MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation

The circadian clock and the cell cycle systems coordinate global physiology. Here the authors show that MYC represses the clock genes, together with MIZ1, and induces proliferation, suggesting that MYC inversely modulates cell cycle and circadian clock genes.

Bibliographic Details
Main Authors: Anton Shostak, Bianca Ruppert, Nati Ha, Philipp Bruns, Umut H. Toprak, ICGC MMML-Seq Project, Roland Eils, Matthias Schlesner, Axel Diernfellner, Michael Brunner
Format: Article
Language:English
Published: Nature Publishing Group 2016-06-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/ncomms11807
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spelling doaj-de2a1204a90241d887fa042addd3ea102021-05-11T11:11:58ZengNature Publishing GroupNature Communications2041-17232016-06-017111110.1038/ncomms11807MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferationAnton Shostak0Bianca Ruppert1Nati Ha2Philipp Bruns3Umut H. Toprak4ICGC MMML-Seq ProjectRoland Eils5Matthias Schlesner6Axel Diernfellner7Michael Brunner8Heidelberg University, Biochemistry CenterHeidelberg University, Biochemistry CenterHeidelberg University, Biochemistry CenterDivision Theoretical Bioinformatics (B080), German Cancer Research Center (DKFZ)Division Theoretical Bioinformatics (B080), German Cancer Research Center (DKFZ)Division Theoretical Bioinformatics (B080), German Cancer Research Center (DKFZ)Division Theoretical Bioinformatics (B080), German Cancer Research Center (DKFZ)Heidelberg University, Biochemistry CenterHeidelberg University, Biochemistry CenterThe circadian clock and the cell cycle systems coordinate global physiology. Here the authors show that MYC represses the clock genes, together with MIZ1, and induces proliferation, suggesting that MYC inversely modulates cell cycle and circadian clock genes.https://doi.org/10.1038/ncomms11807
collection DOAJ
language English
format Article
sources DOAJ
author Anton Shostak
Bianca Ruppert
Nati Ha
Philipp Bruns
Umut H. Toprak
ICGC MMML-Seq Project
Roland Eils
Matthias Schlesner
Axel Diernfellner
Michael Brunner
spellingShingle Anton Shostak
Bianca Ruppert
Nati Ha
Philipp Bruns
Umut H. Toprak
ICGC MMML-Seq Project
Roland Eils
Matthias Schlesner
Axel Diernfellner
Michael Brunner
MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
Nature Communications
author_facet Anton Shostak
Bianca Ruppert
Nati Ha
Philipp Bruns
Umut H. Toprak
ICGC MMML-Seq Project
Roland Eils
Matthias Schlesner
Axel Diernfellner
Michael Brunner
author_sort Anton Shostak
title MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
title_short MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
title_full MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
title_fullStr MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
title_full_unstemmed MYC/MIZ1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
title_sort myc/miz1-dependent gene repression inversely coordinates the circadian clock with cell cycle and proliferation
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2016-06-01
description The circadian clock and the cell cycle systems coordinate global physiology. Here the authors show that MYC represses the clock genes, together with MIZ1, and induces proliferation, suggesting that MYC inversely modulates cell cycle and circadian clock genes.
url https://doi.org/10.1038/ncomms11807
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