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Identification of a novel circadian clock modulator controlling BMAL1 expression through a ROR/REV-ERB-response element-dependent mechanism

Title
Identification of a novel circadian clock modulator controlling BMAL1 expression through a ROR/REV-ERB-response element-dependent mechanism
Authors
Lee, JiyeonLee, SeungbeomChung, SooyoungPark, NoheonSon, Gi HoonAn, HongchanJang, JaebongChang, Dong-JoSuh, Young-GerKim, Kyungjin
Ewha Authors
정수영
SCOPUS Author ID
정수영scopus
Issue Date
2016
Journal Title
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
ISSN
0006-291XJCR Link

1090-2104JCR Link
Citation
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS vol. 469, no. 3, pp. 580 - 586
Keywords
Circadian rhythmCircadian clockBrain-muscle-ARNT-like protein 1ROR/REV-ERB-response elementRev-erb alphaSmall molecule
Publisher
ACADEMIC PRESS INC ELSEVIER SCIENCE
Indexed
SCIE; SCOPUS WOS
Document Type
Article
Abstract
Circadian rhythms, biological oscillations with a period of about 24 h, are maintained by an innate genetically determined time-keeping system called the molecular circadian clockwork. Despite the physiological and clinical importance of the circadian clock, development of small molecule modulators targeting the core clock machinery has only recently been initiated. BMAL1, a core clock gene, is controlled by a ROR/REV-ERB-response element (RORE)-dependent mechanism, which plays an important role in stabilizing the period of the molecular circadian clock. Therefore, we aimed to identify a novel small molecule modulator that regulates Bmal1 gene expression in RORE-dependency, thereby influencing the molecular feedback loop of the circadian clock. For this purpose, we carried out a cell-based screen of more than 1000 drug-like compounds, using a luciferase reporter driven by the proximal region of the mouse Bmal1 promoter. One compound, designated KK-S6, repressed the RORE-dependent transcriptional activity of the mBmal1 promoter and reduced endogenous BMAL1 protein expression. More importantly, KK-S6 significantly altered the amplitude of circadian oscillations of Bmal1 and Pert promoter activities in a dose-dependent manner, but barely affected the period length. KK-S6 effectively decreased mRNA expression of metabolic genes acting downstream of REV-ERB alpha, Pai-1 and Citrate synthase, that contain RORE cis-element in their promoter. KK-S6 likely acts in a RORE-dependent manner by reinforcing the REV-ERBa activity, though not by the same mechanism as known REV-ERB agonists. In conclusion, the present study demonstrates that KK-S6 functions as a novel modulator of the amplitude of molecular circadian rhythms by influencing RORE-mediated BMAL1 expression. (C) 2015 The Authors. Published by Elsevier Inc.
DOI
10.1016/j.bbrc.2015.12.030
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일반대학원 > 뇌·인지과학과 > Journal papers
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