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E3 ligase CHIP and Hsc70 regulate Kv1.5 protein expression and function in mammalian cells

Authors :
Tatehito Kondo
Katsumi Higaki
Haruaki Ninomiya
Yasutaka Kurata
Akira Hasegawa
Nani Maharani
Yasuaki Shirayoshi
Endang Mahati
Kazuhiro Yamamoto
Akio Yoshida
Youichi Kurozawa
Ichiro Hisatome
Peili Li
Source :
Journal of Molecular and Cellular Cardiology. 86:138-146
Publication Year :
2015
Publisher :
Elsevier BV, 2015.

Abstract

Kv1.5 confers ultra-rapid delayed-rectifier potassium channel current (IKur) which contributes to repolarization of the atrial action potential. Kv1.5 proteins, degraded via the ubiquitin-proteasome pathway, decreased in some atrial fibrillation patients. Carboxyl-terminus heat shock cognate 70-interacting protein (CHIP), an E3 ubiquitin ligase, is known to ubiquitinate short-lived proteins. Here, we investigated the roles of CHIP in Kv1.5 degradation to provide insights into the mechanisms of Kv1.5 decreases and treatments targeting Kv1.5 for atrial fibrillation. Coexpression of CHIP with Kv1.5 in HEK293 cells increased Kv1.5 protein ubiquitination and decreased the protein level. Immunofluorescence revealed decreases of Kv1.5 proteins in the endoplasmic reticulum and on the cell membrane. A siRNA against CHIP suppressed Kv1.5 protein ubiquitination and increased its protein level. CHIP mutants, lacking either the N-terminal tetratricopeptide region domain or the C-terminal U-box domain, failed to exert these effects on Kv1.5 proteins. Immunoprecipitation showed that CHIP formed complexes with Kv1.5 proteins and heat shock cognate protein 70 (Hsc70). Effects of Hsc70 on Kv1.5 were similar to CHIP by altering interaction of CHIP with Kv1.5 protein. Coexpression of CHIP and Hsc70 with Kv1.5 additionally enhanced Kv1.5 ubiquitination. Kv1.5 currents were decreased by overexpression of CHIP or Hsc70 but were increased by knockdown of CHIP or Hsc70 in HEK 293 cells stably expressing Kv1.5. These effects of CHIP and Hsc70 were also observed on endogenous Kv1.5 in HL-1 mouse cardiomyocytes, decreasing IKur and prolonging action potential duration. These results indicate that CHIP decreases the Kv1.5 protein level and functional channel by facilitating its degradation in concert with chaperone Hsc70.

Details

ISSN :
00222828
Volume :
86
Database :
OpenAIRE
Journal :
Journal of Molecular and Cellular Cardiology
Accession number :
edsair.doi.dedup.....e3104ebd4589b68a4478f7e338491e74
Full Text :
https://doi.org/10.1016/j.yjmcc.2015.07.018