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Viral membrane fusion

Virology · 2015 · Vol. 479-480 · pp. 498–507
Stephen C. Harrison

Abstract

Membrane fusion is an essential step when enveloped viruses enter cells. Lipid bilayer fusion requires catalysis to overcome a high kinetic barrier; viral fusion proteins are the agents that fulfill this catalytic function. Despite a variety of molecular architectures, these proteins facilitate fusion by essentially the same generic mechanism. Stimulated by a signal associated with arrival at the cell to be infected (e.g., receptor or co-receptor binding, proton binding in an endosome), they undergo a series of conformational changes. A hydrophobic segment (a "fusion loop" or "fusion peptide") engages the target-cell membrane and collapse of the bridging intermediate thus formed draws the two membranes (virus and cell) together. We know of three structural classes for viral fusion proteins. Structures for both pre- and postfusion conformations of illustrate the beginning and end points of a process that can be probed by single-virion measurements of fusion kinetics.

Animal Virus Infections StudiesVirus-based gene therapy researchBacteriophages and microbial interactionsLipid bilayer fusionBiologyViral envelopeFusion mechanismFusionEndosomeBiophysicsViral entryCell biologyMembrane

MeSH terms

Protein ConformationViral Fusion ProteinsVirus InternalizationHost-Pathogen Interactions

Funding

  • Howard Hughes Medical Institute
  • National Institutes of Health
Citations
722
FWCI
67.02
field-weighted impact
References
105
Percentile
100%
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Cited by
Mechanisms of SARS-CoV-2 entry into cells
Nature Reviews Molecular Cell Biology · 2021 · 3,127 citations
References
Viral membrane fusion
Nature Structural & Molecular Biology · 2008 · 1,191 citations
Receptor Binding and Membrane Fusion in Virus Entry: The Influenza Hemagglutinin
Annual Review of Biochemistry · 2000 · 2,679 citations
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