4.7 Article

HIV-1 assembly: Viral glycoproteins segregate quantally to lipid rafts that associate individually with HIV-1 capsids and virions

Journal

CELL HOST & MICROBE
Volume 3, Issue 5, Pages 285-292

Publisher

CELL PRESS
DOI: 10.1016/j.chom.2008.04.004

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Funding

  1. Intramural NIH HHS [Z99 AI999999] Funding Source: Medline

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HIV-1 assembly depends on its structural protein, Gag, which after synthesis on ribosomes, traffics to the late endosome/plasma membrane, associates with HIV Env glycoprotein, and forms infectious virions. While Env and Gag migrate to lipid microdomains, their stoichiometry and specificity of interaction are unknown. Pseudotyped viral particles can be made with one viral core surrounded by heterologous envelope proteins. Taking advantage of this property, we analyzed the association of HIV Env and Ebola glycoprotein (GP), with HIV-1 Gag coexpressed in the same cell. Though both viral glycoproteins were expressed, each associated independently with Gag, giving rise to distinct virion populations, each with a single glycoprotein type. Confocal imaging demonstrated that Env and GP localized to distinct lipid raft microdomains within the same cell where they associated with different virions. Thus, a single Gag particle associates quantally with one lipid raft, containing homogeneous trimeric viral envelope proteins, to assemble functional virions.

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