Genome-Wide Analysis of Chromosomal Features Repressing Human Immunodeficiency Virus Transcription
- 1 June 2005
- journal article
- research article
- Published by American Society for Microbiology in Journal of Virology
- Vol. 79 (11) , 6610-6619
- https://doi.org/10.1128/jvi.79.11.6610-6619.2005
Abstract
We have investigated regulatory sequences in noncoding human DNA that are associated with repression of an integrated human immunodeficiency virus type 1 (HIV-1) promoter. HIV-1 integration results in the formation of precise and homogeneous junctions between viral and host DNA, but integration takes place at many locations. Thus, the variation in HIV-1 gene expression at different integration sites reports the activity of regulatory sequences at nearby chromosomal positions. Negative regulation of HIV transcription is of particular interest because of its association with maintaining HIV in a latent state in cells from infected patients. To identify chromosomal regulators of HIV transcription, we infected Jurkat T cells with an HIV-based vector transducing green fluorescent protein (GFP) and separated cells into populations containing well-expressed (GFP-positive) or poorly expressed (GFP-negative) proviruses. We then determined the chromosomal locations of the two classes by sequencing 971 junctions between viral and cellular DNA. Possible effects of endogenous cellular transcription were characterized by transcriptional profiling. Low-level GFP expression correlated with integration in (i) gene deserts, (ii) centromeric heterochromatin, and (iii) very highly expressed cellular genes. These data provide a genome-wide picture of chromosomal features that repress transcription and suggest models for transcriptional latency in cells from HIV-infected patients.Keywords
This publication has 54 references indexed in Scilit:
- Retroviral DNA Integration: ASLV, HIV, and MLV Show Distinct Target Site PreferencesPLoS Biology, 2004
- The structure and evolution of centromeric transition regions within the human genomeNature, 2004
- Intergenic transcription is required to repress the Saccharomyces cerevisiae SER3 geneNature, 2004
- RNA interference against retrovirusesVirus Research, 2004
- A gene atlas of the mouse and human protein-encoding transcriptomesProceedings of the National Academy of Sciences, 2004
- Approaches for the sequence-specific knockdown of mRNANature Biotechnology, 2003
- HIV-1 Integration in the Human Genome Favors Active Genes and Local HotspotsCell, 2002
- RNA Silencing: The Genome's Immune SystemScience, 2002
- Translating the Histone CodeScience, 2001
- Interaction in vivo between strong closely spaced constitutive promotersJournal of Molecular Biology, 1979