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诺氏毒素三维溶液结构的测定:与相关短链蝎毒素的结构差异分析。

Determination of the three-dimensional solution structure of noxiustoxin: analysis of structural differences with related short-chain scorpion toxins.

作者信息

Dauplais M, Gilquin B, Possani L D, Gurrola-Briones G, Roumestand C, Ménez A

机构信息

Département d'Ingénierie et d'Etude des Protéines, CE-Saclay, Gif-sur-Yvette, France.

出版信息

Biochemistry. 1995 Dec 26;34(51):16563-73. doi: 10.1021/bi00051a004.

DOI:10.1021/bi00051a004
PMID:8527429
Abstract

The 3D structure of noxiustoxin, the first identified scorpion toxin acting on K+ channels, has been elucidated by NMR and molecular modeling. Thirty-nine solution structures were calculated using 572 distance and 42 dihedral restraints. The average atomic rms deviation between the refined structures and the mean structure is 0.75 A for the backbone atoms. Noxiustoxin adopts a alpha/beta scaffold constituted of a three-stranded beta-sheet (residues 2-3, 25-30, 33-38) linked to a helix (residues 10-20) through two disulfide bridges. A comparison between the 3D structure of noxiustoxin and those of other structurally and functionally related scorpion toxins (charybdotoxin, PO5-NH2, kaliotoxin) revealed a bending capacity of the helix and a variability in the relative orientations between the helix and the beta-sheet. These two features highlight the plasticity of the alpha/beta scaffold and offer a structural explanation for the capacity of the fold to accommodate an additional alanine residue in the Gly-x-Cys pattern of a previously proposed consensus sequence [Bontems et al. (1991) Science 254, 1521-1523]. Our structural data also emphasize the possibility that the beta-sheet of NTX is implicated in the capacity of NTX to recognize voltage-dependent K+ channels.

摘要

最早被鉴定出作用于钾离子通道的蝎毒素——noxiustoxin的三维结构已通过核磁共振(NMR)和分子建模得以阐明。利用572个距离约束和42个二面角约束计算出了39个溶液结构。对于主链原子,优化后的结构与平均结构之间的平均原子均方根偏差为0.75埃。Noxiustoxin采用α/β支架结构,由一个三链β折叠(残基2 - 3、25 - 30、33 - 38)通过两个二硫键连接到一个螺旋(残基10 - 20)组成。将noxiustoxin的三维结构与其他结构和功能相关的蝎毒素(蝎毒氯通道毒素、PO5 - NH2、钾离子通道阻断毒素)的三维结构进行比较,发现螺旋具有弯曲能力,并且螺旋与β折叠之间的相对取向存在变异性。这两个特征突出了α/β支架的可塑性,并为该折叠结构在先前提出的共有序列[Bontems等人(1991年)《科学》254, 1521 - 1523]的Gly - x - Cys模式中容纳一个额外丙氨酸残基的能力提供了结构上的解释。我们的结构数据还强调了NTX的β折叠可能与NTX识别电压依赖性钾离子通道的能力有关。

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