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L型Ca2+通道α1C亚基IIIS5-S6连接区中的丝氨酸残基是二氢吡啶Ca2+通道激动剂作用的关键决定因素。

Serine residue in the IIIS5-S6 linker of the L-type Ca2+ channel alpha 1C subunit is the critical determinant of the action of dihydropyridine Ca2+ channel agonists.

作者信息

Yamaguchi S, Okamura Y, Nagao T, Adachi-Akahane S

机构信息

Laboratory of Pharmacology and Toxicology, Graduate School of Pharmaceutical Sciences, The University of Tokyo, 7-3-1 Hongo, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

J Biol Chem. 2000 Dec 29;275(52):41504-11. doi: 10.1074/jbc.M007165200.

Abstract

The dihydropyridine (DHP)-binding site has been identified within L-type Ca(2+) channel alpha(1C) subunit. However, the molecular mechanism underlying modulation of Ca(2+) channel gating by DHPs has not been clarified. To search for novel determinants of high affinity DHP binding, we introduced point mutations in the rat brain Ca(2+) channel alpha(1C) subunit (rbCII or Ca(v)1.2c) based on the comparison of amino acid sequences between rbCII and the ascidian L-type Ca(2+) channel alpha(1) subunit, which is insensitive to DHPs. The alpha(1C) mutants (S1115A, S1146A, and A1420S) and rbCII were transiently expressed in BHK6 cells with beta(1a) and alpha(2)/delta subunits. The mutation did not affect the electrophysiological properties of the Ca(2+) channel, or the voltage- and concentration-dependent block of Ca(2+) channel currents produced by diltiazem and verapamil. However, the S1115A channel was significantly less sensitive to DHP antagonists. Interestingly, in the S1115A channel, DHP agonists failed to enhance whole-cell Ca(2+) channel currents and the prolongation of mean open time, as well as the increment of NP(o). Responsiveness to the non-DHP agonist FPL-64176 was also markedly reduced in the S1115A channel. When S1115 was replaced by other amino acids (S1115D, S1115T, or S1115V), only S1115T was slightly sensitive to S-(-)-Bay K 8644. These results indicate that the hydroxyl group of Ser(1115) in IIIS5-S6 linker of the L-type Ca(2+) channel alpha(1C) subunit plays a critical role in DHP binding and in the action of DHP Ca(2+) channel agonists.

摘要

已在L型Ca(2+)通道α(1C)亚基中鉴定出二氢吡啶(DHP)结合位点。然而,DHP对Ca(2+)通道门控调节的分子机制尚未阐明。为了寻找高亲和力DHP结合的新决定因素,我们基于大鼠脑Ca(2+)通道α(1C)亚基(rbCII或Ca(v)1.2c)与对DHP不敏感的海鞘L型Ca(2+)通道α(1)亚基的氨基酸序列比较,在其中引入了点突变。α(1C)突变体(S1115A、S1146A和A1420S)和rbCII与β(1a)和α(2)/δ亚基在BHK6细胞中瞬时表达。该突变不影响Ca(2+)通道的电生理特性,也不影响地尔硫卓和维拉帕米对Ca(2+)通道电流的电压和浓度依赖性阻断。然而,S1115A通道对DHP拮抗剂的敏感性显著降低。有趣的是,在S1115A通道中,DHP激动剂未能增强全细胞Ca(2+)通道电流以及平均开放时间的延长,也未能增加NP(o)。S1115A通道对非DHP激动剂FPL-64176的反应性也明显降低。当S11

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