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Codon Optimization of the Major Antigen Encoding Genes of Diverse Strains of Influenza A Virus

机译:甲型流感病毒不同菌株主要抗原编码基因的密码子优化

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A large number of influenza A virus outbreaks and mortality occurred in the world recently, an urgent attention to develop effective and sufficient quantity of vaccines are needed. Vaccines are generally protein with immunogenic properties and are notexpressed in sufficient quantity because of the codon bias, so it is necessary to optimize its codon in the expression host. Codon optimization was used to improve the protein expression in living organisms by increasing the translational efficiency ofgene of interest. Two surface antigenic glycoproteins, hemagglutinin (HA) and neuraminidase (NA) are present in influenza A viruses. We have used HA and NA genes from 19 strains of influenza A viruses for codon optimization in E. coli. Both genes of theinfluenza virus show that the codon adaptation index (CAI) and GC content of the genes in optimized DNA were enhanced significantly (p <0.01) as compared to wild type. CAI and GC of HA in optimized DNA was enhanced by 3.2 (68.5%) and 1.2 (16.2%) fold respectively, while in NA it was increased by 3.3 (69.7%) and 1.2 (15.8%) fold respectively. Our finding demonstrates that the optimized genes could be useful for better expression in host without any truncated proteins and also helpful for protein foldingand function. This work provides new insight in the synthetic biology research.
机译:最近在世界上发生了大量的甲型流感病毒爆发和死亡,需要紧急注意开发有效和足够数量的疫苗。疫苗通常是具有免疫原性的蛋白质,由于密码子偏倚不能充分表达,因此有必要在表达宿主中优化其密码子。密码子优化用于通过提高目的基因的翻译效率来改善生物体中蛋白质的表达。甲型流感病毒中存在两种表面抗原糖蛋白,血凝素(HA)和神经氨酸酶(NA)。我们已使用19种甲型流感病毒的HA和NA基因在大肠杆菌中进行密码子优化。流感病毒的两个基因均显示,与野生型相比,优化的DNA中的基因的密码子适应指数(CAI)和GC含量显着提高(p <0.01)。优化DNA中HA的CAI和GC分别提高了3.2(68.5%)和1.2(16.2%)倍,而在NA中分别提高了3.3(69.7%)和1.2(15.8%)倍。我们的发现表明,优化的基因可用于在宿主中更好地表达而无任何截短的蛋白质,并且还有助于蛋白质的折叠和功能。这项工作为合成生物学研究提供了新的见识。

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