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人类E型神经元钙通道α1亚基的分子分析与功能表达

Molecular analysis and functional expression of the human type E neuronal Ca2+ channel alpha 1 subunit.

作者信息

Schneider T, Wei X, Olcese R, Costantin J L, Neely A, Palade P, Perez-Reyes E, Qin N, Zhou J, Crawford G D

机构信息

Division of Neuroscience, Baylor College of Medicine, Houston, TX 77030.

出版信息

Recept Channels. 1994;2(4):255-70.

PMID:7536609
Abstract

A human brain alpha 1 Ca2+ channel subunit was cloned and expressed in Xenopus laevis oocytes. The open reading frame, encoding 2,312 amino acids, has high homology to the marine ray doe-1, the rat E-type, and the rabbit brain BII alpha 1 subunits. The amino and carboxy termini of this human.E-type alpha 1 subunit (alpha 1E) are most similar to the rabbit BII-1 splice variant, the remainder being colinear with the BII alpha 1 with the exception of two insertions, one of 43 amino acids in the C-terminus and another of 7 amino acids, found also in the rat alpha 1E, between domains II and III. Two potential Ca2+ binding sites are predicted from its primary structure. The expression of inward Ba2+ currents reveals voltage-dependent activation and inactivation measured by the cut-open oocyte vaseline-gap technique, with kinetics that correspond to that of a high-voltage-activated neuronal Ca2+ channel, and pharmacologic properties that resemble those of some low-voltage-activated neuronal Ca2+ currents. The human alpha 1E currents are insensitive to omega-conotoxin-GVIA (1 microM), omega-agatoxin-IVA (200 nM), a synthetic funnel web spider toxin (FTX, 20 microM), and Bay-K8644 (0.5 microM); they are inhibited 20% by high concentrations of methoxyverapamil and diltiazem, 65% by 0.1% crude funnel web spider venom and 100% by Ni2+ (IC50 = 30 nM). Single-channel records show a complex activity pattern with several apparent conductance states, the largest having a conductance of 14 pS.

摘要

克隆了人脑海马α1 Ca2+通道亚基并在非洲爪蟾卵母细胞中进行表达。其开放阅读框编码2312个氨基酸,与海鳐doe-1、大鼠E型以及兔脑BII α1亚基具有高度同源性。此人E型α1亚基(α1E)的氨基端和羧基端与兔BII-1剪接变体最为相似,其余部分与BII α1呈线性排列,但有两个插入片段除外,一个位于C端,含43个氨基酸,另一个含7个氨基酸,在大鼠α1E中也有,位于结构域II和III之间。从其一级结构预测有两个潜在的Ca2+结合位点。内向Ba2+电流的表达揭示了通过切开卵母细胞凡士林间隙技术测量的电压依赖性激活和失活,其动力学与高压激活的神经元Ca2+通道相对应,药理学特性类似于一些低压激活的神经元Ca2+电流。人α1E电流对ω-芋螺毒素-GVIA(1μM)、ω-阿加毒素-IVA(200 nM)、合成漏斗网蜘蛛毒素(FTX,20μM)和Bay-K8644(0.5μM)不敏感;高浓度的甲氧基维拉帕米和地尔硫卓可使其抑制20%,0.1%的粗漏斗网蜘蛛毒液可使其抑制65%,Ni2+(IC50 = 30 nM)可使其100%抑制。单通道记录显示出一种复杂的活动模式,有几种明显的电导状态,最大的电导为14 pS。

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