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一种新型的钾离子通道芋螺肽配体。

A novel conus peptide ligand for K+ channels.

作者信息

Ferber Michael, Sporning Annett, Jeserich Gunnar, DeLaCruz Richard, Watkins Maren, Olivera Baldomero M, Terlau Heinrich

机构信息

AG Molekulare und Zelluläre Neuropharmakologie, Max-Planck-Institut für Experimentelle Medizin, Hermann-Rein-Str. 3, D-37075 Göttingen, Germany.

出版信息

J Biol Chem. 2003 Jan 24;278(4):2177-83. doi: 10.1074/jbc.M205953200. Epub 2002 Oct 23.

Abstract

Voltage-gated ion channels determine the membrane excitability of cells. Although many Conus peptides that interact with voltage-gated Na(+) and Ca(2+) channels have been characterized, relatively few have been identified that interact with K(+) channels. We describe a novel Conus peptide that interacts with the Shaker K(+) channel, kappaM-conotoxin RIIIK from Conus radiatus. The peptide was chemically synthesized. Although kappaM-conotoxin RIIIK is structurally similar to the mu-conotoxins that are sodium channel blockers, it does not affect any of the sodium channels tested, but blocks Shaker K(+) channels. Studies using Shaker K(+) channel mutants with single residue substitutions reveal that the peptide interacts with the pore region of the channel. Introduction of a negative charge at residue 427 (K427D) greatly increases the affinity of the toxin, whereas the substitutions at two other residues, Phe(425) and Thr(449), drastically reduced toxin affinity. Based on the Shaker results, a teleost homolog of the Shaker K(+) channel, TSha1 was identified as a kappaM-conotoxin RIIIK target. Binding of kappaM-conotoxin RIIIK is state-dependent, with an IC(50) of 20 nm for the closed state and 60 nm at 0 mV for the open state of TSha1 channels.

摘要

电压门控离子通道决定细胞的膜兴奋性。尽管许多与电压门控钠通道和钙通道相互作用的芋螺肽已得到表征,但与钾通道相互作用的芋螺肽相对较少。我们描述了一种与Shaker钾通道相互作用的新型芋螺肽,即来自辐射芋螺的κM-芋螺毒素RIIIK。该肽是化学合成的。尽管κM-芋螺毒素RIIIK在结构上与作为钠通道阻滞剂的μ-芋螺毒素相似,但它对所测试的任何钠通道均无影响,却能阻断Shaker钾通道。使用具有单个残基取代的Shaker钾通道突变体进行的研究表明,该肽与通道的孔区域相互作用。在残基427(K427D)处引入负电荷可大大增加毒素的亲和力,而另外两个残基Phe(425)和Thr(449)的取代则大幅降低了毒素亲和力。基于对Shaker钾通道的研究结果,鉴定出一种硬骨鱼Shaker钾通道的同源物TSha1是κM-芋螺毒素RIIIK的作用靶点。κM-芋螺毒素RIIIK的结合具有状态依赖性,对于TSha1通道的关闭状态,其半数抑制浓度(IC50)为20 nM,在0 mV时对于开放状态为60 nM。

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