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Phosphatidylserine vesicles enable efficient en bloc transmission of enteroviruses

  • Ying Han Chen
  • , Wenli Du
  • , Marne C. Hagemeijer
  • , Peter M. Takvorian
  • , Cyrilla Pau
  • , Ann Cali
  • , Christine A. Brantner
  • , Erin S. Stempinski
  • , Patricia S. Connelly
  • , Hsin Chieh Ma
  • , Ping Jiang
  • , Eckard Wimmer
  • , Grégoire Altan-Bonnet
  • , Nihal Altan-Bonnet*
  • *Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

37 Citations (Scopus)
2 Downloads (Pure)

Abstract

A central paradigm within virology is that each viral particle largely behaves as an independent infectious unit. Here, we demonstrate that clusters of enteroviral particles are packaged within phosphatidylserine (PS) lipid-enriched vesicles that are non-lytically released from cells and provide greater infection efficiency than free single viral particles. We show that vesicular PS lipids are co-factors to the relevant enterovirus receptors in mediating subsequent infectivity and transmission, in particular to primary human macrophages. We demonstrate that clustered packaging of viral particles within vesicles enables multiple viral RNA genomes to be collectively transferred into single cells. This study reveals a novel mode of viral transmission, where enteroviral genomes are transmitted from cell-to-cell en bloc in membrane-bound PS vesicles instead of as single independent genomes. This has implications for facilitating genetic cooperativity among viral quasispecies as well as enhancing viral replication.

Original languageEnglish
Pages (from-to)619-630
Number of pages12
JournalCell
Volume160
Issue number4
DOIs
Publication statusPublished - 12 Feb 2015

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