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Anticipating time-dependent antigenic variants of influenza A (H3N2) viruses

机译:预期流感A(H3N2)病毒的时间依赖性抗原变体

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摘要

Frequent variations in influenza vaccines are necessary to match antigenic variants which appear in influenza epidemics. Antigenic variants of influenza viruses result from frequent mutations in amino acid residues located on their hemagglutinin (HA) proteins. Knowledge of specific changes in these amino acids helps to characterize distinct antigenic variants. In this paper, statistical models are developed and used to investigate changes in amino acids which accompany antigenic variants of epidemiological importance. Amino acid sequences of the HA proteins of influenza A (H3N2) strains isolated from 1968 to 2015 were obtained. The sequences were aligned using Clustal Omega and the number of differences in amino acid residues located on annotated positions of antigenic sites of the HA protein between pairs of strains were determined. These were linked in the statistical models and used to assess the relationship between any pair of influenza strains. The results revealed that both antigenic similarity between strains and the amino acid changes are affected by the time of isolation of the strains. Furthermore, the models predicted that rates of changes in amino acids located on the antigenic sites ranged between 5% and 6% per site per year. The findings of the study suggest that time-dependent antigenic variants of influenza A (H3N2) strains may occur as they evolve. The study has the potential to greatly improve influenza surveillance in as much as it supports vaccine designs.
机译:流感疫苗的频繁变化是匹配流感流行病学中出现的抗原变异的常见变化。流感病毒的抗原变体由位于其血凝素(HA)蛋白的氨基酸残基中的频繁突变产生。这些氨基酸的特定变化的知识有助于表征明显的抗原变异。在本文中,开发统计模型并用于研究伴随流行病学重要性的抗原变异的氨基酸的变化。得到了从1968〜2015年分离的流感A(H3N2)菌株的HA蛋白的氨基酸序列。测定序列使用聚氨ω对齐,测定位于HA蛋白对菌株对抗原位点的注释位置的氨基酸残基的差异。这些在统计模型中链接,并用于评估任何一对流感菌株之间的关系。结果表明,菌株和氨基酸变化之间的抗原相似度受菌株的分离时的影响。此外,该模型预测,位于抗原位点的氨基酸中的变化率范围为每年5%至6%。该研究的发现表明,在进化时可能会发生流感A(H3N2)菌株的时间依赖性抗原性变体。该研究有可能大大提高流感监测,因为它支持疫苗设计。

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