The late stage of human immunodeficiency virus type 1 assembly is an energy-dependent process Journal Article


Authors: Tritel, M.; Resh, M. D.
Article Title: The late stage of human immunodeficiency virus type 1 assembly is an energy-dependent process
Abstract: Several recent studies have indicated the involvement of host cell factors in human immunodeficiency virus type 1 (HIV-1) assembly. To ascertain whether ATP-dependent factors play a role in this process, we quantified virus-like particle (VLP) production by ATP-depleted cells. Pharmacological ATP depletion abrogated VLP production without affecting cell viability or inducing degradation of HIV-1 Gag protein. This effect occurred even when the ATP-depleting agents were added 1 h into the assembly process, and it was reversed by removal of these agents. ATP depletion did not affect Gag membrane binding or multimerization. Density gradient analysis indicated that HIV-1 assembly intermediates were stalled late in the assembly process. This conclusion was further supported by electron microscopy analysis, which revealed a preponderance of plasma membrane-associated stalk-like structures in the ATP-depleted cells. Since no HIV-1 proteins bind or hydrolyze ATP, these findings indicate that an ATP-requiring cellular factor is an obligatory participant late in the HIV-1 assembly process.
Keywords: nonhuman; animal cell; animals; cell viability; protein degradation; protein binding; transfection; cercopithecus aethiops; cos cells; cell membrane; adenosine triphosphate; energy; hydrolysis; virus particle; human immunodeficiency virus 1; membrane binding; hiv-1; virus protein; virus assembly; gag protein; virion; gene products, gag; humans; priority journal; article
Journal Title: Journal of Virology
Volume: 75
Issue: 12
ISSN: 0022-538X
Publisher: American Society for Microbiology  
Date Published: 2001-06-01
Start Page: 5473
End Page: 5481
Language: English
DOI: 10.1128/jvi.75.12.5473-5481.2001
PUBMED: 11356954
PROVIDER: scopus
PMCID: PMC114259
DOI/URL:
Notes: Export Date: 21 May 2015 -- Source: Scopus
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  1. Marilyn D Resh
    120 Resh