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大电导钙激活钾通道门控环与树突毒素的相互作用。

Interaction of the BKCa channel gating ring with dendrotoxins.

作者信息

Takacs Zoltan, Imredy John P, Bingham Jon-Paul, Zhorov Boris S, Moczydlowski Edward G

机构信息

a ToxinTech. ; New York , NY USA.

出版信息

Channels (Austin). 2014;8(5):421-32. doi: 10.4161/19336950.2014.949186.

Abstract

Two classes of small homologous basic proteins, mamba snake dendrotoxins (DTX) and bovine pancreatic trypsin inhibitor (BPTI), block the large conductance Ca(2+)-activated K(+) channel (BKCa, KCa1.1) by production of discrete subconductance events when added to the intracellular side of the membrane. This toxin-channel interaction is unlikely to be pharmacologically relevant to the action of mamba venom, but as a fortuitous ligand-protein interaction, it has certain biophysical implications for the mechanism of BKCa channel gating. In this work we examined the subconductance behavior of 9 natural dendrotoxin homologs and 6 charge neutralization mutants of δ-dendrotoxin in the context of current structural information on the intracellular gating ring domain of the BKCa channel. Calculation of an electrostatic surface map of the BKCa gating ring based on the Poisson-Boltzmann equation reveals a predominantly electronegative surface due to an abundance of solvent-accessible side chains of negatively charged amino acids. Available structure-activity information suggests that cationic DTX/BPTI molecules bind by electrostatic attraction to site(s) on the gating ring located in or near the cytoplasmic side portals where the inactivation ball peptide of the β2 subunit enters to block the channel. Such an interaction may decrease the apparent unitary conductance by altering the dynamic balance of open versus closed states of BKCa channel activation gating.

摘要

两类小的同源碱性蛋白,曼巴蛇树突毒素(DTX)和牛胰蛋白酶抑制剂(BPTI),当添加到细胞膜内侧时,通过产生离散的亚电导事件来阻断大电导钙激活钾通道(BKCa,KCa1.1)。这种毒素 - 通道相互作用在药理学上可能与曼巴蛇毒的作用无关,但作为一种偶然的配体 - 蛋白质相互作用,它对BKCa通道门控机制具有一定的生物物理意义。在这项工作中,我们在BKCa通道细胞内门控环结构域的当前结构信息背景下,研究了9种天然树突毒素同系物和δ - 树突毒素的6种电荷中和突变体的亚电导行为。基于泊松 - 玻尔兹曼方程计算BKCa门控环的静电表面图,结果显示由于大量带负电荷氨基酸的溶剂可及侧链,其表面主要呈电负性。现有的构效关系信息表明,阳离子DTX/BPTI分子通过静电吸引与门控环上位于细胞质侧孔口内或附近的位点结合,β2亚基的失活球肽进入该孔口以阻断通道。这种相互作用可能通过改变BKCa通道激活门控的开放与关闭状态之间的动态平衡来降低表观单位电导。

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