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通过丙氨酸扫描诱变分析L型钙通道的二氢吡啶受体位点。

Analysis of the dihydropyridine receptor site of L-type calcium channels by alanine-scanning mutagenesis.

作者信息

Peterson B Z, Johnson B D, Hockerman G H, Acheson M, Scheuer T, Catterall W A

机构信息

Department of Pharmacology, University of Washington, Seattle, Washington 98195-7280, USA.

出版信息

J Biol Chem. 1997 Jul 25;272(30):18752-8. doi: 10.1074/jbc.272.30.18752.

Abstract

The dihydropyridine Ca2+ antagonist drugs used in the therapy of cardiovacular disorders inhibit L-type Ca2+ channels by binding to a single high affinity site. Photoaffinity labeling and analysis of mutant Ca2+ channels implicate the IIIS6 and IVS6 segments in high affinity binding. The amino acid residues that are required for high affinity binding of dihydropyridine Ca2+ channel antagonists were probed by alanine-scanning mutagenesis of the alpha1C subunit, transient expression in mammalian cells, and analysis by measurements of ligand binding and block of Ba2+ currents through expressed Ca2+ channels. Eleven amino acid residues in transmembrane segments IIIS6 and IVS6 were identified whose mutation reduced the affinity for the Ca2+ antagonist PN200-110 by 2-25-fold. Both amino acid residues conserved among Ca2+ channels and those specific to L-type Ca2+ channels were found to be required for high affinity dihydropyridine binding. In addition, mutation F1462A increased the affinity for the dihydropyridine Ca2+ antagonist PN200-110 by 416-fold with no effect on the affinity for the Ca2+ agonist Bay K8644. The residues in transmembrane segments IIIS6 and IVS6 that are required for high affinity binding are primarily aligned on single faces of these two alpha helices, supporting a "domain interface model" of dihydropyridine binding and action in which the IIIS6 and IVS6 interact to form a high affinity dihydropyridine receptor site on L-type Ca2+ channels.

摘要

用于治疗心血管疾病的二氢吡啶类钙离子拮抗剂药物通过与单个高亲和力位点结合来抑制L型钙离子通道。对突变型钙离子通道进行光亲和标记和分析表明,IIIS6和IVS6片段参与高亲和力结合。通过对α1C亚基进行丙氨酸扫描诱变、在哺乳动物细胞中瞬时表达,并通过测量配体结合以及通过表达的钙离子通道对Ba2+电流的阻断进行分析,探究了二氢吡啶类钙离子通道拮抗剂高亲和力结合所需的氨基酸残基。在跨膜片段IIIS6和IVS6中鉴定出11个氨基酸残基,其突变使对钙离子拮抗剂PN200-110的亲和力降低了2至25倍。发现钙离子通道之间保守的氨基酸残基以及L型钙离子通道特有的氨基酸残基都是二氢吡啶高亲和力结合所必需的。此外,F1462A突变使对二氢吡啶类钙离子拮抗剂PN200-110的亲和力增加了416倍,而对钙离子激动剂Bay K8644的亲和力没有影响。跨膜片段IIIS6和IVS6中高亲和力结合所需的残基主要排列在这两个α螺旋的单面上,支持了二氢吡啶结合和作用的“结构域界面模型”,即IIIS6和IVS6相互作用在L型钙离子通道上形成一个高亲和力的二氢吡啶受体位点。

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