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人E型电压门控钙通道胞质II-III环和羧基末端的可变剪接:亚型的电生理特征

Alternate splicing in the cytosolic II-III loop and the carboxy terminus of human E-type voltage-gated Ca(2+) channels: electrophysiological characterization of isoforms.

作者信息

Pereverzev Alexey, Leroy Jérôme, Krieger Andreas, Malécot Claire O, Hescheler Jürgen, Pfitzer Gabriele, Klöckner Udo, Schneider Toni

机构信息

Institute of Neurophysiology, University of Cologne, Robert-Koch-Strasse 39, D-50931 Cologne, Germany.

出版信息

Mol Cell Neurosci. 2002 Oct;21(2):352-65. doi: 10.1006/mcne.2002.1179.

Abstract

There is growing evidence that Ca(v)2.3 (alpha1E, E-type) transcripts may encode the ion-conducting subunit of a subclass of R-type Ca(2+) channels, a heterogeneous group of channels by definition resistant to blockers of L-, N-, and P/Q-type Ca(2+) channels. To understand whether splice variation of Ca(v)2.3 contributes to the divergence of R-type channels, individual variants of Ca(v)2.3 were constructed and expressed in HEK-293 cells. With Ba(2+) as charge carrier, the tested biophysical properties were similar. In Ca(2+), the inactivation time course was slower and the recovery from short-term inactivation was faster; however, this occurred only in variants containing a 19-amino-acid-long insertion, which is typical for neuronal Ca(v)2.3 Ca(2+) channel subunits. This different Ca(2+) sensitivity is not responsible for the major differences between various R-type channels, and future studies might clarify its importance for in vivo synaptic or dendritic integration and the reasons for its loss in endocrine Ca(v)2.3 splice variants.

摘要

越来越多的证据表明,Ca(v)2.3(α1E,E型)转录本可能编码R型Ca(2+)通道亚类的离子传导亚基,R型Ca(2+)通道是一类异质性通道,根据定义,它们对L型、N型和P/Q型Ca(2+)通道阻滞剂具有抗性。为了了解Ca(v)2.3的剪接变异是否导致R型通道的差异,构建了Ca(v)2.3的各个变体并在HEK-293细胞中进行表达。以Ba(2+)作为电荷载体时,所测试的生物物理特性相似。在Ca(2+)中,失活时间进程较慢,从短期失活中的恢复较快;然而,这种情况仅发生在含有19个氨基酸长插入片段的变体中,这是神经元Ca(v)2.3 Ca(2+)通道亚基的典型特征。这种不同的Ca(2+)敏感性并非各种R型通道之间主要差异的原因,未来的研究可能会阐明其对体内突触或树突整合的重要性以及其在内分泌Ca(v)2.3剪接变体中缺失的原因。

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