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Genetic evolution of the neuraminidase of influenza a (H3N2) viruses from 1968 to 2009 and its correspondence to haemagglutinin evolution

机译:1968年至2009年甲型H3N2流感病毒神经氨酸酶的遗传进化及其与血凝素进化的对应关系

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摘要

textabstractEach year, influenza viruses cause epidemics by evading pre-existing humoral immunity through mutations in the major glycoproteins: the haemagglutinin (HA) and the neuraminidase (NA). In 2004, the antigenic evolution of HA of human influenza A (H3N2) viruses was mapped (Smith et al., Science 305, 371-376, 2004) from its introduction in humans in 1968 until 2003. The current study focused on the genetic evolution of NA and compared it with HA using the dataset of Smith and colleagues, updated to the epidemic of the 2009/2010 season. Phylogenetic trees and genetic maps were constructed to visualize the genetic evolution of NA and HA. The results revealed multiple reassortment events over the years. Overall rates of evolutionary change were lower for NA than for HA1 at the nucleotide level. Selection pressures were estimated, revealing an abundance of negatively selected sites and sparse positively selected sites. The differences found between the evolution of NA and HA1 warrant further analysis of the evolution of NA at the phenotypic level, as has been done previously for HA.
机译:每年,流感病毒通过主要糖蛋白(血凝素(HA)和神经氨酸酶(NA))的突变逃避预先存在的体液免疫而引起流行病。 2004年,绘制了人类A型流感(H3N2)病毒HA的抗原进化图(Smith等人,Science 305,371-376,2004),此图谱自1968年引入人类以来一直持续到2003年。目前的研究重点是遗传NA的进化,并使用Smith和同事的数据集将其与HA进行了比较,并更新为2009/2010赛季的流行病。系统发育树和遗传图谱被构建以可视化NA和HA的遗传进化。结果显示这些年来发生了多次重配事件。在核苷酸水平上,NA的进化变化总体速率低于HA1。估计选择压力,揭示出大量的阴性选择位点和稀疏的阳性选择位点。 NA和HA1进化之间发现的差异,需要像以前对HA所做的那样,在表型水平上进一步分析NA的进化。

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