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来自墨西哥毒蝎(Centruroides noxius Hoffmann)的毒素2的溶液结构,一种作用于钠通道的β-蝎神经毒素。

Solution structure of toxin 2 from centruroides noxius Hoffmann, a beta-scorpion neurotoxin acting on sodium channels.

作者信息

Pintar A, Possani L D, Delepierre M

机构信息

Nuclear Magnetic Resonance Laboratory, URA1129 Aids-Retrovirus Department, Pasteur Institute, 28 Rue du Dr Roux, Paris, 75015, France.

出版信息

J Mol Biol. 1999 Mar 26;287(2):359-67. doi: 10.1006/jmbi.1999.2611.

Abstract

We have determined the solution structure of Cn2, a beta-toxin extracted from the venom of the New World scorpion Centruroides noxius Hoffmann. Cn2 belongs to the family of scorpion toxins that affect the sodium channel activity, and is very toxic to mammals (LD50=0.4 microg/20 g mouse mass). The three-dimensional structure was determined using 1H-1H two-dimensional NMR spectroscopy, torsion angle dynamics, and restrained energy minimization. The final set of 15 structures was calculated from 876 experimental distance constraints and 58 angle constraints. The structures have a global r. m.s.d. of 1.38 A for backbone atoms and 2.21 A for all heavy atoms. The overall fold is similar to that found in the other scorpion toxins acting on sodium channels. It is made of a triple-stranded antiparallel beta-sheet and an alpha-helix, and is stabilized by four disulfide bridges. A cis-proline residue at position 59 induces a kink of the polypeptide chain in the C-terminal region. The hydrophobic core of the protein is made up of residues L5, V6, L51, A55, and by the eight cysteine residues. A hydrophobic patch is defined by the aromatic residues Y4, Y40, Y42, W47 and by V57 on the side of the beta-sheet facing the solvent. A positively charged patch is formed by K8 and K63 on one edge of the molecule in the C-terminal region. Another positively charged spot is represented by the highly exposed K35. The structure of Cn2 is compared with those of other scorpion toxins acting on sodium channels, in particular Aah II and CsE-v3. This is the first structural report of an anti-mammal beta-scorpion toxin and it provides the necessary information for the design of recombinant mutants that can be used to probe structure-function relationships in scorpion toxins affecting sodium channel activity.

摘要

我们已经确定了Cn2的溶液结构,Cn2是一种从新大陆蝎子墨西哥雕像木蝎(Centruroides noxius Hoffmann)毒液中提取的β-毒素。Cn2属于影响钠通道活性的蝎毒素家族,对哺乳动物毒性很强(半数致死量LD50 = 0.4微克/20克小鼠体重)。利用1H-1H二维核磁共振波谱、扭转角动力学和受限能量最小化方法确定了其三维结构。最终的15个结构是根据876个实验距离约束和58个角度约束计算得出的。这些结构的主链原子全局均方根偏差为1.38 Å,所有重原子的全局均方根偏差为2.21 Å。其整体折叠结构与其他作用于钠通道的蝎毒素相似。它由一个三股反平行β-折叠片和一个α-螺旋组成,并通过四个二硫键稳定。59位的顺式脯氨酸残基在C端区域诱导多肽链出现一个扭结。蛋白质的疏水核心由L5、V6、L51、A55残基以及八个半胱氨酸残基组成。一个疏水斑块由β-折叠片面向溶剂一侧的芳香族残基Y4、Y40、Y42、W47和V57界定。一个带正电荷的斑块由C端区域分子一条边缘上的K8和K63形成。另一个带正电荷的位点由高度暴露的K35代表。将Cn2的结构与其他作用于钠通道的蝎毒素,特别是Aah II和CsE-v3的结构进行了比较。这是关于一种抗哺乳动物β-蝎毒素的首次结构报道,它为设计重组突变体提供了必要信息,这些重组突变体可用于探究影响钠通道活性的蝎毒素的结构-功能关系。

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