School of Laboratory Medicine and Medical Sciences, Nelson R. Mandela School of Medicine, College of Health Sciences, University of KwaZulu-Natal, 719 Umbilo Road, Durban, 4001, South Africa.
Virus Genes. 2022 Aug;58(4):255-269. doi: 10.1007/s11262-022-01904-w. Epub 2022 Apr 26.
The recent research findings on influenza A virus (IAV) genome biology prompted us to present a comprehensive overview of IAV genes, protein functions, and replication cycle. The eight gene segments of the IAV genome encode 17 proteins, each having unique functions contributing to virus fitness in the host. The polymerase genes are essential determinants of IAV pathogenicity and virulence; however, other viral components also play crucial roles in the IAV replication, transmission, and adaptation. Specific adaptive mutations within polymerase (PB2, PB1, and PA) and glycoprotein-hemagglutinin (HA) and neuraminidase (NA) genes, may facilitate interspecies transmission and adaptation of IAV. The HA-NA interplay is essential for establishing the IAV infection; the low pH triggers the inactivation of HA-receptor binding, leading to significantly lower NA activities, indicating that the enzymatic function of NA is dependent on HA binding. While the HA and NA glycoproteins are required to initiate infection, M1, M2, NS1, and NEP proteins are essential for cytoplasmic trafficking of viral ribonucleoproteins (vRNPs) and the assembly of the IAV virions. The mechanisms that enable IAV to exploit the host cell resources to advance the infection are discussed. A comprehensive understanding of IAV genome biology is essential for developing antivirals to combat the IAV disease burden.
最近关于甲型流感病毒(IAV)基因组生物学的研究结果促使我们全面概述 IAV 基因、蛋白功能和复制周期。IAV 基因组的八个基因片段编码 17 种蛋白,每种蛋白都具有独特的功能,有助于病毒在宿主中的适应性。聚合酶基因是决定 IAV 致病性和毒力的关键决定因素;然而,其他病毒成分在 IAV 的复制、传播和适应中也起着至关重要的作用。聚合酶(PB2、PB1 和 PA)和糖蛋白-血凝素(HA)和神经氨酸酶(NA)基因内的特定适应性突变可能促进 IAV 的种间传播和适应。HA-NA 的相互作用对于建立 IAV 感染至关重要;低 pH 值触发 HA-受体结合的失活,导致 NA 活性显著降低,表明 NA 的酶功能依赖于 HA 结合。虽然 HA 和 NA 糖蛋白是启动感染所必需的,但 M1、M2、NS1 和 NEP 蛋白对于病毒核糖核蛋白(vRNP)的细胞质运输和 IAV 病毒粒子的组装是必不可少的。讨论了使 IAV 能够利用宿主细胞资源推进感染的机制。全面了解 IAV 基因组生物学对于开发抗病毒药物以对抗 IAV 疾病负担至关重要。