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P01的溶液结构,一种结构上类似于对蜂毒明肽敏感钾通道特异的蝎毒素的天然蝎肽。

Solution structure of P01, a natural scorpion peptide structurally analogous to scorpion toxins specific for apamin-sensitive potassium channel.

作者信息

Blanc E, Fremont V, Sizun P, Meunier S, Van Rietschoten J, Thevand A, Bernassau J M, Darbon H

机构信息

LCCMB, URA 1296, CNRS IFRC1, Marseille, France.

出版信息

Proteins. 1996 Mar;24(3):359-69. doi: 10.1002/(SICI)1097-0134(199603)24:3<359::AID-PROT9>3.0.CO;2-B.

Abstract

The venom of the North African scorpion Androctonus mauretanicus mauretanicus possesses numerous highly active neurotoxins that specifically bind to various ion channels. One of these, P05, has been found to bind specifically to calcium-activated potassium channels and also to compete with apamin, a toxin extracted from bee venom. Besides the highly potent ones, several of these peptides (including that of P01) have been purified and been found to possess only a very weak, although significant, activity in competition with apamin. The amino acid sequence of P01 shows that it is shorter than P05 by two residues. This deletion occurs within an alpha-helix stretch (residues 5-12). This alpha-helix has been shown to be involved in the interaction of P05 with its receptor via two arginine residues. These two arginines are absent in the P01 sequence. Furthermore, a proline residue in position 7 of the P01 sequence may act as an alpha-helix breaker. We have determined the solution structure of P01 by conventional two-dimensional 1H nuclear magnetic resonance and show that 1) the proline residue does not disturb the alpha-helix running from residues 5 to 12; 2) the two arginines are topologically replaced by two acidic residues, which explains the drop in activity; 3) the residual binding activity may be due to the histidine residue in position 9; and 4) the overall secondary structure is conserved, i.e., an alpha-helix running from residues 5 to 12, two antiparallel stretches of beta-sheet (residues 15-20 and 23-27) connected by a type I' beta-turn, and three disulfide bridges connecting the alpha-helix to the beta-sheet.

摘要

北非蝎子马氏钳蝎的毒液含有多种高度活跃的神经毒素,这些毒素能特异性地结合到各种离子通道上。其中一种毒素P05,已被发现能特异性地结合钙激活钾通道,并且还能与从蜂毒中提取的毒素蜂毒明肽竞争。除了高效的毒素外,其中几种肽(包括P01)已被纯化,并且发现它们在与蜂毒明肽竞争时仅具有非常微弱但显著的活性。P01的氨基酸序列表明它比P05短两个残基。这种缺失发生在一个α螺旋区域(第5 - 12位残基)内。已证明这个α螺旋通过两个精氨酸残基参与P05与其受体的相互作用。这两个精氨酸在P01序列中不存在。此外,P01序列第7位的脯氨酸残基可能起到α螺旋破坏者的作用。我们通过传统的二维1H核磁共振确定了P01的溶液结构,并表明:1)脯氨酸残基不会干扰从第5位到第12位残基的α螺旋;2)两个精氨酸在拓扑结构上被两个酸性残基取代,这解释了活性的下降;3)残余的结合活性可能归因于第9位的组氨酸残基;4)整体二级结构是保守的,即从第5位到第12位残基的α螺旋、由I'型β转角连接的两个反平行β折叠片段(第15 - 20位和第23 - 27位残基),以及连接α螺旋和β折叠的三个二硫键。

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