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Antigenic structure of the flavivirus envelope protein E at the molecular level using tick-borne encephalitis virus as a model.

机译:使用tick传脑炎病毒作为模型黄病毒包膜蛋白E在分子水平上的抗原结构。

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摘要

A model of the tick-borne encephalitis virus envelope protein E is presented that contains information on the structural organization of this flavivirus protein and correlates epitopes and antigenic domains to defined sequence elements. It thus reveals details of the structural and functional characteristics of the corresponding protein domains. The localization of three antigenic domains (composed of 16 distinct epitopes) within the primary structure was performed by (i) amino-terminal sequencing of three immunoreactive fragments of protein E and (ii) sequencing the protein E-coding regions of seven antigenic variants of tick-borne encephalitis virus that had been selected in the presence of neutralizing monoclonal antibodies directed against the E protein. Further information about variable and conserved regions was obtained by a comparative computer analysis of flavivirus E protein amino acid sequences. The search for potential T-cell determinants revealed at least one sequence compatible with an amphipathic alpha-helix which is conserved in all flaviviruses sequenced so far. By combining these data with those on the location of disulfide bridges (T. Nowak and G. Wengler, Virology 156:127-137, 1987) and the structural characteristics of epitopes, such as dependency on conformation or on intact disulfide bridges or both, a model was established that goes beyond the location of epitopes in the primary sequence and reveals features of the folding of the polypeptide chain, including the generation of discontinuous protein domains.
机译:提出了the传播性脑炎病毒包膜蛋白E的模型,该模型包含有关该黄病毒蛋白的结构组织的信息,并将表位和抗原域与定义的序列元件相关。因此,它揭示了相应蛋白质结构域的结构和功能特征的细节。通过(i)蛋白质E的三个免疫反应片段的氨基末端测序和(ii)测序7个抗原性变体的蛋白质E编码区来对一级结构中的三个抗原结构域(由16个不同的表位组成)进行定位。在存在针对E蛋白的中和性单克隆抗体的情况下选择的传脑炎病毒。通过对黄病毒E蛋白氨基酸序列进行比较计算机分析,可以获得有关可变区和保守区的更多信息。对潜在T细胞决定簇的搜索揭示了至少一种与两亲性α-螺旋相容的序列,该序列在迄今为止所有测序的黄病毒中都是保守的。通过将这些数据与二硫键桥的位置数据相结合(T. Nowak和G. Wengler,Virology 156:127-137,1987)和表位的结构特征,例如对构象的依赖性或对完整的二硫键桥的依赖,或两者兼而有之,建立了一个模型,该模型超出了一级序列中表位的位置,并揭示了多肽链折叠的特征,包括不连续蛋白质结构域的产生。

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