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电压依赖性钙离子通道中的多种结构元件支持其被G蛋白抑制。

Multiple structural elements in voltage-dependent Ca2+ channels support their inhibition by G proteins.

作者信息

Zhang J F, Ellinor P T, Aldrich R W, Tsien R W

机构信息

Department of Molecular and Cellular Physiology, Stanford University, California 94305, USA.

出版信息

Neuron. 1996 Nov;17(5):991-1003. doi: 10.1016/s0896-6273(00)80229-9.

Abstract

Molecular determinants of Ca2+ channel responsiveness to inhibition by receptor-coupled G proteins were investigated in Xenopus oocytes. The inhibitory response of alpha1B (N-type) channels was much larger than alpha1A (P/Q-type) channels, while alpha1C (L-type) channels were unresponsive. Differences in both degree and speed of inhibition were accounted for by variations in inhibitor off-rate. We tested proposals that inhibitory G protein and Ca2+ channel beta subunits compete specifically at the I-II loop. G protein-mediated inhibition remained unaltered in alpha1B subunits containing a point mutation in the I-II loop segment critical for Ca2+ channel beta subunit binding, and in chimeras where the I-II loop of alpha1B was replaced with counterparts from alpha1A or alpha1c. Full interconversion between modulatory behaviors of alpha1B and alpha1A was achieved only by swapping both motif I and the C-terminus in combination. Thus, essential structural elements for G protein modulation reside in multiple Ca2+ channel domains.

摘要

在非洲爪蟾卵母细胞中研究了Ca2+通道对受体偶联G蛋白抑制反应的分子决定因素。α1B(N型)通道的抑制反应比α1A(P/Q型)通道大得多,而α1C(L型)通道无反应。抑制程度和速度的差异是由抑制剂解离速率的变化引起的。我们测试了抑制性G蛋白和Ca2+通道β亚基在I-II环处特异性竞争的假说。在I-II环段对Ca2+通道β亚基结合至关重要的位点发生点突变的α1B亚基中,以及在α1B的I-II环被α1A或α1C的对应环取代的嵌合体中,G蛋白介导的抑制作用保持不变。只有通过同时交换模体I和C末端,才能实现α1B和α1A调节行为的完全相互转换。因此,G蛋白调节的必需结构元件存在于多个Ca2+通道结构域中。

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