additive, suggesting the role of superoxide-related species in mediating the stimulatory effect of PGF on the 40-pS K channel. The inhibition of Src family tyrosine protein kinase (SFK) not only inhibited the 40-pS K channel in the DCT but also completely abolished the stimulatory effects of PGF and H2O2 on the 40-pS K channel. We conclude that PGF at low doses stimulates the basolateral 40-pS K channel by a NOX- and SFK-dependent mechanism, while at high concentrations, it inhibits the K channel by a PKC-dependent pathway.

Funder

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)

HHS | NIH | National Heart, Lung, and Blood Institute (NHBLI)

Publisher

American Physiological Society

Subject

Physiology

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