首页> 美国卫生研究院文献>Journal of Virology >Rescue of an influenza A virus wild-type PB2 gene and a mutant derivative bearing a site-specific temperature-sensitive and attenuating mutation.
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Rescue of an influenza A virus wild-type PB2 gene and a mutant derivative bearing a site-specific temperature-sensitive and attenuating mutation.

机译:拯救甲型流感病毒的野生型PB2基因和带有位点特异性温度敏感和减毒突变的突变体衍生物。

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摘要

Live attenuated influenza A virus vaccines are currently produced by the transfer of attenuating genes from a donor virus to new epidemic variants of influenza A virus, with the selection of reassortant viruses that possess the protective antigens (i.e., the two surface glycoproteins) of the epidemic virus and the attenuating genes from the donor virus. The previously studied attenuated donor viruses were produced by conventional methods such as passage of virus at low temperature or chemical mutagenesis. The present paper describes a new strategy for the generation of a donor virus bearing an attenuating, non-surface-glycoprotein gene. This strategy involves the introduction of attenuating mutations into the cDNA copy of the PB2 polymerase gene by site-directed mutagenesis, transfection of in vitro RNA transcripts of PB2 cDNA, and recovery of the transfected PB2 gene into an infectious virus. An avian-human influenza A virus PB2 single-gene reassortant virus (with an avian influenza A virus PB2 gene) that replicates efficiently in avian tissue but poorly in mammalian cells was used as a helper virus to rescue a transfected synthetic RNA derived from a human influenza A virus PB2 gene. The desired human influenza A virus mutant PB2 transfectant was favored in this situation because the avian influenza A virus PB2 gene restricts viral replication in mammalian cells in culture, the system used for rescue, thereby providing strong selection for the virus bearing the human influenza A virus PB2 gene. We validated the feasibility of this approach by rescuing the PB2 gene of the wild-type influenza A/Ann Arbor/6/60 virus and a mutant derivative that had a single amino acid substitution introduced at position 265 by site-directed mutagenesis. Previously, this amino acid substitution had been shown to specify both a temperature-sensitive (ts) and an attenuation (att) phenotype. The rescued mutant 265 PB2 transfectant virus exhibited the ts and att phenotypes, which confirms that these phenotypes were specified by this single amino acid substitution. The transfectant virus was immunogenic and protected hamsters from subsequent challenge with wild-type virus. The cDNA copy of this influenza A/Ann Arbor/6/60 virus mutant 265 PB2 gene will be used as a substrate for the introduction of additional attenuating mutations by site-directed mutagenesis.
机译:减毒活甲型流感病毒活疫苗目前是通过将减毒基因从供体病毒转移到甲型流感病毒的新流行变种中,并选择具有流行性保护性抗原(即两种表面糖蛋白)的重配病毒来生产的病毒和来自供体病毒的减毒基因。以前研究过的减毒供体病毒是通过常规方法产生的,例如在低温下通过病毒或化学诱变。本文描述了一种新的策略,用于产生带有减毒的非表面糖蛋白基因的供体病毒。该策略包括通过定点诱变将减毒突变引入PB2聚合酶基因的cDNA拷贝,转染PB2 cDNA的体外RNA转录本以及将转染的PB2基因恢复为感染性病毒。在禽类组织中有效复制但在哺乳动物细胞中复制较差的禽-人甲型流感病毒PB2单基因重配病毒(具有甲型禽流感PB2基因)被用作辅助病毒,以挽救人类衍生的转染合成RNA甲型流感病毒PB2基因。在这种情况下,所需的人类甲型流感病毒突变体PB2转染子受到青睐,因为禽流感A病毒PB2基因限制了培养的哺乳动物细胞中的病毒复制,该系统用于拯救,从而为携带人类甲型流感病毒的病毒提供了强大的选择PB2基因。我们通过拯救野生型流感A / Ann Arbor / 6/60病毒的PB2基因和通过定点诱变在265位引入单个氨基酸取代的突变体衍生物,验证了该方法的可行性。以前,这种氨基酸取代已被证明可以指定温度敏感型(ts)和衰减型(att)表型。拯救的突变型265 PB2转染病毒表现出ts和att表型,这证实了这些表型是由这种单个氨基酸取代指定的。转染病毒具有免疫原性,可以保护仓鼠免受野生型病毒的随后攻击。该甲型流感/ Ann Arbor / 6/60病毒突变体265 PB2基因的cDNA拷贝将用作通过定点诱变引入其他减毒突变的底物。

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