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高电压和低电压激活钙通道的锌离子敏感性

Zn2+ sensitivity of high- and low-voltage activated calcium channels.

作者信息

Sun Hong-Shuo, Hui Kwokyin, Lee David W K, Feng Zhong-Ping

机构信息

Department of Physiology, University of Toronto, Toronto, Ontario, Canada.

出版信息

Biophys J. 2007 Aug 15;93(4):1175-83. doi: 10.1529/biophysj.106.103333. Epub 2007 May 25.

Abstract

The essential cation zinc (Zn2+) blocks voltage-dependent calcium channels in several cell types, which exhibit different sensitivities to Zn2+. The specificity of the Zn2+ effect on voltage-dependent calcium channel subtypes has not been systematically investigated. In this study, we used a transient protein expression system to determine the Zn2+ effect on low- and high-voltage activated channels. We found that in Ba2+, the IC50 value of Zn2+ was alpha1-subunit-dependent with lowest value for CaV1.2, and highest for CaV3.1; the sensitivity of the channels to Zn2+ was approximately ranked as CaV1.2>CaV3.2>CaV2.3>CaV2.2=CaV 2.1>or=CaV3.3=CaV3.1. Although the CaV2.2 and CaV3.1 channels had similar IC50 for Zn2+ in Ba2+, the CaV2.2, but not CaV3.1 channels, had approximately 10-fold higher IC50 to Zn2+ in Ca2+. The reduced sensitivity of CaV2.2 channels to Zn2+ in Ca2+ was partially reversed by disrupting a putative EF-hand motif located external to the selectivity filter EEEE locus. Thus, our findings support the notion that the Zn2+ block, mediated by multiple mechanisms, may depend on conformational changes surrounding the alpha1 pore regions. These findings provide fundamental insights into the mechanism underlying the inhibitory effect of zinc on various Ca2+ channel subtypes.

摘要

必需阳离子锌(Zn2+)可阻断多种细胞类型中的电压依赖性钙通道,这些细胞类型对Zn2+表现出不同的敏感性。Zn2+对电压依赖性钙通道亚型作用的特异性尚未得到系统研究。在本研究中,我们使用瞬时蛋白表达系统来确定Zn2+对低电压和高电压激活通道的作用。我们发现,在Ba2+存在的情况下,Zn2+的IC50值依赖于α1亚基,其中CaV1.2的IC50值最低,CaV3.1的最高;通道对Zn2+的敏感性大致排序为CaV1.2>CaV3.2>CaV2.3>CaV2.2=CaV 2.1≥CaV3.3=CaV3.1。尽管CaV2.2和CaV3.1通道在Ba2+中对Zn2+的IC50相似,但CaV2.2通道在Ca2+中对Zn2+的IC50约为CaV3.1通道的10倍。通过破坏位于选择性过滤器EEEE位点外部的一个假定的EF手基序,部分逆转了Ca2+中CaV2.2通道对Zn2+敏感性的降低。因此,我们的研究结果支持这样一种观点,即由多种机制介导的Zn2+阻断可能取决于α1孔区域周围的构象变化。这些发现为锌对各种Ca2+通道亚型抑制作用的潜在机制提供了基本见解。

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