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人类神经元电压依赖性钙通道:亚基结构及其在通道组装中作用的研究

Human neuronal voltage-dependent calcium channels: studies on subunit structure and role in channel assembly.

作者信息

Brust P F, Simerson S, McCue A F, Deal C R, Schoonmaker S, Williams M E, Veliçelebi G, Johnson E C, Harpold M M, Ellis S B

机构信息

SIBIA, Inc., La Jolla, CA 92037.

出版信息

Neuropharmacology. 1993 Nov;32(11):1089-102. doi: 10.1016/0028-3908(93)90004-m.

Abstract

Voltage-dependent calcium (Ca2+) channels, expressed in the CNS, appear to be multimeric complexes comprised of at least alpha 1, alpha 2 and beta subunits. Previously, we cloned and expressed human neuronal alpha 1, alpha 2 and beta subunits to study recombinant channel complexes that display properties of those expressed in vivo. The alpha 1B-mediated channel subtype binds omega-conotoxin (CgTx) GVIA with high affinity and exhibits properties of N-type voltage-dependent Ca2+ channels. Here we describe several alpha 2 and beta splice variants and report results on the expression of omega-CgTx GVIA binding sites, assembly of the subunit complex and biophysical function of alpha 1B-mediated channel complexes containing some of these splice variants. We optimized recombinant expression in human embryonic kidney (HEK) 293 cells of alpha 1B alpha 2b beta 1 subunit complexes by controlling the expression levels of subunit mRNAs and monitored cell surface expression by binding of omega-CgTx GVIA to the alpha 1B subunit. Co-expression of either alpha 2b or beta 1 subunits with an alpha 1B subunit increased expression of binding sites while the most efficient expression was achieved when both alpha 2b and beta 1 subunits were co-expressed with an alpha 1B subunit. The presence of alpha 2b affects the affinity of omega-CgTx GVIA binding and barium (Ba2+) current magnitudes, although it does not appear to alter kinetic properties of the Ba2+ current. This is the first evidence of an alpha 2 subunit modulating the binding affinity of a cell-surface Ca2+ channel ligand. Our results demonstrate that alpha 1, alpha 2 and beta subunits together contribute to the efficient assembly and functional expression of voltage-dependent Ca2+ channel complexes.

摘要

在中枢神经系统中表达的电压依赖性钙(Ca2+)通道似乎是由至少α1、α2和β亚基组成的多聚体复合物。此前,我们克隆并表达了人类神经元α1、α2和β亚基,以研究显示体内表达通道特性的重组通道复合物。α1B介导的通道亚型以高亲和力结合ω-芋螺毒素(CgTx)GVIA,并表现出N型电压依赖性Ca2+通道的特性。在此,我们描述了几种α2和β剪接变体,并报告了关于ω-CgTx GVIA结合位点的表达、亚基复合物的组装以及包含其中一些剪接变体的α1B介导的通道复合物的生物物理功能的结果。我们通过控制亚基mRNA的表达水平,优化了α1Bα2bβ1亚基复合物在人胚肾(HEK)293细胞中的重组表达,并通过ω-CgTx GVIA与α1B亚基的结合来监测细胞表面表达。α2b或β1亚基与α1B亚基共表达可增加结合位点的表达,而当α2b和β1亚基都与α1B亚基共表达时,表达效率最高。α2b的存在会影响ω-CgTx GVIA结合的亲和力和钡(Ba2+)电流幅度,尽管它似乎不会改变Ba2+电流的动力学特性。这是α2亚基调节细胞表面Ca2+通道配体结合亲和力的首个证据。我们的结果表明,α1、α2和β亚基共同促进了电压依赖性Ca2+通道复合物的有效组装和功能表达。

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