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Comparative Sequence Analysis of the Hexon Gene in the Entire Spectrum of Human Adenovirus Serotypes: Phylogenetic, Taxonomic, and Clinical Implications

机译:人类腺病毒血清型全谱中六邻体基因的比较序列分析:系统发育,分类学和临床意义

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摘要

The adenovirus (AdV) hexon constitutes the major virus capsid protein. The epitopes located on the hexon protein are targets of neutralizing antibodies in vivo, serve in the recognition by cytotoxic T cells, and provide the basis for the classification of adenoviruses into the 51 serotypes known to date. We have sequenced the entire hexon gene from human serotypes with incomplete or no sequence information available (n = 34) and performed a comparative analysis of all sequences. The overall sequence divergence between the 51 human serotypes ranged from 0.7 to 25.4% at the protein level. The sequence information has been exploited to assess the phylogeny of the adenovirus family, and protein distances between the six AdV species (A to F) and among individual serotypes within each species were calculated. The analysis revealed that the differences among serotypes within individual species range from 0.3 to 5.4% in the conserved regions (765 amino acids [aa]) and from 1.5 to 59.6% in the variable regions (154 to 221 aa). Serotypes of different species showed an expectedly greater divergence both in the conserved (5.9 to 12.3%) and variable (49.0 to 74.7%) regions. Construction of a phylogenetic tree revealed three major clades comprising the species B+D+E, A+F, and C, respectively. For serotypes 50 and 51, the original assignment to species B and D, respectively, is not in accordance with the hexon DNA and protein sequence data, which placed serotype 50 within species D and serotype 51 within species B. Moreover, the hexon gene of serotype 16, a member of species B, was identified as the product of recombination between sequences of species B and E. In addition to providing a basis for improved molecular diagnostics and classification, the elucidation of the complete hexon gene sequence in all AdV serotypes yields information on putative epitopes for virus recognition, which may have important implications for future treatment strategies permitting efficient targeting of any AdV serotype.
机译:腺病毒(AdV)六邻体构成主要的病毒衣壳蛋白。位于六邻体蛋白上的表位是体内中和抗体的靶标,可被细胞毒性T细胞识别,并为腺病毒分类为迄今已知的51种血清型提供了基础。我们已经从人血清型中获得了不完整的序列信息或没有可用的序列信息(n = 34)对整个六邻体基因进行了测序,并对所有序列进行了比较分析。在蛋白质水平上,51种人类血清型之间的总体序列差异为0.7%至25.4%。已利用序列信息评估腺病毒家族的系统发育,并计算了六个AdV物种(A至F)之间以及每个物种内各个血清型之间的蛋白质距离。分析显示,在保守区(765个氨基酸[aa])中,单个物种内血清型之间的差异范围为0.3%至5.4%,而在可变区(154至221aa)中,血清型之间的差异为1.5%至59.6%。不同物种的血清型在保守区(5.9%至12.3%)和可变区(49.0%至74.7%)均显示出更大的差异。系统发育树的构建揭示了三个主要进化枝,分别包括物种B + D + E,A + F和C。对于血清型50和51,分别分配给物种B和D的原始分配与六邻体DNA和蛋白质序列数据不一致,后者将血清型50置于种D中,将血清型51置于物种B中。血清型16(物种B的成员)被确定为物种B和E的序列之间重组的产物。除了为改进分子诊断和分类提供基础之外,在所有AdV血清型中阐明完整的六邻体基因序列都可以产生有关用于病毒识别的假定表位的信息,这可能对允许有效靶向任何AdV血清型的未来治疗策略具有重要意义。

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