1. Academic Validation
  2. Negative elongation factor (NELF) coordinates RNA polymerase II pausing, premature termination, and chromatin remodeling to regulate HIV transcription

Negative elongation factor (NELF) coordinates RNA polymerase II pausing, premature termination, and chromatin remodeling to regulate HIV transcription

  • J Biol Chem. 2013 Sep 6;288(36):25995-26003. doi: 10.1074/jbc.M113.496489.
Malini Natarajan 1 Gillian M Schiralli Lester 2 Chanhyo Lee 2 Anamika Missra 3 Gregory A Wasserman 4 Martin Steffen 5 David S Gilmour 3 Andrew J Henderson 6
Affiliations

Affiliations

  • 1 From the Immunology and Infectious Diseases, Integrated Biosciences Graduate Program, Penn State University, University Park, Pennsylvania 16802,; the Departments of Medicine and Infectious Diseases.
  • 2 the Departments of Medicine and Infectious Diseases.
  • 3 the Department of Biochemistry and Molecular Biology, Penn State University, University Park, Pennsylvania 16802.
  • 4 Microbiology, and.
  • 5 Pathology and Laboratory Medicine, Boston University School of Medicine, Boston, Massachusetts 02118 and.
  • 6 the Departments of Medicine and Infectious Diseases,; Microbiology, and. Electronic address: [email protected].
Abstract

A barrier to eradicating HIV Infection is targeting and eliminating latently infected cells. Events that contribute to HIV transcriptional latency include repressive chromatin structure, transcriptional interference, the inability of Tat to recruit positive transcription factor b, and poor processivity of RNA polymerase II (RNAP II). In this study, we investigated mechanisms by which negative elongation factor (NELF) establishes and maintains HIV latency. Negative elongation factor (NELF) induces RNAP II promoter proximal pausing and limits provirus expression in HIV-infected primary CD4(+) T cells. Decreasing NELF expression overcomes RNAP II pausing to enhance HIV transcription elongation in infected primary T cells, demonstrating the importance of pausing in repressing HIV transcription. We also show that RNAP II pausing is coupled to premature transcription termination and chromatin remodeling. NELF interacts with Pcf11, a transcription termination factor, and diminishing Pcf11 in primary CD4(+) T cells induces HIV transcription elongation. In addition, we identify NCoR1-GPS2-HDAC3 as a NELF-interacting corepressor complex that is associated with repressed HIV long terminal repeats. We propose a model in which NELF recruits Pcf11 and NCoR1-GPS2-HDAC3 to paused RNAP II, reinforcing repression of HIV transcription and establishing a critical checkpoint for HIV transcription and latency.

Keywords

HIV; RNA Polymerase II; Transcription Elongation Factors; Transcription Regulation; Transcription Repressor.

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