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Cytoplasmic motifs in the nipah virus fusion protein modulate virus particle assembly and egress

  • Gunner P. Johnston
  • , Erik M. Contreras
  • , Jeffrey Dabundo
  • , Bryce A. Henderson
  • , Keesha M. Matz
  • , Victoria Ortega
  • , Alfredo Ramirez
  • , Arnold Park
  • , Hector C. Aguilar

Research output: Contribution to journalArticlepeer-review

32 Scopus citations

Abstract

Nipah virus (NiV), a paramyxovirus in the genus Henipavirus, has a mortality rate in humans of approximately 75%. While several studies have begun our understanding of NiV particle formation, the mechanism of this process remains to be fully elucidated. For many paramyxoviruses, M proteins drive viral assembly and egress; however, some paramyxoviral glycoproteins have been reported as important or essential in budding. For NiV the matrix protein (M), the fusion glycoprotein (F) and, to a much lesser extent, the attachment glycoprotein (G) autonomously induce the formation of virus-like particles (VLPs). However, functional interactions between these proteins during assembly and egress remain to be fully understood. Moreover, if the F-driven formation of VLPs occurs through interactions with host cell machinery, the cytoplasmic tail (CT) of F is a likely interactive domain. Therefore, we analyzed NiV F CT deletion and alanine mutants and report that several but not all regions of the F CT are necessary for efficient VLP formation. Two of these regions contain YXXØ or dityrosine motifs previously shown to interact with cellular machinery involved in F endocytosis and transport. Importantly, our results showed that F-driven, M-driven, and M/F-driven viral particle formation enhanced the recruitment of G into VLPs. By identifying key motifs, specific residues, and functional viral protein interactions important for VLP formation, we improve our understanding of the viral assembly/egress process and point to potential interactions with host cell machinery.

Original languageEnglish
Article numbere02150-16
JournalJournal of Virology
Volume91
Issue number10
DOIs
StatePublished - 1 May 2017

Keywords

  • Attachment
  • Budding
  • Cytoplasmic tail
  • Fusion protein
  • Glycoprotein
  • Matrix
  • Nipah virus
  • Paramyxoviridae
  • Paramyxovirus
  • Viral assembly

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