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在骨骼肌细胞中,Cav1.1、β1a和γ1二氢吡啶受体亚基对T型钙电流缺乏调节作用。

Absence of regulation of the T-type calcium current by Cav1.1, beta1a and gamma1 dihydropyridine receptor subunits in skeletal muscle cells.

作者信息

Strube Caroline

机构信息

UMR CNRS 5123, UCB-Lyon1, 69622, Villeurbanne, Cedex, France.

出版信息

Pflugers Arch. 2008 Feb;455(5):921-7. doi: 10.1007/s00424-007-0345-9. Epub 2007 Sep 29.

Abstract

The subunit structure of low voltage activated T-type Ca2+ channels is still unknown. Co-expression of dihydropyridine receptor (DHPR) auxiliary subunits with T-type alpha1 subunits in heterologous systems has produced conflicting results. In developing foetal skeletal muscle fibres which abundantly express DHPR subunits, Cav3.2 (alpha1H) subunits are believed to underlie T-type calcium currents which disappear 2 to 3 weeks after birth. Therefore, a possible regulation of foetal skeletal muscle T-type Ca2+ channels by DHPR subunits was investigated in freshly isolated foetal skeletal muscle using knockout mice, which provide a powerful tool to address this question. The possible involvement of alpha1S (Cav1.1), beta1 and gamma1 DHPR subunits was tested using dysgenic (alpha1S-null), beta1a and gamma1 knockout mice. The results show that the absence of alpha1S, beta1 or gamma1 DHPR subunits does not significantly affect the electrophysiological properties of T-type Ca2+ currents in skeletal muscle, suggesting that (1) native Cav3.2 is not regulated by beta1 or gamma1 DHPR subunits; (2) T-type and L-type currents have distinct and not interchangeable roles.

摘要

低电压激活的T型Ca2+通道的亚基结构仍然未知。在异源系统中,二氢吡啶受体(DHPR)辅助亚基与T型α1亚基的共表达产生了相互矛盾的结果。在大量表达DHPR亚基的发育中的胎儿骨骼肌纤维中,Cav3.2(α1H)亚基被认为是T型钙电流的基础,该电流在出生后2至3周消失。因此,利用基因敲除小鼠,在新鲜分离的胎儿骨骼肌中研究了DHPR亚基对胎儿骨骼肌T型Ca2+通道的可能调节作用,基因敲除小鼠为解决这个问题提供了一个有力的工具。使用发育不全(α1S缺失)、β1a和γ1基因敲除小鼠测试了α1S(Cav1.1)、β1和γ1 DHPR亚基的可能参与情况。结果表明,α1S、β1或γ1 DHPR亚基的缺失不会显著影响骨骼肌中T型Ca2+电流的电生理特性,这表明(1)天然的Cav3.2不受β1或γ1 DHPR亚基的调节;(2)T型和L型电流具有不同且不可互换的作用。

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