Dynamic Partnership between KCNQ1 and KCNE1 and Influence on Cardiac IKs Current Amplitude by KCNE2

被引:47
作者
Jiang, Min [1 ]
Xu, Xulin [1 ]
Wang, Yuhong [1 ]
Toyoda, Futoshi [2 ]
Liu, Xian-Sheng [1 ]
Zhang, Mei [1 ]
Robinson, Richard B. [3 ,4 ]
Tseng, Gea-Ny [1 ]
机构
[1] Virginia Commonwealth Univ, Dept Physiol & Biophys, Richmond, VA 23298 USA
[2] Shiga Univ Med Sci, Dept Physiol, Shiga 5202192, Japan
[3] Columbia Univ, Dept Pharmacol, New York, NY 10032 USA
[4] Columbia Univ, Ctr Mol Therapeut, New York, NY 10032 USA
基金
美国国家卫生研究院;
关键词
LONG-QT SYNDROME; FAMILIAL ATRIAL-FIBRILLATION; K+ CHANNEL COMPLEXES; OF-FUNCTION MUTATION; POTASSIUM CHANNEL; BETA-SUBUNITS; MINK; EXPRESSION; PORE; MODULATION;
D O I
10.1074/jbc.M808262200
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
Cardiac slow delayed rectifier (I-Ks) channel is composed of KCNQ1 (pore-forming) and KCNE1 (auxiliary) subunits. Although KCNE1 is an obligate I-Ks component that confers the uniquely slow gating kinetics, KCNE2 is also expressed in human heart. In vitro experiments suggest that KCNE2 can associate with the KCNQ1-KCNE1 complex to suppress the current amplitude without altering the slow gating kinetics. Our goal here is to test the role of KCNE2 in cardiac I-Ks channel function. Pulse-chase experiments in COS-7 cells show that there is a KCNE1 turnover in the KCNQ1-KCNE1 complex, supporting the possibility that KCNE1 in the I-Ks channel complex can be substituted by KCNE2 when the latter is available. Biotinylation experiments in COS-7 cells show that although KCNE1 relies on KCNQ1 coassembly for more efficient cell surface expression, KCNE2 can independently traffic to the cell surface, thus becoming available for substituting KCNE1 in the I-Ks channel complex. Injecting vesicles carrying KCNE1 or KCNE2 into KCNQ1-expressing oocytes leads to KCNQ1 modulation in the same manner as KCNQ1 + KCNEx (where x = 1 or 2) cRNA coinjection. Thus, free KCNEx peptides delivered to the cell membrane can associate with existing KCNQ1 channels to modulate their function. Finally, adenovirus-mediated KCNE2 expression in adult guinea pig ventricular myocytes exhibited colocalization with native KCNQ1 protein and reduces the native I-Ks current density. We propose that in cardiac myocytes the I-Ks current amplitude is under dynamic control by the availability of KCNE2 subunits in the cell membrane.
引用
收藏
页码:16452 / 16462
页数:11
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