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CaV1.1与其远端C末端之间明显缺乏物理或功能相互作用。

Apparent lack of physical or functional interaction between CaV1.1 and its distal C terminus.

作者信息

Ohrtman Joshua D, Romberg Christin F, Moua Ong, Bannister Roger A, Levinson S Rock, Beam Kurt G

机构信息

Department of Physiology and Biophysics and Department of Medicine-Cardiology Division, University of Colorado, Denver, Aurora, CO 80045.

Department of Physiology and Biophysics and Department of Medicine-Cardiology Division, University of Colorado, Denver, Aurora, CO 80045

出版信息

J Gen Physiol. 2015 Apr;145(4):303-14. doi: 10.1085/jgp.201411292. Epub 2015 Mar 16.

Abstract

CaV1.1 acts as both the voltage sensor that triggers excitation-contraction coupling in skeletal muscle and as an L-type Ca(2+) channel. It has been proposed that, after its posttranslational cleavage, the distal C terminus of CaV1.1 remains noncovalently associated with proximal CaV1.1, and that tethering of protein kinase A to the distal C terminus is required for depolarization-induced potentiation of L-type Ca(2+) current in skeletal muscle. Here, we report that association of the distal C terminus with proximal CaV1.1 cannot be detected by either immunoprecipitation of mouse skeletal muscle or by colocalized fluorescence after expression in adult skeletal muscle fibers of a CaV1.1 construct labeled with yellow fluorescent protein (YFP) and cyan fluorescent protein on the N and C termini, respectively. We found that L-type Ca(2+) channel activity was similar after expression of constructs that either did (YFP-CaV1.11860) or did not (YFP-CaV1.11666) contain coding sequence for the distal C-terminal domain in dysgenic myotubes null for endogenous CaV1.1. Furthermore, in response to strong (up to 90 mV) or long-lasting prepulses (up to 200 ms), tail current amplitudes and decay times were equally increased in dysgenic myotubes expressing either YFP-CaV1.11860 or YFP-CaV1.11666, suggesting that the distal C-terminal domain was not required for depolarization-induced potentiation. Thus, our experiments do not support the existence of either biochemical or functional interactions between proximal CaV1.1 and the distal C terminus.

摘要

CaV1.1既作为触发骨骼肌兴奋-收缩偶联的电压传感器,又作为L型Ca(2+)通道。有人提出,CaV1.1在翻译后切割后,其远端C末端与近端CaV1.1保持非共价结合,并且蛋白激酶A与远端C末端的连接是骨骼肌中L型Ca(2+)电流去极化诱导增强所必需的。在此,我们报告,无论是通过对小鼠骨骼肌进行免疫沉淀,还是在分别用黄色荧光蛋白(YFP)和青色荧光蛋白标记N末端和C末端的CaV1.1构建体在成年骨骼肌纤维中表达后通过共定位荧光,都无法检测到远端C末端与近端CaV1.1的结合。我们发现,在缺乏内源性CaV1.1的发育不良肌管中,表达包含(YFP-CaV1.11860)或不包含(YFP-CaV1.11666)远端C末端结构域编码序列的构建体后,L型Ca(2+)通道活性相似。此外,在发育不良肌管中,表达YFP-CaV1.11860或YFP-CaV1.11666的肌管对强(高达90 mV)或持久预脉冲(高达200 ms)的反应中,尾电流幅度和衰减时间均同等增加,这表明去极化诱导增强不需要远端C末端结构域。因此,我们的实验不支持近端CaV1.1与远端C末端之间存在生化或功能相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c3ed/4380213/8bae38cdc70d/JGP_201411292_Fig1.jpg

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