X4 and R5 HIV-1 have distinct post-entry requirements for uracil DNA glycosylase during infection of primary cells.

Kate L Jones, Michael Roche, Michael P Gantier, Nasim A Begum, Tasuku Honjo, Salvatore Caradonna, Bryan R G Williams, Johnson Mak

Centre for Virology, Burnet Institute, Melbourne, Victoria 3004, Australia.

Journal Article: Journal of Biological Chemistry (impact factor: 5.33). 04/2010; 285(24):18603-14. DOI: 10.1074/jbc.M109.090126

Abstract

It has been assumed that R5 and X4 HIV utilize similar strategies to support viral cDNA synthesis post viral entry. In this study, we provide evidence to show that R5 and X4 HIV have distinct requirements for host cell uracil DNA glycosylase (UNG2) during the early stage of infection. UNG2 has been previously implicated in HIV infection, but its precise role remains controversial. In this study we show that, although UNG2 is highly expressed in different cell lines, UNG2 levels are low in the natural host cells of HIV. Short interfering RNA knockdown of endogenous UNG2 in primary cells showed that UNG2 is required for R5 but not X4 HIV infection and that this requirement is bypassed when HIV enters the target cell via vesicular stomatitis virus envelope-glycoprotein-mediated endocytosis. We also show that short interfering RNA knockdown of UNG2 in virus-producing primary cells leads to defective R5 HIV virions that are unable to complete viral cDNA synthesis. Quantitative PCR analysis revealed that endogenous UNG2 levels are transiently up-regulated post HIV infection, and this increase in UNG2 mRNA is approximately 10-20 times higher in R5 versus X4 HIV-infected cells. Our data show that both virion-associated UNG2 and HIV infection-induced UNG2 expression are critical for reverse transcription during R5 but not X4 HIV infection. More importantly, we have made the novel observation that R5 and X4 HIV have distinct host cell factor requirements and differential capacities to induce gene expression during the early stages of infection. These differences may result from activation of distinct signaling cascades and/or infection of divergent T-lymphocyte subpopulations.

Source: PubMed

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Keywords

complete viral cDNA synthesis
 
defective R5 HIV virions
 
differential capacities
 
distinct signaling cascades
 
divergent T-lymphocyte subpopulations
 
endogenous UNG2
 
endogenous UNG2 levels
 
HIV infection-induced UNG2 expression
 
induce gene expression
 
natural host cells
 
primary cells
 
Quantitative PCR analysis
 
RNA knockdown
 
support viral cDNA synthesis post viral entry
 
UNG2 mRNA
 
virion-associated UNG2
 
virus-producing primary cells
 
X4 HIV infection
 
X4 HIV utilize similar strategies
 
X4 HIV-infected cells