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Dissecting the Cell Entry Pathway of Dengue Virus by Single-Particle Tracking in Living Cells

PLoS Pathogens · 2008 · Vol. 4(12) · pp. e1000244–e1000244
Hilde M. van der SchaarMichael J. RustChen ChenHeidi van der Ende-MetselaarJan WilschutXiaowei ZhuangJolanda M. Smit

Abstract

Dengue virus (DENV) is an enveloped RNA virus that causes the most common arthropod-borne infection worldwide. The mechanism by which DENV infects the host cell remains unclear. In this work, we used live-cell imaging and single-virus tracking to investigate the cell entry, endocytic trafficking, and fusion behavior of DENV. Simultaneous tracking of DENV particles and various endocytic markers revealed that DENV enters cells exclusively via clathrin-mediated endocytosis. The virus particles move along the cell surface in a diffusive manner before being captured by a pre-existing clathrin-coated pit. Upon clathrin-mediated entry, DENV particles are transported to Rab5-positive endosomes, which subsequently mature into late endosomes through acquisition of Rab7 and loss of Rab5. Fusion of the viral membrane with the endosomal membrane was primarily detected in late endosomal compartments.

Mosquito-borne diseases and controlCellular transport and secretionLipid Membrane Structure and BehaviorEndosomeEndocytic cycleEndocytosisDengue virusCell biologyLipid bilayer fusionClathrinViral entryBiologyVirology

MeSH terms

rab7 GTP-Binding ProteinsAedesAnimalsCells, CulturedCoated Pits, Cell-MembraneDengueDengue VirusDiffusionHeLa CellsHumansMicroscopy, FluorescenceVirionSignal Transductionrab GTP-Binding ProteinsTransport Vesicles

Funding

  • Universitair Medisch Centrum Groningen
  • National Institutes of Health
Citations
483
FWCI
21.22
field-weighted impact
References
51
Percentile
100%
vs. same field & year
Citations per year
References
Rab proteins as membrane organizers
Nature Reviews Molecular Cell Biology · 2001 · 3,346 citations
Dengue: an update
The Lancet Infectious Diseases · 2002 · 1,169 citations
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Dissecting the Cell Entry Pathway of Dengue Virus by Single-Particle Tracking in Living Cells · Scinovex