ArticlemBio2024
Human parainfluenza virus 3 field strains undergo extracellular fusion protein cleavage to activate entry.
Article in mBio, 2024. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- New 1,3-Oxazole and 1,2,4-Oxadiazole Derivatives as Novel Agents Against Human Rhinovirus and Cytomegalovirus.ChemMedChem · 2026Article
- Expulsion of nuclear DNA to the cytoplasm after viral entry: A mechanism for activation of the cGAS pathway.Proceedings of the National Academy of Sciences of the United States of America · 2026Article
- Disruption of the S1/S2 multibasic cleavage site attenuates infectious bronchitis virus, while S2' partially restores viral virulence and expands tissue tropism.Journal of virology · 2026Article
- Whole-genome evolutionary dynamics of human parainfluenza virus type 3 in Shanghai, China, 2016-2024.Virologica Sinica · 2026Article
- Human parainfluenza virus 3 fusion protein cleavage: a key determinant of infection and spread.Journal of virology · 2026Article
- Article
- Host factors in parainfluenza virus replication: from entry to innate immunity evasion.Frontiers in immunology · 2026Review
- Host proteases: key regulators in viral infection and therapeutic targeting.Frontiers in immunology · 2025Review
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Authors and funding
9 authors.
Funding
Abstract
Human parainfluenza virus 3 (HPIV3) infection is driven by the coordinated action of viral surface glycoproteins hemagglutinin-neuraminidase (HN) and fusion protein (F). Receptor-engaged HN activates F to insert into the target cell membrane and drive virion-cell membrane fusion. For F to mediate entry, its precursor (F0) must first be cleaved by host proteases. F0 cleavage has been thought to be executed during viral glycoprotein transit through the trans-Golgi network by the ubiquitously expressed furin because F0 proteins of laboratory-adapted viruses contain a furin recognition dibasic cleavage motif RXKR around residue 108. Here, we show that the F proteins of field strains have a different cleavage motif from laboratory-adapted strains and are cleaved by unidentified proteases expressed in only a narrow subset of cell types. We demonstrate that extracellular serine protease inhibitors block HPIV3 F0 cleavage for field strains, suggesting F0 cleavage occurs at the cell surface facilitated by transmembrane proteases. Candidate proteases that may process HPIV3 F IMPORTANCE: Enveloped viruses cause a wide range of diseases in humans. At the first step of infection, these viruses must fuse their envelope with a cell membrane to initiate infection. This fusion is mediated by viral proteins that require a critical activating cleavage event. It was previously thought that for parainfluenza virus 3, an important cause of respiratory disease and a representative of a group of important pathogens, this cleavage event was mediated by furin in the cell secretory pathways prior to formation of the virions. We show that this is only true for laboratory strain viruses, and that clinical viruses that infect humans utilize extracellular proteases that are only made by a small subset of cells. These results highlight the importance of studying authentic clinical viruses that infect human tissues for understanding natural infection.
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