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首页> 外文期刊>Journal of Medical Virology >Comparative insight into the genomic landscape of SARS-CoV-2 and identification of mutations associated with the origin of infection and diversity
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Comparative insight into the genomic landscape of SARS-CoV-2 and identification of mutations associated with the origin of infection and diversity

机译:对SARS-COV-2基因组景观的比较见解,以及鉴定感染和多样性突变

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摘要

The analyses of 2325 severe acute respiratory syndrome coronavirus-2 (SARS-CoV-2) genomes revealed 107, 162, and 65 nucleotide substitutions in the coding region of SARS-CoV-2 from the three continents America, Europe, and Asia, respectively. Of these nucleotide substitutions 58, 94, and 37 were nonsynonymous types mostly present in the Nsp2, Nsp3, Spike, and ORF9. A continent-specific phylogram analyses clustered the SARS-CoV-2 in the different group based on the frequency of nucleotide substitutions. Detailed analyses about the continent-specific amino acid changes and their effectiveness by SNAP2 software was investigated. We found 11 common nonsynonymous mutations; among them, two novel effective mutations were identified in ORF9 (S194L and S202N). Intriguingly, ORF9 encodes nucleocapsid phosphoprotein possessing many effective mutations across continents and could be a potential candidate after the spike protein for studying the role of mutation in viral assembly and pathogenesis. Among the two forms of certain frequent mutation, one form is more prevalent in Europe continents (Nsp12:L314, Nsp13:P504, Nsp13:Y541, Spike:G614, and ORF8:L84) while other forms are more prevalent in American (Nsp12:P314, Nsp13:L504, Nsp13:C541, Spike:D614, and ORF8:L84) and Asian continents (Spike:D614), indicating the spatial and temporal dynamics of SARS-CoV-2. We identified highly conserved 38 regions and among these regions, 11 siRNAs were predicted on stringent criteria that can be used to suppress the expression of viral genes and the corresponding reduction of human viral infections. The present investigation provides information on different mutations and will pave the way for differentiating strains based on virulence and their use in the development of better antiviral therapy.
机译:对2325例严重急性呼吸综合征冠状病毒-2(SARS-CoV-2)基因组的分析显示,美洲、欧洲和亚洲三大洲的SARS-CoV-2编码区分别存在107、162和65个核苷酸替换。在这些核苷酸替换中,58、94和37是非同义类型,主要存在于Nsp2、Nsp3、Spike和ORF9中。一项大陆特有的系统图分析根据核苷酸替换的频率将SARS-CoV-2分为不同的组。利用SNAP2软件对大陆特有的氨基酸变化及其有效性进行了详细分析。我们发现了11种常见的非同义突变;其中,在ORF9中发现了两个新的有效突变(S194L和S202N)。有趣的是,ORF9编码的核衣壳磷蛋白在各大洲具有许多有效的突变,可能是研究突变在病毒组装和发病机制中作用的潜在候选蛋白。在两种常见突变中,一种在欧洲大陆(Nsp12:L314、Nsp13:P504、Nsp13:Y541、Spike:G614和ORF8:L84)和亚洲大陆(Spike:D614)更为普遍,而在美国(Nsp12:P314、Nsp13:L504、Nsp13:C541、Spike:D614和ORF8:L84)和亚洲大陆(Spike:D614)更为普遍,表明SARS-CoV-2的时空动态。我们确定了38个高度保守的区域,在这些区域中,根据严格的标准预测了11个siRNA,这些siRNA可用于抑制病毒基因的表达并相应减少人类病毒感染。目前的研究提供了关于不同突变的信息,并将为根据毒力区分菌株及其在开发更好的抗病毒治疗中的应用铺平道路。

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