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[具有密码子去优化NS1基因的拯救甲型流感病毒在体外和体内均减毒]

[Rescued influenza A virus with codon deoptimized NS1 gene is attenuated both in vitro and in vivo].

作者信息

Luan Shijia, Pan Weiqi, Li Ting, Yang Huaqiang, Zhang Beiwu, Li Feng, Chen Ling

机构信息

Guangzhou Institute of Biomedicine and Health (GIBH), Chinese Academy of Sciences, Guangzhou 510663, China.

出版信息

Sheng Wu Gong Cheng Xue Bao. 2009 May;25(5):720-6.

Abstract

Abstract: To develop novel live attenuated influenza vaccine, we explored the feasibility to attenuate influenza virus by codon deoptimization of NS1. According to the codon usage bias in influenza A virus, we designed and synthesized a condon-deoptimized NS gene by substituting codons of 110 amino acids in the NS1 gene of A/Puerto Rico/8/34(H1N1) with unpreferred synonymous codons. The influenza A virus with the codon deoptimized NS1 gene (deoNS virus) was rescued by reverse genetics. Plaque forming assay and virus growth curve showed that the growth of deoNS virus was reduced about 1000 times in MDCK cells compared to that of the wild-type virus. Intranasal inoculation with deoNS virus did not cause death or evident disease in infected BALB/c mice. Furthermore, the virus titer in the lungs of mice infected with deoNS virus was significantly lower (i.e. 100-1000 times) than that of wild-type virus. Our results indicated that influenza virus could be effectively attenuated by synonymous codon deoptimization of NS1 gene. This strategy will be useful to develop new attenuated candidates for the production of live attenuated influenza vaccines.

摘要

摘要

为开发新型减毒活流感疫苗,我们探索了通过对NS1进行密码子去优化来减毒流感病毒的可行性。根据甲型流感病毒的密码子使用偏好,我们通过将A/波多黎各/8/34(H1N1)的NS1基因中110个氨基酸的密码子替换为非最优同义密码子,设计并合成了一个密码子去优化的NS基因。通过反向遗传学拯救出了带有密码子去优化NS1基因的甲型流感病毒(deoNS病毒)。蚀斑形成试验和病毒生长曲线表明,与野生型病毒相比,deoNS病毒在MDCK细胞中的生长减少了约1000倍。用deoNS病毒鼻内接种感染的BALB/c小鼠未导致死亡或明显疾病。此外,感染deoNS病毒的小鼠肺部病毒滴度显著低于野生型病毒(即低100 - 1000倍)。我们的结果表明,通过对NS1基因进行同义密码子去优化可有效减毒流感病毒。该策略将有助于开发用于生产减毒活流感疫苗的新型减毒候选疫苗。

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