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基于对称性寻找蝎毒素与电压门控钾通道中的静电相互作用伙伴。

A symmetry-driven search for electrostatic interaction partners in charybdotoxin and a voltage-gated K+ channel.

作者信息

Naini A A, Miller C

机构信息

Howard Hughes Medical Institute, Graduate Department of Biochemistry, Brandeis University, Waltham, Massachusetts 02254-9110, USA.

出版信息

Biochemistry. 1996 May 21;35(20):6181-7. doi: 10.1021/bi960067s.

Abstract

A structural model of charybdotoxin bound to a Shaker K+ channel has emerged from mechanistic and mutagenic analysis of toxin-channel interactions. We test this model by predicting through-space electrostatic interactions between specific pairs of channel-toxin residues. Dissociation constants of channel-toxin variants, determined by radiolabeled toxin binding to Shaker-transfected COS membrane fragments, were used to identify pairs of residues located closely enough to interact electrostatically. The results further refine the structural model of the bound complex and produce a more detailed view of the vestibule of the Shaker channel.

摘要

通过对毒素-通道相互作用的机制和诱变分析,已经得出了与摇蚊钾通道结合的炭疽毒素的结构模型。我们通过预测特定通道-毒素残基对之间的空间静电相互作用来测试该模型。通过放射性标记毒素与转染了摇蚊基因的COS细胞膜片段结合来确定通道-毒素变体的解离常数,以此来识别距离足够近从而能够发生静电相互作用的残基对。这些结果进一步完善了结合复合物的结构模型,并对摇蚊通道的前庭产生了更详细的认识。

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