Back to Search Start Over

14-3-3γ, a novel regulator of the large-conductance Ca2+-activated K+ channel

Authors :
Robert S. Hoover
Jia Xiao
Xiaonan H. Wang
Xinxin Chen
Haian Fu
Hui Cai
Shan Chen
Zhizhi Zhuang
Xiuyan Feng
Douglas C. Eaton
Janet D. Klein
Source :
American Journal of Physiology-Renal Physiology. 319:F52-F62
Publication Year :
2020
Publisher :
American Physiological Society, 2020.

Abstract

14-3-3γ is a small protein regulating its target proteins through binding to phosphorylated serine/threonine residues. Sequence analysis of large-conductance Ca2+-activated K+ (BK) channels revealed a putative 14-3-3 binding site in the COOH-terminal region. Our previous data showed that 14-3-3γ is widely expressed in the mouse kidney. Therefore, we hypothesized that 14-3-3γ has a novel role in the regulation of BK channel activity and protein expression. We used electrophysiology, Western blot analysis, and coimmunoprecipitation to examine the effects of 14-3-3γ on BK channels both in vitro and in vivo. We demonstrated the interaction of 14-3-3γ with BK α-subunits (BKα) by coimmunoprecipitation. In human embryonic kidney-293 cells stably expressing BKα, overexpression of 14-3-3γ significantly decreased BK channel activity and channel open probability. 14-3-3γ inhibited both total and cell surface BKα protein expression while enhancing ERK1/2 phosphorylation in Cos-7 cells cotransfected with flag-14-3-3γ and myc-BK. Knockdown of 14-3-3γ by siRNA transfection markedly increased BKα expression. Blockade of the ERK1/2 pathway by incubation with the MEK-specific inhibitor U0126 partially abolished 14-3-3γ-mediated inhibition of BK protein expression. Similarly, pretreatment of the lysosomal inhibitor bafilomycin A1 reversed the inhibitory effects of 14-3-3γ on BK protein expression. Furthermore, overexpression of 14-3-3γ significantly increased BK protein ubiquitination in embryonic kidney-293 cells stably expressing BKα. Additionally, 3 days of dietary K+ challenge reduced 14-3-3γ expression and ERK1/2 phosphorylation while enhancing renal BK protein expression and K+ excretion. These data suggest that 14-3-3γ modulates BK channel activity and protein expression through an ERK1/2-mediated ubiquitin-lysosomal pathway.

Details

ISSN :
15221466 and 1931857X
Volume :
319
Database :
OpenAIRE
Journal :
American Journal of Physiology-Renal Physiology
Accession number :
edsair.doi...........6a2e9edcd40d98ac36354001a50b5f3b
Full Text :
https://doi.org/10.1152/ajprenal.00584.2019