首页> 外文期刊>Infection, Genetics and Evolution: Journal of Molecular Epidemiology and Evolutionary Genetics in Infectious Diseases >DNA compositional dynamics and codon usage patterns of M1 and M2 matrix protein genes in influenza A virus
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DNA compositional dynamics and codon usage patterns of M1 and M2 matrix protein genes in influenza A virus

机译:流感病毒中M1和M2基质蛋白基因的DNA成分动力学和密码子使用模式

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Influenza A virus subtype H3N2 has been a serious health issue across the globe with approximately 36 thousand annual casualties in the United States of America only. Co-circulation in avian, swine and human hosts has led to frequent mutations in the virus genome, due to which development of successful antivirals against the virus has become a formidable challenge. Recently, focussed research is being carried out targeting the matrix proteins of this strain as vaccine candidates. This study is carried out to unravel the key features of the genes encoding the matrix proteins that manoeuvre the codon usage profile in the H3N2 strains. The findings reveal differential codon choice for both matrix protein 1 and matrix protein 2. The overall codon usage bias is less pronounced in both the datasets which is evident from higher value of effective number of codons ( & 55). Comparison of the codon usage for both the genes under study with that of humans revealed that the viral codon usage is not fully optimized for the human host conditions. Both the genes enrolled in the study showed variation which was reflected in almost all the indices used for codon usage studies. Neutrality analysis revealed a weak role of mutation pressure while selection was the major contributor towards codon usage.
机译:流感病毒亚型H3N2是全球的严重健康问题,只有大约36万人伤亡人数。禽类,猪和人体宿主的共同循环导致病毒基因组的频繁突变,由于哪种对病毒的成功抗病毒的发展已成为一个强大的挑战。最近,通过靶向该菌株的基质蛋白作为疫苗候选者进行聚焦的研究。该研究进行了揭示编码在H3N2菌株中操纵密码子使用曲线的基质蛋白质的基因的关键特征。该发现揭示了矩阵蛋白1和矩阵蛋白2的差分密码子选择。总密码子使用偏差在从有效数量的有效数量(& 55)的较高值中显而易见的数据集。对人类研究中的基因的密码子使用的比较显示,病毒密码子使用没有针对人宿主条件完全优化。纳入该研究的基因显示出在几乎所有用于密码子使用研究的指数中反映的变化。中立分析显示突变压力的弱势作用,同时选择是密码子使用的主要贡献者。

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