七肽重复区
生物
合胞体
偏肺病毒
病毒学
重组DNA
细胞融合
脂质双层融合
变性肺病毒
表型
融合蛋白
拉伤
体外
病毒
突变体
细胞培养
遗传学
肽序列
基因
呼吸系统
呼吸道感染
解剖
作者
Julia Dubois,Marie-Hélène Cavanagh,Olivier Terrier,Marie‐Ève Hamelin,Bruno Lina,Rong Shi,Manuel Rosa‐Calatrava,Guy Boivin
摘要
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.
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