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The Ability of a Non-Egg Adapted (Cell-Like) A(H1N1)pdm09 Virus to Egg-Adapt at HA Loci Other than 222 and 223 and Its Effect on the Yield of Viral Protein

机译:非卵适应性(细胞样)A(H1N1)pdm09病毒对除222和223以外的HA位点的卵适应能力及其对病毒蛋白产量的影响

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摘要

Previous studies on influenza A(H1N1)pdm09 candidate vaccine viruses (CVVs) that had adapted to growth in embryonated chicken eggs by the acquisition of amino acid substitutions at HA positions 222 or 223 showed that improved protein yield could be conferred by additional amino acid substitutions in the haemagglutinin (HA) that arose naturally during passaging of the virus in eggs. In this study we investigated, by means of reverse genetics, the ability of a non-egg adapted (cell-like) A(H1N1)pdm09 virus to egg-adapt at HA loci other than 222/223, introducing amino acid substitutions previously identified as egg adaptations in pre-H1N1pdm09 H1N1 viruses and assessing their effect on protein yield and antigenicity. We also investigated the effect on the protein yield of these substitutions in viruses that had A(H1N1)pdm09 internal genes rather than the traditional PR8 internal genes of a CVV. The data show that a cell-like A/Christchurch/16/2010 can be egg-adapted via amino acid substitutions in at least three alternative HA loci (187, 190 and 216), in viruses with either PR8 or A/California/7/2009 internal genes, but that the effects on protein yield vary depending on the amino acid substitution and the internal genes of the virus. Since CVVs need to produce high protein yields to be suitable for vaccine manufacture, the findings of this study will assist in the future characterisation of both wild type viruses and lab-derived CVVs for vaccine use.
机译:以前对甲型流感病毒(H1N1)pdm09候选疫苗病毒(CVVs)的研究已经通过在HA位置222或223处获得氨基酸取代而适应了在雏鸡卵中生长,表明可以通过其他氨基酸取代来提高蛋白质产量病毒在蛋中传代过程中自然产生的血凝素(HA)中的“糖”。在这项研究中,我们通过反向遗传学研究了非卵适应性(细胞样)A(H1N1)pdm09病毒在除222/223以外的HA位点适应卵的能力,引入了先前确定的氨基酸取代作为卵在H1N1pdm09之前的H1N1病毒中的适应性,并评估它们对蛋白质产量和抗原性的影响。我们还研究了具有A(H1N1)pdm09内部基因而不是CVV的传统PR8内部基因的病毒对这些替代蛋白产生的影响。数据显示,在带有PR8或A / California / 7的病毒中,可以通过氨基酸置换在至少三个替代的HA基因座(187、190和216)中对卵细胞样的A / Christchurch / 16/2010进行卵适应。 / 2009内部基因,但对蛋白质产量的影响取决于氨基酸取代和病毒的内部基因。由于CVV需要产生高蛋白产量才能适合疫苗生产,因此本研究的发现将有助于将来鉴定野生型病毒和实验室衍生的CVV疫苗。

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