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Identification of epistatic mutations and insights into the evolution of the influenza virus using a mass-based protein phylogenetic approach

机译:使用质量基蛋白质系统发育方法识别植物生命型流感病毒演化的认识

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摘要

A mass-based protein phylogenetic approach developed in this laboratory has been applied to study mutation trends and identify consecutive or near-consecutive mutations typically associated with positive epistasis. While epistasis is thought to occur commonly during the evolution of viruses, the extent of epistasis in influenza, and its role in the evolution of immune escape and drug resistant mutants, remains to be systematically investigated. Here putative epistatic mutations within H3 hemagglutinin in type A influenza are identified where leading parent mutations were found to predominate within reported antigenic sites of the protein. Frequent subsequent mutations resided exclusively in different antigenic regions, providing the virus with a possible immune escape mechanism, or at other remote sites that drive beneficial protein structural and functional change. The results also enable a "small steps" evolutionary model to be proposed where the more frequent consecutive, or near-consecutive, non-conservative mutations exhibited less structural, and thus functional, change. This favours the evolutionary survival of the virus over mutations associated with more substantive change that may cause or risk its own extinction.
机译:在该实验室中开发的基于群众的蛋白质发育方法已被应用于研究突变趋势,并鉴定通常与阳性外观相关的连续或接近连续的突变。虽然被认为是在病毒演变期间发生的超越,但流感上的超声囊的程度以及其在免疫逃生和耐药突变体的演变中的作用仍有待系统地研究。这里鉴定了H3血凝素内的推定的认证突变在型流感中鉴定在蛋白质的报道抗原位点占主导地位母体突变。频繁的后续突变仅在不同的抗原区域中居住,提供具有可能免疫逃逸机制的病毒,或在驱动有益蛋白质结构和功能变化的其他偏远部位。结果还可以提出“小步骤”进化模型,其中提出更频繁的连续或接近连续的非保守突变表现出较少的结构,因此功能性的变化。这有利于与可能导致或冒其灭绝的更实质性变化相关的突变对病毒的进化存活。

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