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圆二色性、分子建模和血清学表明,口蹄疫病毒抗原变异的结构基础是α-螺旋的形成。

Circular dichroism, molecular modeling, and serology indicate that the structural basis of antigenic variation in foot-and-mouth disease virus is alpha-helix formation.

作者信息

France L L, Piatti P G, Newman J F, Toth I, Gibbons W A, Brown F

机构信息

Agricultural Research Service, Plum Island Animal Disease Center, Greenport, NY 11944-0848.

出版信息

Proc Natl Acad Sci U S A. 1994 Aug 30;91(18):8442-6. doi: 10.1073/pnas.91.18.8442.

Abstract

Seven antigenic variants obtained from a single field isolate of foot-and-mouth disease virus, serotype A12, differ only at residues 148 and 153 in the immunodominant loop of viral protein VP1. Synthetic peptides corresponding to the region 141-160 are highly immunogenic. UV circular dichroism shows that (i) in aqueous solution the peptides are nearly identical, but in 100% trifluoroethanol they display helix-forming properties which correlate well with their serological crossreactivities for anti-peptide sera, and (ii) these properties are insensitive to substitutions at position 153, except for proline, but are highly sensitive to substitutions at position 148. This pattern can be explained by the effects of these substitutions on the amphiphilic character and positions of helices postulated in the region 146-156. Molecular models indicate that residues 147, 148, 150, 151, 153-155, and 157 are most likely to interact with residues of the antibody paratopes. The data are consistent with the existence of an inverse gamma-turn around Pro-153, and a beta-turn at the cell-attachment site at residues 145-147.

摘要

从口蹄疫病毒A12血清型的单个田间分离株获得的7种抗原变体,仅在病毒蛋白VP1免疫显性环的第148和153位残基处存在差异。对应于141 - 160区域的合成肽具有高度免疫原性。紫外圆二色性表明:(i)在水溶液中这些肽几乎相同,但在100%三氟乙醇中它们表现出形成螺旋的特性,这与它们对抗肽血清的血清学交叉反应性密切相关;(ii)这些特性对第153位的取代不敏感,脯氨酸除外,但对第148位的取代高度敏感。这种模式可以通过这些取代对146 - 156区域假定的两亲性特征和螺旋位置的影响来解释。分子模型表明,第147、148、150、151、153 - 155和157位残基最有可能与抗体互补位的残基相互作用。数据与Pro - 153周围存在反向γ-转角以及第145 - 147位残基处细胞附着位点存在β-转角一致。

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