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In silico thermodynamic stability of mammalian adaptation and virulence determinants in polymerase complex proteins of H9N2 virus

机译:在H9N2病毒的聚合酶复合蛋白中哺乳动物适应和毒力决定因素的硅热力学稳定性

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摘要

The polymerase complex proteins (PB2, PB1, and PA) are responsible primarily for the replication of avian influenza virus and play an important role in virus virulence, mammalian adaptation, and interspecies transmission. In this study; eight Egyptian LPAI-H9N2 viruses isolated from apparent healthy chickens and quails from 2014 to 2016. Characterization of complete nucleotide sequences, phylogenetic and mutation analysis were carried out. The measurement of thermodynamic stability of the H9N2 polymerase protein in comparison to human H3N2 and H1N1 proteins was carried out using in silico method. Phylogenetic analysis of these viruses revealed a close relationship to viruses isolated from neighboring Middle Eastern countries with an average of 96–99% homology. They are sharing the common ancestor A/quail/Hong Kong/G1/1997 (G1-Like) without any evidence for genetic reassortment. In addition, eight markers related to virulence were identified, including the combination of 627V and 391E in the PB2 gene with full-length PB1-F2 and PA-X proteins were observed in all viruses and the substitution N66S in PB1-F2 which suggest increasing virus virulence. Moreover, six markers that may affect the virus replication and transmission in mammalian hosts were identified. Five mutations related to mammalian adaptation show a structural stabilizing effect on LPAI-H9N2 polymerase complex protein according to the free-energy change (ΔΔG). Three out of those six adaptive mutations shown to increase polymerase complex protein stability were found in Egyptian LPAI-H9N2 viruses similar to Human H3N2 and H1N1 (661 in PB2, 225 and 409 in PA genes). Our results suggested that the stabilizing mutations in the polymerase complex protein have likely affected the protein structure and induced favorable conditions for avian virus replication and transmission in mammalian hosts. Indeed, the study reports the mutational analysis of the circulating LPAI-H9N2 strains in Egypt. Keywords: Polymerasebasic1, 2 (PB1PB2), Polymerase acid (PA), H9N2, G1-LIKE, Free-energy change, H3N2 and H1N1
机译:聚合酶复合蛋白(PB2,PB1和PA)主要负责禽流感病毒的复制,并在病毒毒力,哺乳动物适应和间隙传播中发挥重要作用。在这项研究中;从2014年至2016年从明显的健康鸡和鹌鹑孤立的八埃及LPAI-H9N2病毒,进行了完全核苷酸序列,系统发育和突变分析的表征。用硅方法进行与人H3N2和H1N1蛋白相比,H9N2聚合酶蛋白的热力学稳定性的测量。这些病毒的系统发育分析揭示了与邻近中东国家分离的病毒的密切关系,平均为96-99%的同源性。他们正在分享共同的祖先A / QUAIL / HONG KONG / G1 / 1997(G1样),没有任何遗传重罪的证据。此外,鉴定了与毒力相关的八种标记,包括在所有病毒中观察到具有全长PB1-F2和PA-X蛋白的PB2基因中的627V和391E的组合,并在PB1-F2中取代N66S,提出增加病毒毒力。此外,鉴定了可能影响哺乳动物宿主中病毒复制和传输的六种标记。与哺乳动物适应有关的五个突变显示了根据自由能变化(ΔΔG)的LPAI-H9N2聚合酶复合蛋白的结构稳定作用。在类似于人H3N2和H1N1(PB2,225和409中PB2,225和409中的埃及LPAI-H9N2病毒中,发现了在埃及LPAI-H9N2病毒中发现的三种适应性突变中的三种自适应突变。我们的研究结果表明,聚合酶复合蛋白中的稳定突变可能影响蛋白质结构,并诱导哺乳动物宿主中的禽病毒复制和传播的有利条件。实际上,该研究报告了埃及循环LPAI-H9N2菌株的突变分析。关键词:聚合酶酶1,2(PB1PB2),聚合酶酸(PA),H9N2,G1样,自由能变化,H3N2和H1N1

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