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蛋白质抗原性的静态可及性模型:以蝎子神经毒素为例

Static accessibility model of protein antigenicity: the case of scorpion neurotoxin.

作者信息

Novotný J, Haber E

出版信息

Biochemistry. 1986 Nov 4;25(22):6748-54. doi: 10.1021/bi00370a004.

DOI:10.1021/bi00370a004
PMID:2432922
Abstract

Scorpion neurotoxins are a family of homologous, 64 to 65 residue containing proteins with four invariant disulfide bridges. Previous experimental work established four antigenic epitopes in the Androctonus australis neurotoxin and localized them in the amino acid sequence. Using crystallographic coordinates of the Centruroides sculpturatus neurotoxin and computing its large sphere (radius 1 nm or 10 A) accessibility profiles, we identified six antigenic sites clustered into four surface regions. Three of four computed sites coincided with the epitopes identified and localized experimentally in the A. australis neurotoxin, while two of the computed sites partially overlapped the fourth epitope. To investigate the relationship between antigenicity and segmental flexibility, 8-ps molecular dynamics simulations were performed on the C. sculpturatus structure, average backbone temperature factors computed from the simulation, and results compared with the X-ray-derived B values. Most of the neurotoxin structure and, in particular, three of the four antigenic sites were found inflexible, as judged by the computed and/or crystallographic temperature factors. The remaining epitope was associated with only marginal above-average maxima of backbone B values, corresponding to root mean square atomic displacements of 0.5 A (50 pm). We conclude that neurotoxin antigenicity is determined by an exceptional surface exposure of relatively short loop segments and that segmental flexibility is not an essential component of antigenicity.

摘要

蝎神经毒素是一类同源蛋白质家族,含有64至65个氨基酸残基,并具有四个不变的二硫键。先前的实验工作在澳大利亚杀人蝎神经毒素中确定了四个抗原表位,并将它们定位在氨基酸序列中。利用粗尾蝎神经毒素的晶体学坐标并计算其大球体(半径1纳米或10埃)可及性图谱,我们确定了六个抗原位点,它们聚集在四个表面区域。计算出的四个位点中的三个与在澳大利亚杀人蝎神经毒素中通过实验确定和定位的表位一致,而计算出的两个位点部分重叠第四个表位。为了研究抗原性与片段柔韧性之间的关系,对粗尾蝎结构进行了8皮秒的分子动力学模拟,计算了模拟得到的平均主链温度因子,并将结果与X射线衍生的B值进行比较。根据计算和/或晶体学温度因子判断,大多数神经毒素结构,特别是四个抗原位点中的三个是刚性的。其余的表位仅与略高于平均水平的主链B值最大值相关,对应于0.5埃(50皮米)的均方根原子位移。我们得出结论,神经毒素的抗原性由相对较短的环段异常的表面暴露决定,并且片段柔韧性不是抗原性的必要组成部分。

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