4.5 Article

Evidence for an overlapping role of CLOCK and NPAS2 transcription factors in liver circadian oscillators

期刊

MOLECULAR AND CELLULAR BIOLOGY
卷 28, 期 9, 页码 3070-3075

出版社

AMER SOC MICROBIOLOGY
DOI: 10.1128/MCB.01931-07

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资金

  1. NCATS NIH HHS [UL1 TR000454] Funding Source: Medline
  2. NINDS NIH HHS [NS-43459, R56 NS043459, R01 NS043459-07, R01 NS043459] Funding Source: Medline
  3. Telethon [GGP05214] Funding Source: Medline

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The mechanisms underlying the circadian control of gene expression in peripheral tissues and influencing many biological pathways are poorly defined. Factor VII (FVII), the protease triggering blood coagulation, represents a valuable model to address this issue in liver since its plasma levels oscillate in a circadian manner and its promoter contains E-boxes, which are putative DNA-binding sites for CLOCK-BMAL1 and NPAS2-BMAL1 heterodimers and hallmarks of circadian regulation. The peaks of FVII mRNA levels in livers of wild-type mice preceded those in plasma, indicating a transcriptional regulation, and were abolished in Clock(-/-); Npas2(-/-) mice, thus demonstrating a role for CLOCK and NPAS2 circadian transcription factors. The investigation of Npas2(-/-) and Clock(Delta 19/Delta 19) mice, which express functionally defective heterodimers, revealed robust rhythms of FVII expression in both animal models, suggesting a redundant role for NPAS2 and CLOCK. The molecular bases of these observations were established through reporter gene assays. FVII transactivation activities of the NPAS2-BMAL1 and CLOCK-BMAL1 heterodimers were (i) comparable (a fourfold increase), (ii) dampened by the negative circadian regulators PER2 and CRY1, and (iii) abolished upon E-box mutagenesis. Our data provide the first evidence in peripheral oscillators for an overlapping role of CLOCK and NPAS2 in the regulation of circadianly controlled genes.

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