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钙通道阻滞剂与L型钙通道外孔的结合通过变构作用与二氢吡啶的结合相偶联。

Calcicludine binding to the outer pore of L-type calcium channels is allosterically coupled to dihydropyridine binding.

作者信息

Wang Xianming, Du Lei, Peterson Blaise Z

机构信息

Department of Cellular and Molecular Physiology, The Penn State Milton S. Hershey College of Medicine, Hershey, Pennsylvania 17033, USA.

出版信息

Biochemistry. 2007 Jun 26;46(25):7590-8. doi: 10.1021/bi7001696. Epub 2007 May 31.

Abstract

How dihydropyridines modulate L-type voltage-gated Ca2+ channels is not known. Dihydropyridines bind cooperatively with Ca2+ binding to the selectivity filter, suggesting that they alter channel activity by promoting structural rearrangements in the pore. We used radioligand binding and patch-clamp electrophysiology to demonstrate that calcicludine, a toxin from the venom of the green mamba snake, binds in the outer vestibule of the pore and, like Ca2+, is a positive modulator of dihydropyridine binding. Data were fit using an allosteric scheme where dissociation constants for dihydropyridine and calcicludine binding, KDHP and KCaC, are linked via the coupling factor, alpha. Nine acidic amino acids located within the S5-Pore-helix segment of repeat III were sequentially changed to alanine in groups of three, resulting in the mutant channels, Mut-A, Mut-B, and Mut-C. Mut-A, whose substitutions are proximal to IIIS5, exhibits a 4.5-fold reduction in dihydropyridine binding and is insensitive to calcicludine binding. Block of Mut-A currents by calcicludine is indistinguishable from wild-type, indicating that KCaC is unchanged and that the coupling between dihydropyridine and calcicludine binding (i.e., alpha) is disrupted. Mut-B and Mut-C possess KDHP values that resemble that of the wild type. Mut-C, the most C-terminal of the mutant channels, is insensitive to calcicludine binding and block. KCaC values for the Mut-C single mutants, E1122A, D1127A, and D1129A, increase from 0.3 (wild type) to 1.14, 2.00, and 20.5 microM, respectively. Together, these findings suggest that dihydropyridine antagonist and calcicludine binding to L-type Ca2+ channels promote similar structural changes in the pore that stabilize the channel in a nonconducting, blocked state.

摘要

二氢吡啶如何调节L型电压门控Ca2+通道尚不清楚。二氢吡啶与Ca2+协同结合至选择性过滤器,这表明它们通过促进孔道中的结构重排来改变通道活性。我们使用放射性配体结合和膜片钳电生理学来证明,钙通道阻断肽(一种来自绿曼巴蛇毒液的毒素)结合在孔道的外前庭,并且与Ca2+一样,是二氢吡啶结合的正调节剂。数据使用变构模型进行拟合,其中二氢吡啶和钙通道阻断肽结合的解离常数KDHP和KCaC通过偶联因子α相连。位于重复III的S5-孔螺旋段内的九个酸性氨基酸依次三个一组地替换为丙氨酸,产生了突变通道Mut-A、Mut-B和Mut-C。Mut-A的替换靠近IIIS5,其二氢吡啶结合减少4.5倍,且对钙通道阻断肽结合不敏感。钙通道阻断肽对Mut-A电流的阻断与野生型无差异,表明KCaC未改变,且二氢吡啶与钙通道阻断肽结合之间的偶联(即α)被破坏。Mut-B和Mut-C的KDHP值与野生型相似。Mut-C是突变通道中最靠近C端的,对钙通道阻断肽结合和阻断不敏感。Mut-C单突变体E1122A、D1127A和D1129A的KCaC值分别从0.3(野生型)增加到1.14、2.00和20.5 microM。总之,这些发现表明二氢吡啶拮抗剂和钙通道阻断肽与L型Ca2+通道的结合促进了孔道中类似的结构变化,从而将通道稳定在非传导、阻断状态。

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