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人偏肺病毒融合蛋白七肽重复结构域中的突变对多核巨细胞的形成产生影响。

Mutations in the fusion protein heptad repeat domains of human metapneumovirus impact on the formation of syncytia.

作者信息

Dubois Julia, Cavanagh Marie-Hélène, Terrier Olivier, Hamelin Marie-Ève, Lina Bruno, Shi Rong, Rosa-Calatrava Manuel, Boivin Guy

机构信息

Centre de Recherche en Infectiologie of the Centre Hospitalier Universitaire de Québec and Université Laval, Québec, Canada.

Laboratoire de Virologie et Pathologie Humaine - VirPath Team, Centre International de Recherche en Infectiologie CIRI, Inserm U1111, CNRS UMR5308, ENS Lyon, Université Claude Bernard Lyon 1, Lyon, France.

出版信息

J Gen Virol. 2017 Jun;98(6):1174-1180. doi: 10.1099/jgv.0.000796. Epub 2017 Jun 14.

DOI:10.1099/jgv.0.000796
PMID:28613142
Abstract

Human metapneumovirus (HMPV) is an important cause of respiratory tract infections. The mechanism by which its fusion (F) protein is responsible for variable cytopathic effects in vitro remains unknown. We aligned the F sequences of the poorly fusogenic B2/CAN98-75 strain and the hyperfusogenic A1/C-85473 strain and identified divergent residues located in the two functional heptad repeats domains (HRA and HRB). We generated recombinant viruses by inserting the mutations N135T-G139N-T143K-K166E-E167D in HRA and/or K479R-N482S in HRB, corresponding to swapped sequences from C-85473, into CAN98-75 background and investigated their impact on in vitro phenotype and fusogenicity. We demonstrated that the five HRA mutations enhanced the fusogenicity of the recombinant rCAN98-75 virus, almost restoring the phenotype of the wild-type rC-85473 strain, whereas HRB substitutions alone had no significant effect on cell-cell fusion. Altogether, our results support the importance of the HRA domain for an HMPV-triggered fusion mechanism and identify key residues that modulate syncytium formation.

摘要

人偏肺病毒(HMPV)是呼吸道感染的重要病因。其融合(F)蛋白在体外导致不同细胞病变效应的机制尚不清楚。我们比对了融合能力较弱的B2/CAN98 - 75株和融合能力较强的A1/C - 85473株的F序列,并鉴定出位于两个功能性七肽重复结构域(HRA和HRB)中的不同残基。我们通过将对应于C - 85473株交换序列的HRA中的N135T - G139N - T143K - K166E - E167D和/或HRB中的K479R - N482S突变插入CAN98 - 75背景中,构建了重组病毒,并研究了它们对体外表型和融合能力的影响。我们证明,HRA中的五个突变增强了重组rCAN98 - 75病毒的融合能力,几乎恢复了野生型rC - 85473株的表型,而仅HRB的替换对细胞 - 细胞融合没有显著影响。总之,我们的结果支持HRA结构域对HMPV触发的融合机制的重要性,并确定了调节合胞体形成的关键残基。

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