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Identification of amino acids in highly pathogenic avian influenza H5N1 virus hemagglutinin that determine avian influenza species specificity

机译:鉴定高致病性禽流感H5N1病毒血凝素中的氨基酸,以确定禽流感物种的特异性

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To test the role of neutralizing antibodies (nAbs) and receptor adaptation in interspecies transmission of influenza virus, two H5N1 strains, isolated from human and avian hosts, with four amino acid differences in hemagglutinin (HA) and seven HA mutations were studied. We found that a mutation at amino acid position 90 in the H5N1 HA, outside the receptor-binding domain (RBD), could simultaneously induce changes in the RBD conformation to escape from nAb binding and alter the receptor preference through long-range regulation. This mutation was deemed a “key event” for interspecies transmission. It is likely a result of positive selection caused by antibodies, allowing the original invasion by new species-specific variants. A mutation at amino acid position 160 in the RBD only induced a change in receptor preference. This mutation was deemed a “maintaining adaptation”, which ensured that influenza virus variants would be able to infect new organisms of a different species successfully. The mutation is the result of adaptation caused by the receptor. Our results suggest that continuing occurrence of these two types of mutations made the variants persist in the new host species.
机译:为了测试中和抗体(nAbs)和受体适应性在流感病毒种间传播中的作用,研究了从人和禽类宿主分离的两个H5N1菌株,其中血凝素(HA)有四个氨基酸差异,并且有七个HA突变。我们发现,在受体结合域(RBD)外部的H5N1 HA氨基酸位置90处的突变可同时诱导RBD构象变化,以逃避nAb结合并通过远程调节改变受体偏好。这种突变被认为是种间传播的“关键事件”。这可能是抗体引起的阳性选择的结果,从而允许新物种特异性变体最初入侵。 RBD中氨基酸位置160处的突变仅引起受体偏好的改变。该突变被认为是“保持适应性”,可确保流感病毒变种能够成功感染其他物种的新生物。突变是受体引起的适应的结果。我们的结果表明,这两种类型突变的持续发生使得这些变体在新的宿主物种中持续存在。

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