首页> 美国卫生研究院文献>Journal of Virology >Recombinant Human Metapneumovirus Lacking the Small Hydrophobic SH and/or Attachment G Glycoprotein: Deletion of G Yields a Promising Vaccine Candidate
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Recombinant Human Metapneumovirus Lacking the Small Hydrophobic SH and/or Attachment G Glycoprotein: Deletion of G Yields a Promising Vaccine Candidate

机译:重组人偏肺病毒缺乏小疏水SH和/或附着G糖蛋白:G的删除产生了一个有希望的疫苗候选人。

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摘要

Human metapneumovirus (HMPV) has recently been identified as a significant cause of serious respiratory tract disease in humans. In particular, the emerging information on the contribution of HMPV to pediatric respiratory tract disease suggests that it will be important to develop a vaccine against this virus for use in conjunction with those being developed for human respiratory syncytial virus and the human parainfluenza viruses. A recently described reverse genetic system (S. Biacchesi, M. H. Skiadopoulos, K. C. Tran, B. R. Murphy, P. L. Collins, and U. J. Buchholz, Virology 321:247-259, 2004) was used to generate recombinant HMPVs (rHMPVs) that lack the G gene, the SH gene, or both. The ΔSH, ΔG, and ΔSH/G deletion mutants were readily recovered and were found to replicate efficiently during multicycle growth in cell culture. Thus, the SH and G proteins are not essential for growth in cell culture. Apart from the absence of the deleted protein(s), the virions produced by the gene deletion mutants were similar by protein yield and gel electrophoresis protein profile to wild-type HMPV. When administered intranasally to hamsters, the ΔG and ΔSH/G mutants replicated in both the upper and lower respiratory tracts, showing that HMPV containing F as the sole viral surface protein is competent for replication in vivo. However, both viruses were at least 40-fold and 600-fold restricted in replication in the lower and upper respiratory tract, respectively, compared to wild-type rHMPV. They also induced high titers of HMPV-neutralizing serum antibodies and conferred complete protection against replication of wild-type HMPV challenge virus in the lungs. Surprisingly, G is dispensable for protection, and the ΔG and ΔSH/G viruses represent promising vaccine candidates. In contrast, ΔSH replicated somewhat more efficiently in hamster lungs compared to wild-type rHMPV (20-fold increase on day 5 postinfection). This indicates that SH is completely dispensable in vivo and that its deletion does not confer an attenuating effect, at least in this rodent model.
机译:最近,人类偏肺病毒(HMPV)被确定为人类严重呼吸道疾病的重要原因。特别地,关于HMPV对小儿呼吸道疾病的贡献的新出现的信息表明,开发针对该病毒的疫苗与用于人类呼吸道合胞病毒和人类副流感病毒的疫苗一起使用将是重要的。最近描述的反向遗传系统(S. Biacchesi,MH Skiadopoulos,KC Tran,BR Murphy,PL Collins和UJ Buchholz,Virology 321:247-259,2004)用于产生缺乏G基因的重组HMPV(rHMPV)。 ,SH基因或两者。 ΔSH,ΔG和ΔSH/ G缺失突变体易于回收,并在细胞培养的多周期生长过程中有效复制。因此,SH和G蛋白对于细胞培养中的生长不是必需的。除了不存在缺失的蛋白质外,基因缺失突变体产生的病毒体在蛋白质产量和凝胶电泳蛋白质方面与野生型HMPV相似。当通过鼻内给药仓鼠时,ΔG和ΔSH/ G突变体在上呼吸道和下呼吸道均复制,这表明含有F作为唯一病毒表面蛋白的HMPV在体内具有复制能力。但是,与野生型rHMPV相比,这两种病毒在下呼吸道和上呼吸道中的复制分别受到至少40倍和600倍的限制。他们还诱导了高滴度的中和HMPV的血清抗体,并赋予了针对野生型HMPV攻击病毒在肺中复制的完全保护。出人意料的是,G对于保护是必不可少的,并且ΔG和ΔSH/ G病毒代表有希望的疫苗候选者。相反,与野生型rHMPV相比,ΔSH在仓鼠肺中的复制效率更高(感染后第5天增加20倍)。这表明至少在该啮齿动物模型中,SH在体内是完全可分配的,并且其缺失不赋予减毒作用。

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