Abstract

Transcription of HIV-1 genes depends on the RNA polymerase II kinase and elongation factor positive transcription elongation factor b (P-TEFb), the complex of cyclin T1 and CDK9. Recent evidence suggests that regulation of transcription by P-TEFb involves chromatin binding and modifying factors. To determine how P-TEFb may connect chromatin remodeling to transcription, we investigated the relationship between P-TEFb and histone H1. We identify histone H1 as a substrate for P-TEFb involved in cellular and HIV-1 transcription. We show that P-TEFb interacts with H1 and that P-TEFb inhibition by RNAi, flavopiridol, or dominant negative CDK9 expression correlates with loss of phosphorylation and mobility of H1 in vivo. Importantly, P-TEFb directs H1 phosphorylation in response to wild-type HIV-1 infection, but not Tat-mutant HIV-1 infection. Our results show that P-TEFb phosphorylates histone H1 at a specific C-terminal phosphorylation site. Expression of a mutant H1.1 that cannot be phosphorylated by P-TEFb also disrupts Tat transactivation in an HIV reporter cell line as well as transcription of the c-fos and hsp70 genes in HeLa cells. We identify histone H1 as a novel P-TEFb substrate, and our results suggest new roles for P-TEFb in both cellular and HIV-1 transcription.

Highlights

  • Institutes of Health. □S The on-line version of this article contains supplemental Figs

  • WT Tat Expression in MAGI Cells Causes a Loss of H1 from DNA, and Flavopiridol Treatment of HeLa Cells Results in Increased H1 Binding to the c-Fos and Hsp70 Genes—Because positive transcription elongation factor b (P-TEFb) activity correlated with H1 phosphorylation, we wanted to discern whether phosphorylation of histone H1 by P-TEFb released H1 from chromatin

  • Our results show that the activity of P-TEFb correlates with in vivo phosphorylation of histone H1 and its dissociation from DNA

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Summary

Introduction

Institutes of Health. □S The on-line version of this article (available at http://www.jbc.org) contains supplemental Figs. Expression of a mutant histone H1.1 that is not phosphorylated by P-TEFb inhibits Tat transactivation of the HIV-1 LTR in a reporter cell line.

Results
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