Vpr drives massive cellular proteome remodelling in HIV-1 infection
Viral infection causes global remodelling of the cellular proteome. We previously mapped the temporal changes in abundance of thousands of proteins in HIV-1 infected cells (Greenwood & Matheson, 2016). While a small proportion of these changes were attributable to specific HIV-1 accessory proteins, most were unexplained. Here, we use complementary unbiased mass spectrometry-based approaches to demonstrate that a single viral protein, Vpr, is both necessary and sufficient to cause the vast majority of these changes. This global protein regulation requires substrate binding and degradation via DCAF1, but is mostly independent of Vpr-mediated cell cycle arrest. Combined approaches of pulsed-Stable Isotope Labelling with Amino Acids in Cell Culture (pulsed-SILAC) and immunoprecipitation-mass spectrometry (IP-MS) identified at least 38 such cellular proteins directly targeted for degradation by Vpr. Thus, whilst other HIV-1 accessory proteins downregulate a small number of host factors, Vpr degrades multiple protein targets, causing systems-level remodelling of the cellular proteome.\n\nImpact statementHIV infection causes massive changes to the cellular proteome and a single HIV protein, Vpr, is necessary and sufficient to drive almost all these changes by degrading multiple host proteins.