4.6 Review

The E2F1 transcription factor and RB tumor suppressor moonlight as DNA repair factors

Journal

CELL CYCLE
Volume 19, Issue 18, Pages 2260-2269

Publisher

TAYLOR & FRANCIS INC
DOI: 10.1080/15384101.2020.1801190

Keywords

ATM; ATR; TopBP1; GCN5; p300; CBP; BRG1

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Funding

  1. Division of Cancer Epidemiology and Genetics, National Cancer Institute [CA214723]

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The E2F1 transcription factor and RB tumor suppressor are best known for their roles in regulating the expression of genes important for cell cycle progression but, they also have transcription-independent functions that facilitate DNA repair at sites of damage. Depending on the type of DNA damage, E2F1 can recruit either the GCN5 or p300/CBP histone acetyltransferases to deposit different histone acetylation marks in flanking chromatin. At DNA double-strand breaks, E2F1 also recruits RB and the BRG1 ATPase to remodel chromatin and promote loading of the MRE11-RAD50-NBS1 complex. Knock-in mouse models demonstrate important roles for E2F1 post-translational modifications in regulating DNA repair and physiological responses to DNA damage. This review highlights how E2F1 moonlights in DNA repair, thus revealing E2F1 as a versatile protein that recruits many of the same chromatin-modifying enzymes to sites of DNA damage to promote repair that it recruits to gene promoters to regulate transcription.

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