Canonical and atypical E2Fs regulate the mammalian endocycle.

TitleCanonical and atypical E2Fs regulate the mammalian endocycle.
Publication TypeJournal Article
Year of Publication2012
AuthorsChen H-Z, Ouseph MM, Li J, Pécot T, Chokshi V, Kent L, Bae S, Byrne M, Duran C, Comstock G, Trikha P, Mair M, Senapati S, Martin CK, Gandhi S, Wilson N, Liu B, Huang Y-W, Thompson JC, Raman S, Singh S, Leone M, Machiraju R, Huang K, Mo X, Fernandez S, Kalaszczynska I, Wolgemuth DJ, Sicinski P, Huang T, Jin V, Leone G
JournalNat Cell Biol
Volume14
Issue11
Pagination1192-202
Date Published2012 Nov
ISSN1476-4679
KeywordsAnimals, Cell Cycle, Chromatin Immunoprecipitation, E2F Transcription Factors, E2F1 Transcription Factor, E2F2 Transcription Factor, E2F3 Transcription Factor, E2F7 Transcription Factor, Female, Flow Cytometry, Giant Cells, Hepatocytes, Immunohistochemistry, Mice, Microscopy, Confocal, Microscopy, Electron, Transmission, Microscopy, Fluorescence, Pregnancy, Repressor Proteins, Trophoblasts
Abstract

The endocycle is a variant cell cycle consisting of successive DNA synthesis and gap phases that yield highly polyploid cells. Although essential for metazoan development, relatively little is known about its control or physiologic role in mammals. Using lineage-specific cre mice we identified two opposing arms of the E2F program, one driven by canonical transcription activation (E2F1, E2F2 and E2F3) and the other by atypical repression (E2F7 and E2F8), that converge on the regulation of endocycles in vivo. Ablation of canonical activators in the two endocycling tissues of mammals, trophoblast giant cells in the placenta and hepatocytes in the liver, augmented genome ploidy, whereas ablation of atypical repressors diminished ploidy. These two antagonistic arms coordinate the expression of a unique G2/M transcriptional program that is critical for mitosis, karyokinesis and cytokinesis. These results provide in vivo evidence for a direct role of E2F family members in regulating non-traditional cell cycles in mammals.

DOI10.1038/ncb2595
Alternate JournalNat Cell Biol
PubMed ID23064266
Grant ListR01HD047470 / HD / NICHD NIH HHS / United States
R01CA82259 / CA / NCI NIH HHS / United States
R01CA85619 / CA / NCI NIH HHS / United States
P01CA097189 / CA / NCI NIH HHS / United States
R01CA132740 / CA / NCI NIH HHS / United States
Related Faculty: 
Madhu Ouseph, M.D., Ph.D.

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