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Chronobiology International
The Journal of Biological and Medical Rhythm Research
Volume 24, 2007 - Issue 5
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Original

Activation of Human Period‐1 by PKA or CLOCK/BMAL1 Is Conferred by Separate Signal Transduction Pathways

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Pages 783-792 | Received 09 May 2007, Accepted 19 Jul 2007, Published online: 07 Jul 2009

References

  • Ahn S, Olive M, Aggarwal S, Krylov D, Ginty D D, Vinson C. A dominant‐negative inhibitor of CREB reveals that it is a general mediator of stimulus‐dependent transcription of c‐Fos. Mol. Cell. Biol. 1998; 18: 967–977
  • Akashi M, Ichise T, Mamine T, Takumi T. Molecular mechanism of cell‐autonomous circadian gene expression of Period 2, a crucial regulator of the mammalian circadian clock. Mol. Biol. Cell. 2006; 17: 555–565
  • Albrecht U. The mammalian circadian clock: a network of gene expression. Front. Biosci. 2004; 9: 48–55
  • Allada R, Emery P, Takahashi J S, Rosbash M. Stopping time: the genetics of fly and mouse circadian clocks. Annu. Rev. Neurosci. 2001; 24: 1091–1119
  • Balsalobre A, Damiola F, Schibler U. A serum shock induces circadian gene expression in mammalian tissue culture cells. Cell 1998; 93: 929–937
  • Bunger M K, Wilsbacher L D, Moran S M, Clendenin C, Radcliffe L A, Hogenesch J B, Simon M C, Takahashi J S, Bradfield C A. Mop3 is an essential component of the master circadian pacemaker in mammals. Cell 2000; 103: 1009–1017
  • Day R N, Walder J A, Maurer R A. A protein kinase inhibitor gene reduces both basal and multihormone‐stimulated prolactin gene transcription. J. Biol. Chem. 1989; 264: 431–436
  • Debruyne J P, Noton E, Lambert C M, Maywood E S, Weaver D R, Reppert S M. A Clock shock: Mouse CLOCK is not required for circadian oscillator function. Neuron 2006; 50: 465–477
  • De Rooij J, Zwartkruis F J, Verheijen M H, Cool R H, Nijman S M, Wittinghofer A, Bos J L. Epac is a Rap1 guanine‐nucleotide‐exchange factor directly activated by cyclic AMP. Nature 1998; 396: 474–477
  • Dunlap J C. Molecular bases for circadian clocks. Cell 1999; 96: 271–290
  • Gekakis N, Staknis D, Nguyen H B, Davis F C, Wilsbacher L D, King D P, Takahashi J S, Weitz C J. Role of the CLOCK protein in the mammalian circadian mechanism. Science 1998; 280: 1564–1569
  • Griffin E A, Jr, Staknis D, Weitz C J. Light‐independent role of CRY1 and CRY2 in the mammalian circadian clock. Science 1999; 286: 768–771
  • Hida A, Koike N, Hirose M, Hattori M, Sakaki Y, Tei H. The human and mouse Period1 genes: five well‐conserved E‐boxes additively contribute to the enhancement of mPer1 transcription. Genomics 2000; 65: 224–233
  • Howard P, Day K H, Kim K E, Richardson J, Thomas J, Abraham I, Fleischmann R D, Gottesman M M, Maurer R A. Decreased catalytic subunit mRNA levels and altered catalytic subunit mRNA structure in a cAMP‐resistant Chinese hamster ovary cell line. J. Biol. Chem. 1991; 266: 10189–10195
  • King D P, Zhao Y, Sangoram A M, Wilsbacher L D, Tanaka M, Antoch M P, Steeves T D, Vitaterna M H, Kornhauser J M, Lowrey P L, Turek F W, Takahashi J S. Positional cloning of the mouse circadian clock gene. Cell 1997; 89: 641–653
  • Ko G Y, Ko M L, Dryer S E. Circadian regulation of cGMP‐gated cationic channels of chick retinal cones. Erk MAP Kinase and Ca2+/calmodulin‐dependent protein kinase II. Neuron 2001; 29: 255–266
  • Krylov D, Kasai K, Echlin D R, Taparowsky E J, Arnheiter H, Vinson C. A general method to design dominant negatives to B‐HLHZip proteins that abolish DNA binding. Proc. Natl. Acad. Sci. USA 1997; 94: 12274–12279
  • Kume K, Zylka M J, Sriram S, Shearman L P, Weaver D R, Jin X, Maywood E S, Hastings M H, Reppert S M. mCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop. Cell 1999; 98: 193–205
  • Lamph W W, Dwarki V J, Ofir R, Montminy M, Verma I M. Negative and positive regulation by transcription factor cAMP response element‐binding protein is modulated by phosphorylation. Proc. Natl. Acad. Sci. USA 1990; 87: 4320–4324
  • Maronde E, Motzkus D. Oscillation of human period 1 (hPER1) reporter gene activity in human neuroblastoma cells in vivo. Chronobiol. Int. 2003; 20: 671–681
  • Moore R Y, Lenn N J. A retinohypothalamic projection in the rat. J. Comp. Neurol. 1972; 146: 1–14
  • Motzkus D, Maronde E, Grunenberg U, Lee C C, Forssmann W G, Albrecht U. The human PER1 gene is transcriptionally regulated by multiple signaling pathways. FEBS Lett. 2000; 486: 315–319
  • Motzkus D, Albrecht U, Maronde E. The human PER1 gene is inducible by interleukin‐6. J. Mol. Neurosci. 2002; 18: 105–109
  • Nakabayashi H, Taketa K, Miyano K, Yamane T, Sato J. Growth of human hepatoma cells lines with differentiated functions in chemically defined medium. Cancer Res. 1982; 42: 3858–3863
  • Olive M, Williams S C, Dezan C, Johnson P F, Vinson C. Design of a C/EBP‐specific, dominant‐negative bZIP protein with both inhibitory and gain‐of‐function properties. J. Biol. Chem. 1996; 271: 2040–2047
  • Olive M, Krylov D, Echlin D R, Gardner K, Taparowsky E, Vinson A. A dominant negative to activation protein‐1 (AP1) that abolishes DNA binding and inhibits oncogenesis. J. Biol. Chem. 1997; 272: 18586–18594
  • Pittendrigh C S. Temporal organization: reflections of a Darwinian clock‐watcher. Annu. Rev. Physiol. 1993; 55: 16–54
  • Reppert S M, Weaver D R. Coordination of circadian timing in mammals. Nature 2002; 418: 935–941
  • Sandberg M, Butt E, Nolte C, Fischer L, Halbrügge M, Jahnsen T, Genieser H G, Jastorff B, Walter U. Characterization of Sp‐5,6‐dichloro‐1‐ß‐D‐ribofuranosylbenzimidazole‐3′,5′‐monophosphorothioate (Sp‐5,6‐DCl‐cBIMPS) as a potent and specific activator of cyclic AMP‐dependent protein kinase in cell extracts and intact cells. Biochem. J. 1991; 279: 521–527
  • Taruscio D, Zoraqi G K, Falchi M, Iosi F, Paradisi S, Fiore D I, Lavia P, Falbo V. The human per1 gene: genomic organization and promoter analysis of the first human orthologue of the Drosophila period gene. Gene 2000; 253: 161–170
  • Van der Horst G T, Muijtjens M, Kobayashi K, Takano R, Kanno S, Takao M, de Wit J, Verkerk A, Eker A P, van Leenen D, Buijs R, Bootsma D, Hoeijmakers J H, Yasui A. Mammalian Cry1 and Cry2 are essential for maintenance of circadian rhythms. Nature 1999; 398: 627–630
  • Vitaterna M H, King D P, Chang A M, Kornhauser J M, Lowrey P L, McDonald J D, Dove W F, Pinto L H, Turek F W, Takahashi J S. Mutagenesis and mapping of a mouse gene, Clock, essential for circadian behavior. Science 1994; 264: 719–725
  • Walton K M, Rehfuss R P, Chrivia J C, Lochner J E, Goodman R H. A dominant repressor of cyclic adenosine 3′,5′‐monophosphate (cAMP)‐regulated enhancer‐binding protein activity inhibits the cAMP‐mediated induction of the somatostatin promoter in vivo. Mol. Endocrinol. 1992; 6: 647–655
  • Wen W, Meinkoth J L, Tsien R Y, Taylor S S. Identification of a signal for rapid export of proteins from the nucleus. Cell 1995; 82: 463–473
  • Wilson H L, Roesler W J. CCAAT/enhancer binding proteins: Do they possess intrinsic cAMP‐inducible activity?. Mol. Cell. Endocrinol. 2002; 188: 15–20
  • Yagita K, Tamanini F, van der Horst G T, Okamura H. Molecular mechanisms of the biological clock in cultured fibroblasts. Science 2001; 292: 278–281
  • Yamaguchi S, Mitsui S, Miyake S, Yan L, Onishi H, Yagita K, Suzuki M, Shibata S, Kobayashi M, Okamura H. The 5′ upstream region of mPer1 gene contains two promoters and is responsible for circadian oscillation. Curr. Biol. 2000; 10: 873–876
  • Yamazaki S, Numano R, Abe M, Hida A, Takahashi R, Ueda M, Block G D, Sakaki Y, Menaker M, Tei H. Resetting central and peripheral circadian oscillators in transgenic rats. Science 2000; 288: 682–685
  • Yoo S V, Ko C H, Lowrey P L, Buhr E D, Song E J, Chang S, Yoo O J, Yamazaki S, Lee C, Takahashi J S. A noncanonical E‐box enhancer drives mouse Period2 circadian oscillations in vivo. Proc. Natl. Acad. Sci. USA 2005; 102: 2608–2613
  • Zambon A C, Zhang L, Minovitsky S, Kanter J R, Prabhakar S, Salomonis N, Vranizan K, Dubchak I, Conklin B R, Insel P A. Gene expression patterns define key transcriptional events in cell‐cycle regulation by cAMP and protein kinase A. Proc. Natl. Acad. Sci. USA 2005; 102: 8561–8566
  • Zheng B, Larkin D W, Albrecht U, Sun Z S, Sage M, Eichele G, Lee C C, Bradley A. The mPer2 gene encodes a functional component of the mammalian circadian clock. Nature 1999; 400: 169–173
  • Zheng B, Albrecht U, Kaasik K, Sage M, Lu W, Vaishnav S, Li Q, Sun Z S, Eichele G, Bradley A, Lee C C. Nonredundant roles of the mPer1 and mPer2 genes in the mammalian circadian clock. Cell 2001; 105: 683–694

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