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通过八个质粒拯救乙型流感病毒。

Rescue of influenza B virus from eight plasmids.

作者信息

Hoffmann Erich, Mahmood Kutubuddin, Yang Chin-Fen, Webster Robert G, Greenberg Harry B, Kemble George

机构信息

MedImmune Vaccines, 297 North Bernardo Avenue, Mountain View, CA 94043, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Aug 20;99(17):11411-6. doi: 10.1073/pnas.172393399. Epub 2002 Aug 9.

Abstract

Influenza B virus causes a significant amount of morbidity and mortality, yet the systems to produce high yield inactivated vaccines for these viruses have lagged behind the development of those for influenza A virus. We have established a plasmid-only reverse genetics system for the generation of recombinant influenza B virus that facilitates the generation of vaccine viruses without the need for time consuming coinfection and selection procedures currently required to produce reassortants. We cloned the eight viral cDNAs of influenza B/Yamanashi/166/98, which yields relatively high titers in embryonated chicken eggs, between RNA polymerase I and RNA polymerase II transcription units. Virus was detected as early as 3 days after transfection of cocultured COS7 and Madin-Darby canine kidney cells and achieved levels of 10(6)-10(7) plaque-forming units per ml of cell supernatant 6 days after transfection. The full-length sequence of the recombinant virus after passage into embryonated chicken eggs was identical to that of the input plasmids. To improve the utility of the eight-plasmid system for generating 6 + 2 reassortants from recently circulating influenza B strains, we optimized the reverse transcriptase-PCR for cloning of the hemagglutinin (HA) and neuraminidase (NA) segments. The six internal genes of B/Yamanashi/166/98 were used as the backbone to generate 6 + 2 reassortants including the HA and NA gene segments from B/Victoria/504/2000, B/Hong Kong/330/2001, and B/Hawaii/10/2001. Our results demonstrate that the eight-plasmid system can be used for the generation of high yields of influenza B virus vaccines expressing current HA and NA glycoproteins from either of the two lineages of influenza B virus.

摘要

乙型流感病毒会导致大量发病和死亡,但用于生产这些病毒的高产灭活疫苗的系统却落后于甲型流感病毒疫苗的开发。我们建立了一种仅使用质粒的反向遗传学系统来产生重组乙型流感病毒,该系统有助于产生疫苗病毒,而无需目前生产重配体所需的耗时共感染和选择程序。我们将在鸡胚中产生相对高滴度的乙型/Yamanashi/166/98病毒的八个病毒cDNA克隆到RNA聚合酶I和RNA聚合酶II转录单元之间。在共培养的COS7和Madin-Darby犬肾细胞转染后3天就检测到了病毒,转染后6天,细胞上清液中病毒滴度达到每毫升10(6)-10(7)个空斑形成单位。将重组病毒接种到鸡胚中传代后的全长序列与输入质粒的序列相同。为了提高八质粒系统用于从最近流行的乙型流感毒株产生6 + 2重配体的效用,我们优化了用于克隆血凝素(HA)和神经氨酸酶(NA)片段的逆转录酶-PCR。使用乙型/Yamanashi/166/98的六个内部基因作为骨架来产生6 + 2重配体,包括来自乙型/维多利亚/504/2000、乙型/香港/330/2001和乙型/夏威夷/10/2001的HA和NA基因片段。我们的结果表明,八质粒系统可用于高产乙型流感病毒疫苗的生产,这些疫苗表达来自乙型流感病毒两个谱系中任一谱系的当前HA和NA糖蛋白。

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