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平滑肌选择性可变剪接外显子在Cav1.2钙通道中产生功能变异。

Smooth muscle-selective alternatively spliced exon generates functional variation in Cav1.2 calcium channels.

作者信息

Liao Ping, Yu Dejie, Lu Songqing, Tang Zhenzhi, Liang Mui Cheng, Zeng Shihui, Lin Weiming, Soong Tuck Wah

机构信息

National Neuroscience Institute, Singapore 308433.

出版信息

J Biol Chem. 2004 Nov 26;279(48):50329-35. doi: 10.1074/jbc.M409436200. Epub 2004 Sep 20.

Abstract

Voltage-gated calcium channels play a major role in many important processes including muscle contraction, neurotransmission, excitation-transcription coupling, and hormone secretion. To date, 10 calcium channel alpha(1)-subunits have been reported, of which four code for L-type calcium channels. In our previous work, we uncovered by transcript-scanning the presence of 19 alternatively spliced exons in the L-type Ca(v)1.2 alpha(1)-subunit. Here, we report the smooth muscle-selective expression of alternatively spliced exon 9() in Ca(v)1.2 channels found on arterial smooth muscle. Specific polyclonal antibody against exon 9() localized the intense expression of 9()-containing Ca(v)1.2 channels on the smooth muscle wall of arteries, but the expression on cardiac muscle was low. Whole-cell patch clamp recordings of the 9()-containing Ca(v)1.2 channels in HEK293 cells demonstrated -9 and -11-mV hyperpolarized shift in voltage-dependent activation and current-voltage relationships, respectively. The steady-state inactivation property and sensitivity to blockade by nifedipine of the +/-exon 9(*) splice variants were, however, not significantly different. Such cell-selective expression of an alternatively spliced exon strongly indicates the customization and fine tuning of calcium channel functions through alternative splicing of the pore-forming alpha(1)-subunit. The generation of proteomic variations by alternative splicing of the calcium channel Ca(v)1.2 alpha(1)-subunit can potentially provide a flexible mechanism for muscle or neuronal cells to respond to various physiological signals or to diseases.

摘要

电压门控钙通道在许多重要过程中发挥着主要作用,包括肌肉收缩、神经传递、兴奋-转录偶联和激素分泌。迄今为止,已报道了10种钙通道α(1)-亚基,其中4种编码L型钙通道。在我们之前的工作中,我们通过转录本扫描发现L型Ca(v)1.2α(1)-亚基中存在19个可变剪接外显子。在此,我们报告了在动脉平滑肌上发现的Ca(v)1.2通道中可变剪接外显子9()的平滑肌选择性表达。针对外显子9()的特异性多克隆抗体将含9()的Ca(v)1.2通道的强烈表达定位在动脉平滑肌壁上,但在心肌上的表达较低。对HEK293细胞中含9()的Ca(v)1.2通道进行全细胞膜片钳记录显示,电压依赖性激活和电流-电压关系分别出现了-9 mV和-11 mV的超极化偏移。然而,+/-外显子9(*)剪接变体的稳态失活特性和对硝苯地平阻断的敏感性没有显著差异。这种可变剪接外显子的细胞选择性表达强烈表明,通过形成孔的α(1)-亚基的可变剪接对钙通道功能进行了定制和微调。钙通道Ca(v)1.2α(1)-亚基的可变剪接产生蛋白质组变异,可能为肌肉或神经元细胞响应各种生理信号或疾病提供一种灵活的机制。

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