Center for Vaccines and Immunology, University of Georgia, Athens, GA, USA.
Department of Infectious Diseases, University of Georgia, Athens, GA USA.
Expert Rev Vaccines. 2021 May;20(5):519-526. doi: 10.1080/14760584.2021.1908135. Epub 2021 May 21.
: As the pathogen that caused the first influenza virus pandemic in this century, the swine-origin A(H1N1) pdm09 influenza virus has caused continuous harm to human public health. The evolution of hemagglutinin protein glycosylation sites, including the increase in number and positional changes, is an important way for influenza viruses to escape host immune pressure. Based on the traditional influenza virus molecular monitoring, special attention should be paid to the influence of glycosylation evolution on the biological characteristics of virus antigenicity, transmission and pathogenicity. The epidemiological significance of glycosylation mutants should be analyzed as a predictive tool for early warning of new outbreaks and pandemics, as well as the design of vaccines and drug targets.: We review on the evolutionary characteristics of glycosylation on the HA protein of the A(H1N1)pdm09 influenza virus in the last ten years.: We discuss the crucial impact of evolutionary glycosylation on the biological characteristics of the virus and the host immune responses, summarize studies revealing different roles of glycosylation play during host adaptation. Although these studies show the significance of glycosylation evolution in host-virus interaction, much remains to be discovered about the mechanism.
作为本世纪引发首次流感大流行的病原体,猪源 A(H1N1)pdm09 流感病毒不断危害人类公共健康。血凝素蛋白糖基化位点的进化,包括数量的增加和位置的改变,是流感病毒逃避宿主免疫压力的重要方式。在传统的流感病毒分子监测基础上,应特别关注糖基化进化对病毒抗原性、传播和致病性的生物学特征的影响。应将糖基化突变体的流行病学意义作为新暴发和大流行的预警预测工具,以及疫苗和药物靶点的设计。
本文综述了近十年来 A(H1N1)pdm09 流感病毒血凝素蛋白糖基化的进化特征。我们讨论了进化糖基化对病毒和宿主免疫反应的生物学特征的关键影响,总结了揭示宿主适应过程中糖基化不同作用的研究。尽管这些研究表明了糖基化进化在宿主-病毒相互作用中的重要性,但仍有许多关于其机制的问题有待发现。