Abstract
Brd4, a bromodomain protein capable of interacting with acetylated histones, is implicated in transmitting epigenetic memory through mitosis. It also functions as an associated factor and positive regulator of P-TEFb, a Cdk9-cyclin T1 heterodimer that stimulates transcriptional elongation by phosphorylating RNA polymerase II. In the present study, experiments were performed to determine whether these two functions of Brd4 are interrelated and, if so, how they may impact cell cycle progression. Our data demonstrate that while the P-TEFb level remains constant, the Brd4-P-TEFb interaction increases dramatically in cells progressing from late mitosis to early G(1). Concurrently, P-TEFb is recruited to chromosomes, beginning around mid- to late anaphase and before nuclear envelope/lamina formation and nuclear import of other general transcription factors. Importantly, the recruitment of P-TEFb depends on Brd4. Abrogation of this process through Brd4 knockdown reduces the binding of P-TEFb to and expression of key G(1) and growth-associated genes, leading to G(1) cell cycle arrest and apoptosis. Because P-TEFb is synonymous with productive elongation, its recruitment by Brd4 to chromosomes at late mitosis may indicate those genes whose active transcription status must be preserved across cell division.
MeSH Terms
Apoptosis
Cell Cycle
Cell Cycle Proteins
Cell Line
Chromosomes/metabolism
G1 Phase/genetics
Gene Expression Regulation
Gene Silencing
HeLa Cells
Humans
Mitosis
Nuclear Proteins/genetics,metabolism,physiology
Positive Transcriptional Elongation Factor B/metabolism
Protein Binding
Transcription Factors/genetics,metabolism,physiology
Transcription, Genetic
Chemicals
BRD4 protein, human
Cell Cycle Proteins
Nuclear Proteins
Transcription Factors
Positive Transcriptional Elongation Factor B
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Yang Zhiyuan
Department of Molecular and Cell Biology, University of California, 622 Barker Hall, Room 3202, Berkeley, CA 94720, USA.
He Nanhai
Zhou Qiang
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