메뉴 건너뛰기




Volumn 25, Issue 6, 2013, Pages 730-734

The circadian clock and cell cycle: Interconnected biological circuits

Author keywords

[No Author keywords available]

Indexed keywords

CELL CYCLE PROTEIN; CHECKPOINT KINASE 1; CRYPTOCHROME 1; CRYPTOCHROME 2; CYCLIN B1; CYCLIN D1; CYCLIN DEPENDENT KINASE 1; HISTONE ACETYLTRANSFERASE; HISTONE H3; MESSENGER RNA; NICOTINAMIDE ADENINE DINUCLEOTIDE; PROTEIN BMAL1; PROTEIN P20; PROTEIN P21; PROTEIN TIMELESS; REPRESSOR PROTEIN; RNA BINDING PROTEIN; SIRTUIN 1; XERODERMA PIGMENTOSUM GROUP A PROTEIN;

EID: 84887627313     PISSN: 09550674     EISSN: 18790410     Source Type: Journal    
DOI: 10.1016/j.ceb.2013.07.013     Document Type: Review
Times cited : (98)

References (48)
  • 1
    • 77951927020 scopus 로고    scopus 로고
    • Suprachiasmatic nucleus: cell autonomy and network properties
    • Welsh D.K., Takahashi J.S., Kay S.A. Suprachiasmatic nucleus: cell autonomy and network properties. Annu Rev Physiol 2010, 72:551-577.
    • (2010) Annu Rev Physiol , vol.72 , pp. 551-577
    • Welsh, D.K.1    Takahashi, J.S.2    Kay, S.A.3
  • 2
    • 0037184977 scopus 로고    scopus 로고
    • A web of circadian pacemakers
    • Schibler U., Sassone-Corsi P. A web of circadian pacemakers. Cell 2002, 111:919-922.
    • (2002) Cell , vol.111 , pp. 919-922
    • Schibler, U.1    Sassone-Corsi, P.2
  • 3
    • 84871445347 scopus 로고    scopus 로고
    • The circadian clock: a framework linking metabolism, epigenetics and neuronal function
    • Masri S., Sassone-Corsi P. The circadian clock: a framework linking metabolism, epigenetics and neuronal function. Nat Rev Neurosci 2013, 14:69-75.
    • (2013) Nat Rev Neurosci , vol.14 , pp. 69-75
    • Masri, S.1    Sassone-Corsi, P.2
  • 4
    • 33847779219 scopus 로고    scopus 로고
    • Post-translational modifications regulate the ticking of the circadian clock
    • Gallego M., Virshup D.M. Post-translational modifications regulate the ticking of the circadian clock. Nat Rev Mol Cell Biol 2007, 8:139-148.
    • (2007) Nat Rev Mol Cell Biol , vol.8 , pp. 139-148
    • Gallego, M.1    Virshup, D.M.2
  • 5
    • 0035047945 scopus 로고    scopus 로고
    • Molecular analysis of mammalian circadian rhythms
    • Reppert S.M., Weaver D.R. Molecular analysis of mammalian circadian rhythms. Annu Rev Physiol 2001, 63:647-676.
    • (2001) Annu Rev Physiol , vol.63 , pp. 647-676
    • Reppert, S.M.1    Weaver, D.R.2
  • 6
    • 34247515224 scopus 로고    scopus 로고
    • Riding tandem: circadian clocks and the cell cycle
    • Hunt T., Sassone-Corsi P. Riding tandem: circadian clocks and the cell cycle. Cell 2007, 129:461-464.
    • (2007) Cell , vol.129 , pp. 461-464
    • Hunt, T.1    Sassone-Corsi, P.2
  • 7
    • 77958489353 scopus 로고    scopus 로고
    • Circadian clocks and cell division: what's the pacemaker?
    • Johnson C.H. Circadian clocks and cell division: what's the pacemaker?. Cell Cycle 2010, 9:3864-3873.
    • (2010) Cell Cycle , vol.9 , pp. 3864-3873
    • Johnson, C.H.1
  • 8
    • 77955163148 scopus 로고    scopus 로고
    • Circadian regulation of cell cycle: molecular connections between aging and the circadian clock
    • Khapre R.V., Samsa W.E., Kondratov R.V. Circadian regulation of cell cycle: molecular connections between aging and the circadian clock. Ann Med 2010, 42:404-415.
    • (2010) Ann Med , vol.42 , pp. 404-415
    • Khapre, R.V.1    Samsa, W.E.2    Kondratov, R.V.3
  • 9
    • 0346258011 scopus 로고    scopus 로고
    • Gating of the rapid shade-avoidance response by the circadian clock in plants
    • Salter M.G., Franklin K.A., Whitelam G.C. Gating of the rapid shade-avoidance response by the circadian clock in plants. Nature 2003, 426:680-683.
    • (2003) Nature , vol.426 , pp. 680-683
    • Salter, M.G.1    Franklin, K.A.2    Whitelam, G.C.3
  • 10
    • 0029790052 scopus 로고    scopus 로고
    • Circadian gating of cell division in cyanobacteria growing with average doubling times of less than 24hours
    • Mori T., Binder B., Johnson C.H. Circadian gating of cell division in cyanobacteria growing with average doubling times of less than 24hours. Proc Natl Acad Sci U S A 1996, 93:10183-10188.
    • (1996) Proc Natl Acad Sci U S A , vol.93 , pp. 10183-10188
    • Mori, T.1    Binder, B.2    Johnson, C.H.3
  • 11
    • 76749111535 scopus 로고    scopus 로고
    • Elevated ATPase activity of KaiC applies a circadian checkpoint on cell division in Synechococcus elongatus
    • Dong G., et al. Elevated ATPase activity of KaiC applies a circadian checkpoint on cell division in Synechococcus elongatus. Cell 2010, 140:529-539.
    • (2010) Cell , vol.140 , pp. 529-539
    • Dong, G.1
  • 12
    • 0344232726 scopus 로고    scopus 로고
    • Light regulates the cell cycle in zebrafish
    • Dekens M.P., et al. Light regulates the cell cycle in zebrafish. Curr Biol 2003, 13:2051-2057.
    • (2003) Curr Biol , vol.13 , pp. 2051-2057
    • Dekens, M.P.1
  • 13
    • 22544475560 scopus 로고    scopus 로고
    • Common pathways in circadian and cell cycle clocks: light-dependent activation of Fos/AP-1 in zebrafish controls CRY-1a and WEE-1
    • Hirayama J., Cardone L., Doi M., Sassone-Corsi P. Common pathways in circadian and cell cycle clocks: light-dependent activation of Fos/AP-1 in zebrafish controls CRY-1a and WEE-1. Proc Natl Acad Sci U S A 2005, 102:10194-10199.
    • (2005) Proc Natl Acad Sci U S A , vol.102 , pp. 10194-10199
    • Hirayama, J.1    Cardone, L.2    Doi, M.3    Sassone-Corsi, P.4
  • 14
    • 84861793857 scopus 로고    scopus 로고
    • Light acts on the zebrafish circadian clock to suppress rhythmic mitosis and cell proliferation
    • Tamai T.K., Young L.C., Cox C.A., Whitmore D. Light acts on the zebrafish circadian clock to suppress rhythmic mitosis and cell proliferation. J Biol Rhythms 2012, 27:226-236.
    • (2012) J Biol Rhythms , vol.27 , pp. 226-236
    • Tamai, T.K.1    Young, L.C.2    Cox, C.A.3    Whitmore, D.4
  • 15
    • 0141889955 scopus 로고    scopus 로고
    • Control mechanism of the circadian clock for timing of cell division in vivo
    • Matsuo T., et al. Control mechanism of the circadian clock for timing of cell division in vivo. Science 2003, 302:255-259.
    • (2003) Science , vol.302 , pp. 255-259
    • Matsuo, T.1
  • 16
    • 0036231330 scopus 로고    scopus 로고
    • Rhythms in human gastrointestinal mucosa and skin
    • Bjarnason G.A., Jordan R. Rhythms in human gastrointestinal mucosa and skin. Chronobiol Int 2002, 19:129-140.
    • (2002) Chronobiol Int , vol.19 , pp. 129-140
    • Bjarnason, G.A.1    Jordan, R.2
  • 17
    • 84863895758 scopus 로고    scopus 로고
    • Brain and muscle Arnt-like protein-1 (BMAL1) controls circadian cell proliferation and susceptibility to UVB-induced DNA damage in the epidermis
    • Geyfman M., et al. Brain and muscle Arnt-like protein-1 (BMAL1) controls circadian cell proliferation and susceptibility to UVB-induced DNA damage in the epidermis. Proc Natl Acad Sci U S A 2012, 109:11758-11763.
    • (2012) Proc Natl Acad Sci U S A , vol.109 , pp. 11758-11763
    • Geyfman, M.1
  • 19
    • 41949123764 scopus 로고    scopus 로고
    • The circadian clock component BMAL1 is a critical regulator of p21WAF1/CIP1 expression and hepatocyte proliferation
    • Grechez-Cassiau A., Rayet B., Guillaumond F., Teboul M., Delaunay F. The circadian clock component BMAL1 is a critical regulator of p21WAF1/CIP1 expression and hepatocyte proliferation. J Biol Chem 2008, 283:4535-4542.
    • (2008) J Biol Chem , vol.283 , pp. 4535-4542
    • Grechez-Cassiau, A.1    Rayet, B.2    Guillaumond, F.3    Teboul, M.4    Delaunay, F.5
  • 20
    • 84876859512 scopus 로고    scopus 로고
    • Cyclin-dependent kinase inhibitor p20 controls circadian cell-cycle timing
    • Laranjeiro R., et al. Cyclin-dependent kinase inhibitor p20 controls circadian cell-cycle timing. Proc Natl Acad Sci U S A 2013, 110:6835-6840.
    • (2013) Proc Natl Acad Sci U S A , vol.110 , pp. 6835-6840
    • Laranjeiro, R.1
  • 21
    • 84878726282 scopus 로고    scopus 로고
    • Local circadian clock gates cell cycle progression of transient amplifying cells during regenerative hair cycling
    • Plikus M.V., et al. Local circadian clock gates cell cycle progression of transient amplifying cells during regenerative hair cycling. Proc Natl Acad Sci U S A 2013, 110:E2106-E2115.
    • (2013) Proc Natl Acad Sci U S A , vol.110
    • Plikus, M.V.1
  • 22
    • 33646145721 scopus 로고    scopus 로고
    • Circadian regulator CLOCK is a histone acetyltransferase
    • Doi M., Hirayama J., Sassone-Corsi P. Circadian regulator CLOCK is a histone acetyltransferase. Cell 2006, 125:497-508.
    • (2006) Cell , vol.125 , pp. 497-508
    • Doi, M.1    Hirayama, J.2    Sassone-Corsi, P.3
  • 23
    • 37249053976 scopus 로고    scopus 로고
    • CLOCK-mediated acetylation of BMAL1 controls circadian function
    • Hirayama J., et al. CLOCK-mediated acetylation of BMAL1 controls circadian function. Nature 2007, 450:1086-1090.
    • (2007) Nature , vol.450 , pp. 1086-1090
    • Hirayama, J.1
  • 24
    • 78649886477 scopus 로고    scopus 로고
    • The histone methyltransferase MLL1 permits the oscillation of circadian gene expression
    • Katada S., Sassone-Corsi P. The histone methyltransferase MLL1 permits the oscillation of circadian gene expression. Nat Struct Mol Biol 2010, 17:1414-1421.
    • (2010) Nat Struct Mol Biol , vol.17 , pp. 1414-1421
    • Katada, S.1    Sassone-Corsi, P.2
  • 25
    • 8844256589 scopus 로고    scopus 로고
    • Circadian gene expression in individual fibroblasts: cell-autonomous and self-sustained oscillators pass time to daughter cells
    • Nagoshi E., et al. Circadian gene expression in individual fibroblasts: cell-autonomous and self-sustained oscillators pass time to daughter cells. Cell 2004, 119:693-705.
    • (2004) Cell , vol.119 , pp. 693-705
    • Nagoshi, E.1
  • 26
    • 84873188631 scopus 로고    scopus 로고
    • NONO couples the circadian clock to the cell cycle
    • Kowalska E., et al. NONO couples the circadian clock to the cell cycle. Proc Natl Acad Sci U S A 2012, 110:1592-1599.
    • (2012) Proc Natl Acad Sci U S A , vol.110 , pp. 1592-1599
    • Kowalska, E.1
  • 27
    • 0028330442 scopus 로고
    • Loss of circadian behavioral rhythms and per RNA oscillations in the Drosophila mutant timeless
    • Sehgal A., Price J.L., Man B., Young M.W. Loss of circadian behavioral rhythms and per RNA oscillations in the Drosophila mutant timeless. Science 1994, 263:1603-1606.
    • (1994) Science , vol.263 , pp. 1603-1606
    • Sehgal, A.1    Price, J.L.2    Man, B.3    Young, M.W.4
  • 28
    • 16244408025 scopus 로고    scopus 로고
    • Coupling of human circadian and cell cycles by the timeless protein
    • Unsal-Kacmaz K., Mullen T.E., Kaufmann W.K., Sancar A. Coupling of human circadian and cell cycles by the timeless protein. Mol Cell Biol 2005, 25:3109-3116.
    • (2005) Mol Cell Biol , vol.25 , pp. 3109-3116
    • Unsal-Kacmaz, K.1    Mullen, T.E.2    Kaufmann, W.K.3    Sancar, A.4
  • 29
    • 77449084056 scopus 로고    scopus 로고
    • Mammalian TIMELESS is required for ATM-dependent CHK2 activation and G2/M checkpoint control
    • Yang X., Wood P.A., Hrushesky W.J. Mammalian TIMELESS is required for ATM-dependent CHK2 activation and G2/M checkpoint control. J Biol Chem 2010, 285:3030-3034.
    • (2010) J Biol Chem , vol.285 , pp. 3030-3034
    • Yang, X.1    Wood, P.A.2    Hrushesky, W.J.3
  • 30
    • 33646084831 scopus 로고    scopus 로고
    • The circadian gene per1 plays an important role in cell growth and DNA damage control in human cancer cells
    • Gery S., et al. The circadian gene per1 plays an important role in cell growth and DNA damage control in human cancer cells. Mol Cell 2006, 22:375-382.
    • (2006) Mol Cell , vol.22 , pp. 375-382
    • Gery, S.1
  • 31
    • 0142052946 scopus 로고    scopus 로고
    • Requirement of mammalian Timeless for circadian rhythmicity
    • Barnes J.W., et al. Requirement of mammalian Timeless for circadian rhythmicity. Science 2003, 302:439-442.
    • (2003) Science , vol.302 , pp. 439-442
    • Barnes, J.W.1
  • 32
    • 0033944040 scopus 로고    scopus 로고
    • A time-less function for mouse timeless
    • Gotter A.L., et al. A time-less function for mouse timeless. Nat Neurosci 2000, 3:755-756.
    • (2000) Nat Neurosci , vol.3 , pp. 755-756
    • Gotter, A.L.1
  • 33
    • 47749140333 scopus 로고    scopus 로고
    • SIRT1 regulates circadian clock gene expression through PER2 deacetylation
    • Asher G., et al. SIRT1 regulates circadian clock gene expression through PER2 deacetylation. Cell 2008, 134:317-328.
    • (2008) Cell , vol.134 , pp. 317-328
    • Asher, G.1
  • 34
    • 47549088250 scopus 로고    scopus 로고
    • The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control
    • Nakahata Y., et al. The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control. Cell 2008, 134:329-340.
    • (2008) Cell , vol.134 , pp. 329-340
    • Nakahata, Y.1
  • 35
    • 58149202185 scopus 로고    scopus 로고
    • Phosphorylation regulates SIRT1 function
    • Sasaki T., et al. Phosphorylation regulates SIRT1 function. PLoS ONE 2008, 3:e4020.
    • (2008) PLoS ONE , vol.3
    • Sasaki, T.1
  • 36
    • 0035913903 scopus 로고    scopus 로고
    • HSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase
    • Vaziri H., et al. hSIR2(SIRT1) functions as an NAD-dependent p53 deacetylase. Cell 2001, 107:149-159.
    • (2001) Cell , vol.107 , pp. 149-159
    • Vaziri, H.1
  • 37
    • 0035913911 scopus 로고    scopus 로고
    • Negative control of p53 by Sir2alpha promotes cell survival under stress
    • Luo J., et al. Negative control of p53 by Sir2alpha promotes cell survival under stress. Cell 2001, 107:137-148.
    • (2001) Cell , vol.107 , pp. 137-148
    • Luo, J.1
  • 38
    • 12144290563 scopus 로고    scopus 로고
    • Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase
    • Brunet A., et al. Stress-dependent regulation of FOXO transcription factors by the SIRT1 deacetylase. Science 2004, 303:2011-2015.
    • (2004) Science , vol.303 , pp. 2011-2015
    • Brunet, A.1
  • 39
    • 77949826561 scopus 로고    scopus 로고
    • Circadian gating of the cell cycle revealed in single cyanobacterial cells
    • Yang Q., Pando B.F., Dong G., Golden S.S., van Oudenaarden A. Circadian gating of the cell cycle revealed in single cyanobacterial cells. Science 2010, 327:1522-1526.
    • (2010) Science , vol.327 , pp. 1522-1526
    • Yang, Q.1    Pando, B.F.2    Dong, G.3    Golden, S.S.4    van Oudenaarden, A.5
  • 40
    • 27944487902 scopus 로고    scopus 로고
    • Logic of the yeast metabolic cycle: temporal compartmentalization of cellular processes
    • Tu B.P., Kudlicki A., Rowicka M., McKnight S.L. Logic of the yeast metabolic cycle: temporal compartmentalization of cellular processes. Science 2005, 310:1152-1158.
    • (2005) Science , vol.310 , pp. 1152-1158
    • Tu, B.P.1    Kudlicki, A.2    Rowicka, M.3    McKnight, S.L.4
  • 41
    • 80655129491 scopus 로고    scopus 로고
    • Mammalian cryptochromes impinge on cell cycle progression in a circadian clock-independent manner
    • Destici E., Oklejewicz M., Saito S., van der Horst G.T. Mammalian cryptochromes impinge on cell cycle progression in a circadian clock-independent manner. Cell Cycle 2011, 10:3788-3797.
    • (2011) Cell Cycle , vol.10 , pp. 3788-3797
    • Destici, E.1    Oklejewicz, M.2    Saito, S.3    van der Horst, G.T.4
  • 42
    • 84866753021 scopus 로고    scopus 로고
    • Effect of circadian clock mutations on DNA damage response in mammalian cells
    • Gaddameedhi S., Reardon J.T., Ye R., Ozturk N., Sancar A. Effect of circadian clock mutations on DNA damage response in mammalian cells. Cell Cycle 2012, 11:3481-3491.
    • (2012) Cell Cycle , vol.11 , pp. 3481-3491
    • Gaddameedhi, S.1    Reardon, J.T.2    Ye, R.3    Ozturk, N.4    Sancar, A.5
  • 44
    • 65549103855 scopus 로고    scopus 로고
    • Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis
    • Ramsey K.M., et al. Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis. Science 2009, 324:651-654.
    • (2009) Science , vol.324 , pp. 651-654
    • Ramsey, K.M.1
  • 45
    • 69549130816 scopus 로고    scopus 로고
    • Circadian rhythms of extracellular ATP accumulation in suprachiasmatic nucleus cells and cultured astrocytes
    • Womac A.D., Burkeen J.F., Neuendorff N., Earnest D.J., Zoran M.J. Circadian rhythms of extracellular ATP accumulation in suprachiasmatic nucleus cells and cultured astrocytes. Eur J Neurosci 2009, 30:869-876.
    • (2009) Eur J Neurosci , vol.30 , pp. 869-876
    • Womac, A.D.1    Burkeen, J.F.2    Neuendorff, N.3    Earnest, D.J.4    Zoran, M.J.5
  • 47
    • 84859459231 scopus 로고    scopus 로고
    • Coordination of the transcriptome and metabolome by the circadian clock
    • Eckel-Mahan K.L., et al. Coordination of the transcriptome and metabolome by the circadian clock. Proc Natl Acad Sci U S A 2012, 109:5541-5546.
    • (2012) Proc Natl Acad Sci U S A , vol.109 , pp. 5541-5546
    • Eckel-Mahan, K.L.1
  • 48
    • 67649875655 scopus 로고    scopus 로고
    • Measurement of internal body time by blood metabolomics
    • Minami Y., et al. Measurement of internal body time by blood metabolomics. Proc Natl Acad Sci U S A 2009, 106:9890-9895.
    • (2009) Proc Natl Acad Sci U S A , vol.106 , pp. 9890-9895
    • Minami, Y.1


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.