影响血凝素分子稳定性的突变会损害缺乏 NS1 的减毒活 H3N2 鼻内流感疫苗候选物的免疫原性。

Mutations affecting the stability of the haemagglutinin molecule impair the immunogenicity of live attenuated H3N2 intranasal influenza vaccine candidates lacking NS1.

机构信息

Avir Green Hills Biotechnology AG, Forsthausgasse 11, A-1200 Vienna, Austria.

出版信息

Vaccine. 2011 Apr 27;29(19):3517-24. doi: 10.1016/j.vaccine.2011.02.100. Epub 2011 Mar 12.

Abstract

The isolation and cultivation of human influenza viruses in embryonated hen eggs or cell lines often leads to amino acid substitutions in the haemagglutinin (HA) molecule. We found that the propagation of influenza A H3N2 viruses on Vero cells may trigger the appearance of HA destabilising mutations, affecting viral resistance to low pH or high temperature treatment. Two ΔNS1 reassortants, containing the HA sequences identical to the original human H3N2 influenza virus isolates were constructed. Passages of these viruses on Vero cells led to the appearance of single mutations in the HA(1) L194P or HA(2) G75R subunits that impaired virus stability. The original HA sequences and the stable phenotypes of the primary isolates were preserved if reassortants were passaged by infection at pH 5.6 and cultivation in medium at pH 6.5. Corresponding ΔNS1 reassortants were compared for their immunogenicity in ferrets upon intranasal immunisation. Vaccine candidates containing HA mutations demonstrated significantly lower immunogenicity compared to those without mutations. Thus, the retaining of the original HA sequences of human viruses during vaccine production might be crucial for the efficacy of live attenuated influenza vaccines.

摘要

在鸡胚或细胞系中分离和培养人流感病毒通常会导致血凝素(HA)分子中的氨基酸替换。我们发现,在 Vero 细胞上繁殖 A 型 H3N2 病毒可能会引发 HA 不稳定突变的出现,从而影响病毒对低 pH 值或高温处理的抗性。构建了两个含有与原始人源 H3N2 流感病毒分离株相同 HA 序列的 ΔNS1 重配体。这些病毒在 Vero 细胞上的传代导致 HA(1)L194P 或 HA(2)G75R 亚单位的单个突变出现,从而损害了病毒的稳定性。如果通过 pH 值为 5.6 的感染和 pH 值为 6.5 的培养基中培养来传代重配体,则保留原始 HA 序列和主要分离株的稳定表型。在鼻腔免疫接种后,比较了含有这些 HA 突变的相应 ΔNS1 重配体在雪貂中的免疫原性。与没有突变的疫苗候选物相比,含有 HA 突变的疫苗候选物的免疫原性显著降低。因此,在疫苗生产过程中保留人源病毒的原始 HA 序列可能对减毒活流感疫苗的功效至关重要。

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