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Transcriptional Regulation

Role of DBP in the Circadian Oscillatory Mechanism

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Pages 4773-4781 | Received 10 Jan 2000, Accepted 20 Mar 2000, Published online: 28 Mar 2023

REFERENCES

  • Albrecht, U., Sun, Z. S., Eichele, G., and Lee, C. C.. 1997. A differential response of two putative mammalian circadian regulators, mper1 and mper2, to light. Cell 91:1055–1064
  • Ban, Y., Shigeyoshi, Y., and Okamura, H.. 1997. Development of circadian VIP rhythm in the rat suprachiasmatic nucleus. J. Neurosci. 17:3920–3931
  • Blau, J., and Young, M. W.. 1999. Cycling vrille expression is required for a functional Drosophila clock. Cell 99:661–671
  • Citri, Y., Colot, H. V., Jacquier, A. C., Yu, Q., Hall, J. C., Baltimore, D., and Rosbach, M.. 1987. A family of unusually spliced biologically active transcripts encoded by a Drosophila clock gene. Nature 326:42–47
  • Dunlap, J. C.. 1999. Molecular bases for circadian clocks. Cell 96:271–290
  • Falvey, E., Fleury-Olela, F., and Schibler, U.. 1995. The rat hepatic leukemia factor (HLF) gene encodes two transcriptional activators with distinct circadian rhythms, tissue distributions and target preferences. EMBO J. 14:4307–4317
  • Falvey, E., Marcacci, L., and Schibler, U.. 1996. DNA-binding specificity of PAR and C/EBP leucine zipper proteins: a single amino acid substitution in the C/EBP DNA-binding domain confers PAR-like specificity to C/EBP. Biol. Chem. 377:797–809
  • Fonjallaz, P., Ossipow, V., Wanner, G., and Schibler, U.. 1996. The two PAR leucine zipper proteins, TEF and DBP, display similar circadian and tissue-specific expression, but have different target promoter preferences. EMBO J. 15:351–362
  • Gekakis, N., Staknis, D., Nguyen, H. B., Davis, F. C., Wilsbacher, L. D., King, D. P., Tahahashi, J. S., and Weitz, C. J.. 1998. Role of the CLOCK protein in the mammalian circadian mechanism. Science 280:1564–1569
  • George, H., and Terracol, R.. 1997. The vrille gene of Drosophila is a maternal enhancer of decapentaplegic and encodes a new member of the bZIP family of transcription factors. Genomics 146:1345–1363
  • Hardin, P. E., Hall, J. C., and Rosbash, M.. 1990. Feedback of the drosophila period gene product on circadian cycling of its messenger RNA levels. Nature 343:536–540
  • Hastings, M. H., Field, M. D., Maywood, E. S., Weaver, D. R., and Reppert, S. M.. 1999. Differential regulation of mPER1 and mTIM proteins in the mouse suprachiasmatic nuclei: new insights into a core clock mechanism. J. Neurosci. 11:1–7
  • Jackson, F. R., Bargiello, T. A., Yun, S. H., and Young, M. W.. 1986. Product of per locus of Drosophila shares homology with proteoglycans. Nature 320:185–188
  • Jin, X., Shearman, L. P., Weaver, D. R., Zylka, M. J., de Vries, G. J., and Reppert, S. M.. 1999. A molecular mechanism regulating rhythmic output from the suprachiasmatic nucleus. Cell 96:57–68
  • Kageyama, R., Sasai, Y., and Nakanishi, S.. 1991. Molecular characterization of transcription factors that bind to the cAMP responsive region of the substance P precursor gene: cDNA cloning of a novel C/EBP-related factor. J. Biol. Chem. 266:15525–15531
  • Klein, D. C., Moore, R. Y., and Reppert, S. M.. Suprachiasmatic nucleus: the mind's clock 1991 467 Oxford University Press, New York, N.Y
  • Kondo, T., and Ishiura, M.. 1999. The circadian clocks of plants and cyanobacteria. Trends Plant Sci. 4:171–176
  • Kume, K., Zylka, M. J., Sriram, S., Shearman, L. P., Weaver, D. H., Jin, X., Maywood, E., Hastings, M. H., and Reppert, S. M.. 1999. mCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop. Cell 98:193–205
  • Lee, C., Bae, K., and Edery, I.. 1998. The Drosophila CLOCK protein undergoes daily rhythms in abundance, phosphorylation, and interactions with the PER-TIM complex. Neuron 21:857–867
  • Lopez-Molina, L., Conquet, F., Dubois-Dauphin, M., and Schibler, U.. 1997. The DBP gene is expressed according to a circadian rhythm in the suprachiasmatic nucleus and influences circadian behavior. EMBO J. 16:6762–6771
  • Moore, R. Y.. 1982. The suprachiasmatic nucleus and the organization of a circadian system. TINS (Trends Neurosci.) 5:404–407
  • Mueller, C. R., Maire, P., and Schibler, U.. 1990. DBP, a liver-enriched transcriptional activator, is expressed late in ontogeny and its tissue specificity is determined posttranscriptionally. Cell 61:279–291
  • Okamura, H., Miyake, S., Sumi, Y., Yamaguchi, S., Yasui, A., Muijtjens, M., Hoeijmakers, J. H., and van der Horst, G. T.. 1999. Photic induction of mPer1 and mPer2 in cry-deficient mice lacking a biological clock. Science 286:2531–2534
  • Sangoram, A. M., Saez, L., Antoch, M. P., Gekakis, N., Staknis, D., Whiteley, A., Fruechte, E. M., Vitaterna, M. H., Shimomura, K., King, D. P., Young, M. W., Weitz, C. J., and Takahashi, J. S.. 1998. Mammalian circadian autoregulatory loop: a timeless ortholog and mPer1 interact and negatively regulate CLOCK-BMAL1-induced transcription. Neuron 21:1101–1113
  • Schreiber, E., Matthias, P., Mueller, M., and Schffner, W.. 1989. Rapid detection of octamer binding proteins with “mini-extracts” prepared from a small number of cells. Nucleic Acids Res. 17: 6419
  • Shearman, L. P., Zylka, M. J., Weaver, D. R., Kolakowski, L. F. J., and Reppert, S. M.. 1997. Two period homologs: circadian expression and photic regulation in the suprachiasmatic nuclei. Neuron 19:1261–1269
  • Shigeyoshi, Y., Taguchi, K., Yamamoto, S., Takekida, S., Yan, L., Tei, H., Moriya, T., Shibata, S., Loros, J. J., Dunlap, J. C., and Okamura, H.. 1997. Light-induced resetting of a mammalian circadian clock is associated with rapid induction of the mPer1 transcript. Cell 91:1043–1053
  • Sun, Z. S., Albrecht, U., Zhuchenko, O., Bailey, J., Eichele, G., and Lee, C. C.. 1997. RIGUI, a putative mammalian ortholog of the Drosophila period gene. Cell 90:1003–1011
  • Takumi, T., Matsubara, C., Shigeyoshi, Y., Taguchi, K., Yagita, K., Maebayashi, Y., Sakakida, Y., Okumura, K., Takashima, N., and Okamura, H.. 1998. A new mammalian period gene predominantly expressed in the suprachiasmatic nucleus. Genes Cells 3:167–176
  • Takumi, T., Taguchi, K., Miyake, S., Sakakida, Y., Takashima, N., Matsubara, C., Maebayashi, Y., Okumura, K., Takekida, S., Yamamoto, S., Yagita, K., Yan, L., Young, M. L., and Okamura, H.. 1998. A light independent oscillatory gene mPer3 in mouse SCN and OVLT. EMBO J. 17:4753–4759
  • Tei, H., Okamura, H., Shigeyoshi, Y., Fukuhara, C., Ozawa, R., Hirose, M., and Sakaki, Y.. 1997. Circadian oscillation of a mammalian homologue of the Drosophila period gene. Nature 389:512–516
  • van der Horst, G. T., Muijtjens, M., Kobayashi, K., Takano, R., Kanno, S., Takao, M., de Wit, J., Verkert, A., Eker, A. P., van Leenen, D., Buijs, R., Bootsma, D., Hoeijmakers, J. H., and Yasui, A.. 1999. Mammalian Cry1 and Cry2 are essential for maintenance of circadian rhythms. Nature 398:627–630
  • Yamaguchi, S., and Nakanishi, S.. 1998. Regional expression and regulation of alternative forms of mRNAs derived from two distinct transcription initiation sites of the rat mGluR5 gene. J. Neurochem. 71:60–68
  • Yan, L., Miyake S., and Okamura H.. 1999. Distribution and circadian expression of dbp in SCN and extra-SCN areas in the mouse brain. J. Neurosci. Res., in press.
  • Yan, L., Takekida, S., Shigeyoshi, Y., and Okamura, H.. 1999. Per1 and Per2 gene expression in the rat suprachiasmatic nucleus: circadian profile and the compartment-specific response to light. Neuroscience 94:141–150
  • Zylka, M. J., Shearman, L. P., Weaver, D. R., and Reppert, S. M.. 1998. Three period homolog in mammals: differential light responses in the suprachiasmatic circadian clock and oscillating transcripts outside of brain. Neuron 20:1103–1110

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