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哺乳动物钾通道上的α-树眼镜蛇毒素印记。

The alpha-dendrotoxin footprint on a mammalian potassium channel.

作者信息

Tytgat J, Debont T, Carmeliet E, Daenens P

机构信息

Laboratory of Toxicology, University of Leuven, Belgium.

出版信息

J Biol Chem. 1995 Oct 20;270(42):24776-81. doi: 10.1074/jbc.270.42.24776.

Abstract

alpha-Dendrotoxin, a 59-amino acid basic peptide from the venom of Dendroaspis angusticeps (green mamba snake), potently blocks some but not all voltage-dependent potassium channels. Here we have investigated the relative contribution of the individual alpha-subunits constituting functional Kv1.1 potassium channels to alpha-dentroxin binding. Three residues critical for alpha-dentrotoxin binding and located in the loop between domains S5 and S6 were mutated (A352P, E353S, and Y379H), and multimeric cDNAs were constructed encoding homo- and heterotetrameric channels composed of all possible ratios of wild-type and mutant alpha-subunits. Complete mutant channels were about 200-fold less sensitive for the alpha-dendrotoxin block than complete wild-type channels, which is attributable to a smaller association rate. Analysis of the bimolecular reaction between alpha-dendrotoxin and the different homo- and heteromeric channel constructs revealed that the association rate depends on the number of wild-type alpha-subunits in the functional channel. Furthermore, we observed a linear relationship between the number of wild-type alpha-subunits in functional channels and the free energy for alpha-dendrotoxin binding, providing evidence that all four alpha-subunits must interact with alpha-dendrotoxin to produce a high affinity binding site.

摘要

α-树突毒素是一种由绿曼巴蛇(Dendroaspis angusticeps)毒液中提取的含59个氨基酸的碱性肽,它能有效阻断部分而非全部电压依赖性钾通道。在此,我们研究了构成功能性Kv1.1钾通道的各个α亚基对α-树突毒素结合的相对贡献。对位于结构域S5和S6之间的环中、对α-树突毒素结合至关重要的三个残基进行了突变(A352P、E353S和Y379H),并构建了多聚体cDNA,编码由野生型和突变型α亚基的所有可能比例组成的同型和异型四聚体通道。完整的突变型通道对α-树突毒素阻断的敏感性比完整的野生型通道低约200倍,这归因于较小的结合速率。对α-树突毒素与不同的同型和异型通道构建体之间的双分子反应分析表明,结合速率取决于功能性通道中野生型α亚基的数量。此外,我们观察到功能性通道中野生型α亚基的数量与α-树突毒素结合的自由能之间存在线性关系,这表明所有四个α亚基必须与α-树突毒素相互作用才能产生高亲和力结合位点。

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