Journal of Biological Chemistry · 2007 · 147 citations · 57 references
Viral ReplicationProtein FunctionSignal TransductionCell RegulationMedicineHiv1 Protein VprHuman RetrovirusImmunologyAntiviral ResponseChronic Viral InfectionHivCell Cycle ArrestCell BiologyCell SignalingAids PathogenesisUbiquitin Ligase
The roles of the HIV1 protein Vpr in virus replication and pathogenesis remain unclear. Expression of Vpr in dividing cells causes cell cycle arrest in G(2). Vpr also facilitates low titer infection of terminally differentiated macrophages, enhances transcription, promotes apoptosis, and targets cellular uracil N-glycosylase for degradation. Using co-immunoprecipitation and tandem mass spectroscopy, we found that HIV1 Vpr engages a DDB1- and cullin4A-containing ubiquitin-ligase complex through VprBP/DCAF1. HIV2 Vpr has two Vpr-like proteins, Vpr and Vpx, which cause G(2) arrest and facilitate macrophage infection, respectively. HIV2 Vpr, but not Vpx, engages the same set of proteins. We further demonstrate that the interaction between Vpr and the ubiquitin-ligase components as well as further assembly of the ubiquitin-ligase are necessary for Vpr-mediated G(2) arrest. Our data support a model in which Vpr engages the ubiquitin ligase to deplete a cellular factor that is required for cell cycle progression into mitosis. Vpr, thus, functions like the HIV1 proteins Vif and Vpu to usurp cellular ubiquitin ligases for viral functions.
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N K Heinzinger, M I Bukinsky, Sheryl Haggerty et al. · Proceedings of the National Academy of Sciences · 1994 · 842 citations
Viral Replication, Influences Nuclear Localization, Viral Polymerase Mechanism +18
HIV-1 Genome Nuclear Import Is Mediated by a Central DNA Flap
Véronique Zennou, Caroline Petit, Denise Guétard et al. · Cell · 2000 · 818 citations
Molecular architecture and assembly of the DDB1–CUL4A ubiquitin ligase machinery
Stéphane Angers, Ti Li, Xianhua Yi et al. · Nature · 2006 · 654 citations