| Literature DB >> 27226547 |
Bing-Ling Yun1, Xiao-Lu Guan1, Yong-Zhen Liu1, Yao Zhang1, Yong-Qiang Wang1, Xiao-Le Qi1, Hong-Yu Cui1, Chang-Jun Liu1, Yan-Ping Zhang1, Hong-Lei Gao1, Li Gao1, Kai Li1, Yu-Long Gao2, Xiao-Mei Wang3.
Abstract
Avian metapneumovirus (aMPV) fusion (F) protein mediates virus-cell membrane fusion to initiate viral infection, which requires F protein binding to its receptor(s) on the host cell surface. However, the receptor(s) for aMPV F protein is still not identified. All known subtype B aMPV (aMPV/B) F proteins contain a conserved Arg-Asp-Asp (RDD) motif, suggesting that the aMPV/B F protein may mediate membrane fusion via the binding of RDD to integrin. When blocked with integrin-specific peptides, aMPV/B F protein fusogenicity and viral replication were significantly reduced. Specifically we identified integrin αv and/or β1-mediated F protein fusogenicity and viral replication using antibody blocking, small interfering RNAs (siRNAs) knockdown, and overexpression. Additionally, overexpression of integrin αv and β1 in aMPV/B non-permissive cells conferred aMPV/B F protein binding and aMPV/B infection. When RDD was altered to RAE (Arg-Ala-Glu), aMPV/B F protein binding and fusogenic activity were profoundly impaired. These results suggest that integrin αvβ1 is a functional receptor for aMPV/B F protein-mediated membrane fusion and virus infection, which will provide new insights on the fusogenic mechanism and pathogenesis of aMPV.Entities:
Keywords: aMPV/B, fusogenicity; fusion protein; infection; integrin; membrane fusion; viral replication
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Year: 2016 PMID: 27226547 PMCID: PMC4938198 DOI: 10.1074/jbc.M115.711382
Source DB: PubMed Journal: J Biol Chem ISSN: 0021-9258 Impact factor: 5.157