Wei X Y, Perez-Reyes E, Lacerda A E, Schuster G, Brown A M, Birnbaumer L
Department of Molecular Physiology, Baylor College of Medicine, Houston, Texas 77030.
J Biol Chem. 1991 Nov 15;266(32):21943-7.
High threshold L-type Ca2+ channels of skeletal muscle are thought to consist of a complex of alpha 1, alpha 2 delta, beta, and gamma subunits. Expression of the cloned alpha 1 subunit from skeletal and cardiac muscle has established that this protein is the dihydropyridine-sensitive ion-conducting subunit. However, the kinetics of the skeletal muscle alpha 1 alone expressed in mouse L-cells were abnormally slow and were accelerated to within the normal range by coexpression with the skeletal muscle beta subunit. The kinetics of cardiac muscle alpha 1 were also slowed but to a lesser extent and were not altered by coexpression with skeletal muscle alpha 2. We show here that coexpression of the skeletal muscle beta subunit with the cardiac alpha 1 subunit in Xenopus laevis oocytes produced: 1) an increase in the peak voltage-sensitive current, 2) a shift of the peak current-voltage relationship to more hyperpolarized potentials, and 3) an increase in the rate of activation. Coexpression of the skeletal muscle gamma subunit did not have a significant effect on currents elicited by alpha 1. However, when gamma was coexpressed with beta and alpha 1, both peak currents and rates of activation at more negative potentials were increased. These results indicate that rather than simply amplifying expression of alpha 1, heterologous skeletal muscle beta and gamma subunits can modulate the biophysical properties of cardiac alpha 1.
骨骼肌的高阈值L型Ca2+通道被认为由α1、α2δ、β和γ亚基组成的复合物构成。从骨骼肌和心肌克隆的α1亚基的表达已证实该蛋白是对二氢吡啶敏感的离子传导亚基。然而,单独在小鼠L细胞中表达的骨骼肌α1的动力学异常缓慢,与骨骼肌β亚基共表达时加速至正常范围。心肌α1的动力学也减慢,但程度较小,与骨骼肌α2共表达时未改变。我们在此表明,在非洲爪蟾卵母细胞中,骨骼肌β亚基与心肌α1亚基共表达产生了:1)峰值电压敏感性电流增加;2)峰值电流-电压关系向更超极化电位偏移;3)激活速率增加。骨骼肌γ亚基的共表达对α1引发的电流没有显著影响。然而,当γ与β和α1共表达时,在更负电位下的峰值电流和激活速率均增加。这些结果表明,异源骨骼肌β和γ亚基并非简单地放大α1的表达,而是可以调节心肌α1的生物物理特性。