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Ca2+激活的钾通道与在中心相互作用残基处发生突变的重折叠蝎毒素的相互作用。

Interaction of Ca2(+)-activated K+ channels with refolded charybdotoxins mutated at a central interaction residue.

作者信息

Naini A A, Shimony E, Kozlowski E, Shaikh T, Dang W, Miller C

机构信息

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

出版信息

Neuropharmacology. 1996;35(7):915-21. doi: 10.1016/0028-3908(96)00112-8.

Abstract

Charybdotoxin is a small peptide blocker of K+ channels, rigidly held in active conformation by three disulfide bonds. The toxin blocks K+ channels by binding to a receptor site located at the external "vestibule", and thus physically occluding the outer opening of the K+ conduction pore. In the blocked complex, K27, a residue on the toxin's molecular surface, projects its epsilon-amino group into the K(+)-selective pore. The results here show that CTX, produced by heterologous expression in E. coli, may be manipulated to place unnatural positively charged residues at position 27. The toxin folds faithfully to its native conformation when the crucial lysine at position 27 is replaced by a cysteine residue, a maneuver that allows specific chemical modification of this side-chain. Replacements of K27 by side-chains slightly shorter or slightly longer than lysine yield active toxins. The toxin variant with ornithine at this position interacts much less strongly with K+ ions in the pore of slowpoke-type Ca2(+)-activated K+ channels than does wild-type toxin. This result argues that the epsilon-amino group of K27 in bound toxin lies only a few ångstroms away from a K+ ion occupying the blocked pore. The peptide folds with high efficiency to form the correct disulfides even in the presence of strong denaturants.

摘要

蝎毒素是一种钾离子通道的小肽阻断剂,通过三个二硫键牢固地保持在活性构象。该毒素通过与位于外部“前庭”的受体位点结合来阻断钾离子通道,从而物理性地封闭钾离子传导孔的外部开口。在被阻断的复合物中,毒素分子表面的一个残基K27将其ε-氨基伸入钾离子选择性孔中。此处的结果表明,通过在大肠杆菌中异源表达产生的CTX可以被操控,以便在第27位引入非天然的带正电荷残基。当第27位的关键赖氨酸被半胱氨酸残基取代时,该毒素能忠实地折叠成其天然构象,这一操作允许对该侧链进行特定的化学修饰。用比赖氨酸稍短或稍长的侧链取代K27会产生有活性的毒素。该位置带有鸟氨酸的毒素变体与慢poke型钙激活钾离子通道孔中的钾离子的相互作用比野生型毒素弱得多。这一结果表明,结合态毒素中K27的ε-氨基距离占据被阻断孔的钾离子仅几埃。即使在存在强变性剂的情况下,该肽也能高效折叠形成正确的二硫键。

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