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Volumn 10, Issue 4, 2014, Pages

Cell Type-Specific Functions of Period Genes Revealed by Novel Adipocyte and Hepatocyte Circadian Clock Models

Author keywords

[No Author keywords available]

Indexed keywords

SHORT HAIRPIN RNA; CIRCADIAN RHYTHM SIGNALING PROTEIN; LUCIFERASE;

EID: 84901345617     PISSN: 15537390     EISSN: 15537404     Source Type: Journal    
DOI: 10.1371/journal.pgen.1004244     Document Type: Article
Times cited : (70)

References (75)
  • 1
    • 0037194790 scopus 로고    scopus 로고
    • Coordination of circadian timing in mammals
    • Reppert SM, Weaver DR, (2002) Coordination of circadian timing in mammals. Nature 418: 935-941.
    • (2002) Nature , vol.418 , pp. 935-941
    • Reppert, S.M.1    Weaver, D.R.2
  • 2
    • 0042490526 scopus 로고    scopus 로고
    • A clockwork web: circadian timing in brain and periphery, in health and disease
    • Hastings MH, Reddy AB, Maywood ES, (2003) A clockwork web: circadian timing in brain and periphery, in health and disease. Nat Rev Neurosci 4: 649-661.
    • (2003) Nat Rev Neurosci , vol.4 , pp. 649-661
    • Hastings, M.H.1    Reddy, A.B.2    Maywood, E.S.3
  • 3
    • 34548660850 scopus 로고    scopus 로고
    • Mammalian circadian signaling networks and therapeutic targets
    • Liu AC, Lewis WG, Kay SA, (2007) Mammalian circadian signaling networks and therapeutic targets. Nat Chem Biol 3: 630-639.
    • (2007) Nat Chem Biol , vol.3 , pp. 630-639
    • Liu, A.C.1    Lewis, W.G.2    Kay, S.A.3
  • 6
    • 8844256589 scopus 로고    scopus 로고
    • Circadian gene expression in individual fibroblasts: cell-autonomous and self-sustained oscillators pass time to daughter cells
    • Nagoshi E, Saini C, Bauer C, Laroche T, Naef F, et al. (2004) Circadian gene expression in individual fibroblasts: cell-autonomous and self-sustained oscillators pass time to daughter cells. Cell 119: 693-705.
    • (2004) Cell , vol.119 , pp. 693-705
    • Nagoshi, E.1    Saini, C.2    Bauer, C.3    Laroche, T.4    Naef, F.5
  • 7
    • 11144311974 scopus 로고    scopus 로고
    • Bioluminescence imaging of individual fibroblasts reveals persistent, independently phased circadian rhythms of clock gene expression
    • Welsh DK, Yoo SH, Liu AC, Takahashi JS, Kay SA, (2004) Bioluminescence imaging of individual fibroblasts reveals persistent, independently phased circadian rhythms of clock gene expression. Curr Biol 14: 2289-2295.
    • (2004) Curr Biol , vol.14 , pp. 2289-2295
    • Welsh, D.K.1    Yoo, S.H.2    Liu, A.C.3    Takahashi, J.S.4    Kay, S.A.5
  • 8
    • 11144353910 scopus 로고    scopus 로고
    • PERIOD2::LUCIFERASE real-time reporting of circadian dynamics reveals persistent circadian oscillations in mouse peripheral tissues
    • Yoo SH, Yamazaki S, Lowrey PL, Shimomura K, Ko CH, et al. (2004) PERIOD2::LUCIFERASE real-time reporting of circadian dynamics reveals persistent circadian oscillations in mouse peripheral tissues. Proc Natl Acad Sci U S A 101: 5339-5346.
    • (2004) Proc Natl Acad Sci U S A , vol.101 , pp. 5339-5346
    • Yoo, S.H.1    Yamazaki, S.2    Lowrey, P.L.3    Shimomura, K.4    Ko, C.H.5
  • 9
    • 0035458732 scopus 로고    scopus 로고
    • Time zones: a comparative genetics of circadian clocks
    • Young MW, Kay SA, (2001) Time zones: a comparative genetics of circadian clocks. Nat Rev Genet 2: 702-715.
    • (2001) Nat Rev Genet , vol.2 , pp. 702-715
    • Young, M.W.1    Kay, S.A.2
  • 10
    • 34248566788 scopus 로고    scopus 로고
    • SCFFbxl3 controls the oscillation of the circadian clock by directing the degradation of cryptochrome proteins
    • Busino L, Bassermann F, Maiolica A, Lee C, Nolan PM, et al. (2007) SCFFbxl3 controls the oscillation of the circadian clock by directing the degradation of cryptochrome proteins. Science 316: 900-904.
    • (2007) Science , vol.316 , pp. 900-904
    • Busino, L.1    Bassermann, F.2    Maiolica, A.3    Lee, C.4    Nolan, P.M.5
  • 11
    • 34249097203 scopus 로고    scopus 로고
    • Circadian mutant Overtime reveals F-box protein FBXL3 regulation of cryptochrome and period gene expression
    • Siepka SM, Yoo SH, Park J, Song W, Kumar V, et al. (2007) Circadian mutant Overtime reveals F-box protein FBXL3 regulation of cryptochrome and period gene expression. Cell 129: 1011-1023.
    • (2007) Cell , vol.129 , pp. 1011-1023
    • Siepka, S.M.1    Yoo, S.H.2    Park, J.3    Song, W.4    Kumar, V.5
  • 12
    • 34248525919 scopus 로고    scopus 로고
    • The after-hours mutant reveals a role for Fbxl3 in determining mammalian circadian period
    • Godinho SI, Maywood ES, Shaw L, Tucci V, Barnard AR, et al. (2007) The after-hours mutant reveals a role for Fbxl3 in determining mammalian circadian period. Science 316: 897-900.
    • (2007) Science , vol.316 , pp. 897-900
    • Godinho, S.I.1    Maywood, E.S.2    Shaw, L.3    Tucci, V.4    Barnard, A.R.5
  • 13
    • 84875279589 scopus 로고    scopus 로고
    • Dual roles of FBXL3 in the mammalian circadian feedback loops are important for period determination and robustness of the clock
    • Shi G, Xing L, Liu Z, Qu Z, Wu X, et al. (2013) Dual roles of FBXL3 in the mammalian circadian feedback loops are important for period determination and robustness of the clock. Proc Natl Acad Sci U S A 110: 4750-4755.
    • (2013) Proc Natl Acad Sci U S A , vol.110 , pp. 4750-4755
    • Shi, G.1    Xing, L.2    Liu, Z.3    Qu, Z.4    Wu, X.5
  • 14
    • 84874768419 scopus 로고    scopus 로고
    • Competing E3 ubiquitin ligases govern circadian periodicity by degradation of CRY in nucleus and cytoplasm
    • Yoo SH, Mohawk JA, Siepka SM, Shan Y, Huh SK, et al. (2013) Competing E3 ubiquitin ligases govern circadian periodicity by degradation of CRY in nucleus and cytoplasm. Cell 152: 1091-1105.
    • (2013) Cell , vol.152 , pp. 1091-1105
    • Yoo, S.H.1    Mohawk, J.A.2    Siepka, S.M.3    Shan, Y.4    Huh, S.K.5
  • 15
    • 84874772651 scopus 로고    scopus 로고
    • FBXL21 regulates oscillation of the circadian clock through ubiquitination and stabilization of cryptochromes
    • Hirano A, Yumimoto K, Tsunematsu R, Matsumoto M, Oyama M, et al. (2013) FBXL21 regulates oscillation of the circadian clock through ubiquitination and stabilization of cryptochromes. Cell 152: 1106-1118.
    • (2013) Cell , vol.152 , pp. 1106-1118
    • Hirano, A.1    Yumimoto, K.2    Tsunematsu, R.3    Matsumoto, M.4    Oyama, M.5
  • 16
    • 13944254430 scopus 로고    scopus 로고
    • System-level identification of transcriptional circuits underlying mammalian circadian clocks
    • Ueda HR, Hayashi S, Chen W, Sano M, Machida M, et al. (2005) System-level identification of transcriptional circuits underlying mammalian circadian clocks. Nat Genet 37: 187-192.
    • (2005) Nat Genet , vol.37 , pp. 187-192
    • Ueda, H.R.1    Hayashi, S.2    Chen, W.3    Sano, M.4    Machida, M.5
  • 17
    • 40149090376 scopus 로고    scopus 로고
    • Redundant function of REV-ERBalpha and beta and non-essential role for Bmal1 cycling in transcriptional regulation of intracellular circadian rhythms
    • Liu AC, Tran HG, Zhang EE, Priest AA, Welsh DK, et al. (2008) Redundant function of REV-ERBalpha and beta and non-essential role for Bmal1 cycling in transcriptional regulation of intracellular circadian rhythms. PLoS Genet 4: e1000023.
    • (2008) PLoS Genet , vol.4
    • Liu, A.C.1    Tran, H.G.2    Zhang, E.E.3    Priest, A.A.4    Welsh, D.K.5
  • 18
    • 84860264490 scopus 로고    scopus 로고
    • Regulation of circadian behaviour and metabolism by REV-ERB-alpha and REV-ERB-beta
    • Cho H, Zhao X, Hatori M, Yu RT, Barish GD, et al. (2012) Regulation of circadian behaviour and metabolism by REV-ERB-alpha and REV-ERB-beta. Nature 485: 123-127.
    • (2012) Nature , vol.485 , pp. 123-127
    • Cho, H.1    Zhao, X.2    Hatori, M.3    Yu, R.T.4    Barish, G.D.5
  • 19
    • 84867667011 scopus 로고    scopus 로고
    • Transcriptional architecture and chromatin landscape of the core circadian clock in mammals
    • Koike N, Yoo SH, Huang HC, Kumar V, Lee C, et al. (2012) Transcriptional architecture and chromatin landscape of the core circadian clock in mammals. Science 338: 349-354.
    • (2012) Science , vol.338 , pp. 349-354
    • Koike, N.1    Yoo, S.H.2    Huang, H.C.3    Kumar, V.4    Lee, C.5
  • 21
    • 78651491409 scopus 로고    scopus 로고
    • Delay in feedback repression by cryptochrome 1 is required for circadian clock function
    • Ukai-Tadenuma M, Yamada RG, Xu H, Ripperger JA, Liu AC, et al. (2011) Delay in feedback repression by cryptochrome 1 is required for circadian clock function. Cell 144: 268-281.
    • (2011) Cell , vol.144 , pp. 268-281
    • Ukai-Tadenuma, M.1    Yamada, R.G.2    Xu, H.3    Ripperger, J.A.4    Liu, A.C.5
  • 22
    • 79956300350 scopus 로고    scopus 로고
    • Understanding systems-level properties: timely stories from the study of clocks
    • Hogenesch JB, Ueda HR, (2011) Understanding systems-level properties: timely stories from the study of clocks. Nat Rev Genet 12: 407-416.
    • (2011) Nat Rev Genet , vol.12 , pp. 407-416
    • Hogenesch, J.B.1    Ueda, H.R.2
  • 23
    • 84868295015 scopus 로고    scopus 로고
    • Monitoring cell-autonomous circadian clock rhythms of gene expression using luciferase bioluminescence reporters
    • doi:4210.37914234.:4210.3791/4234
    • Ramanathan C, Khan SK, Kathale ND, Xu H, Liu AC, (2012) Monitoring cell-autonomous circadian clock rhythms of gene expression using luciferase bioluminescence reporters. J Vis Exp pp. e4234 doi 4210.37914234.:4210.3791/4234.
    • (2012) J Vis Exp
    • Ramanathan, C.1    Khan, S.K.2    Kathale, N.D.3    Xu, H.4    Liu, A.C.5
  • 24
    • 84864394571 scopus 로고    scopus 로고
    • Identification of a novel cryptochrome differentiating domain required for feedback repression in circadian clock function
    • Khan SK, Xu H, Ukai-Tadenuma M, Burton B, Wang Y, et al. (2012) Identification of a novel cryptochrome differentiating domain required for feedback repression in circadian clock function. J Biol Chem 287: 25917-25926.
    • (2012) J Biol Chem , vol.287 , pp. 25917-25926
    • Khan, S.K.1    Xu, H.2    Ukai-Tadenuma, M.3    Burton, B.4    Wang, Y.5
  • 25
    • 79955879737 scopus 로고    scopus 로고
    • Intracellular and intercellular processes determine robustness of the circadian clock
    • Hogenesch JB, Herzog ED, (2011) Intracellular and intercellular processes determine robustness of the circadian clock. FEBS Lett 585: 1427-1434.
    • (2011) FEBS Lett , vol.585 , pp. 1427-1434
    • Hogenesch, J.B.1    Herzog, E.D.2
  • 26
    • 77951897767 scopus 로고    scopus 로고
    • Systems biology of mammalian circadian clocks
    • Ukai H, Ueda HR, (2010) Systems biology of mammalian circadian clocks. Annu Rev Physiol 72: 579-603.
    • (2010) Annu Rev Physiol , vol.72 , pp. 579-603
    • Ukai, H.1    Ueda, H.R.2
  • 28
    • 33644625748 scopus 로고    scopus 로고
    • Feedback repression is required for mammalian circadian clock function
    • Sato TK, Yamada RG, Ukai H, Baggs JE, Miraglia LJ, et al. (2006) Feedback repression is required for mammalian circadian clock function. Nat Genet 38: 312-319.
    • (2006) Nat Genet , vol.38 , pp. 312-319
    • Sato, T.K.1    Yamada, R.G.2    Ukai, H.3    Baggs, J.E.4    Miraglia, L.J.5
  • 29
    • 81055145332 scopus 로고    scopus 로고
    • Cell-autonomous circadian clock of hepatocytes drives rhythms in transcription and polyamine synthesis
    • Atwood A, DeConde R, Wang SS, Mockler TC, Sabir JS, et al. (2011) Cell-autonomous circadian clock of hepatocytes drives rhythms in transcription and polyamine synthesis. Proc Natl Acad Sci U S A 108: 18560-18565.
    • (2011) Proc Natl Acad Sci U S A , vol.108 , pp. 18560-18565
    • Atwood, A.1    DeConde, R.2    Wang, S.S.3    Mockler, T.C.4    Sabir, J.S.5
  • 30
    • 18444414586 scopus 로고    scopus 로고
    • Coordinated transcription of key pathways in the mouse by the circadian clock
    • Panda S, Antoch MP, Miller BH, Su AI, Schook AB, et al. (2002) Coordinated transcription of key pathways in the mouse by the circadian clock. Cell 109: 307-320.
    • (2002) Cell , vol.109 , pp. 307-320
    • Panda, S.1    Antoch, M.P.2    Miller, B.H.3    Su, A.I.4    Schook, A.B.5
  • 31
    • 70349184395 scopus 로고    scopus 로고
    • A genome-wide RNAi screen for modifiers of the circadian clock in human cells
    • Zhang EE, Liu AC, Hirota T, Miraglia LJ, Welch G, et al. (2009) A genome-wide RNAi screen for modifiers of the circadian clock in human cells. Cell 139: 199-210.
    • (2009) Cell , vol.139 , pp. 199-210
    • Zhang, E.E.1    Liu, A.C.2    Hirota, T.3    Miraglia, L.J.4    Welch, G.5
  • 32
    • 66149109671 scopus 로고    scopus 로고
    • Metabolism control by the circadian clock and vice versa
    • Eckel-Mahan K, Sassone-Corsi P, (2009) Metabolism control by the circadian clock and vice versa. Nat Struct Mol Biol 16: 462-467.
    • (2009) Nat Struct Mol Biol , vol.16 , pp. 462-467
    • Eckel-Mahan, K.1    Sassone-Corsi, P.2
  • 33
    • 79551534130 scopus 로고    scopus 로고
    • Crosstalk between components of circadian and metabolic cycles in mammals
    • Asher G, Schibler U, (2011) Crosstalk between components of circadian and metabolic cycles in mammals. Cell Metab 13: 125-137.
    • (2011) Cell Metab , vol.13 , pp. 125-137
    • Asher, G.1    Schibler, U.2
  • 34
    • 0016693548 scopus 로고
    • An established preadipose cell line and its differentiation in culture. II. Factors affecting the adipose conversion
    • Green H, Kehinde O, (1975) An established preadipose cell line and its differentiation in culture. II. Factors affecting the adipose conversion. Cell 5: 19-27.
    • (1975) Cell , vol.5 , pp. 19-27
    • Green, H.1    Kehinde, O.2
  • 35
    • 0029894050 scopus 로고    scopus 로고
    • Antidiabetic thiazolidinediones inhibit leptin (ob) gene expression in 3T3-L1 adipocytes
    • Kallen CB, Lazar MA, (1996) Antidiabetic thiazolidinediones inhibit leptin (ob) gene expression in 3T3-L1 adipocytes. Proc Natl Acad Sci U S A 93: 5793-5796.
    • (1996) Proc Natl Acad Sci U S A , vol.93 , pp. 5793-5796
    • Kallen, C.B.1    Lazar, M.A.2
  • 36
    • 0031032004 scopus 로고    scopus 로고
    • Transgenic expression in the liver of truncated Met blocks apoptosis and permits immortalization of hepatocytes
    • Amicone L, Spagnoli FM, Spath G, Giordano S, Tommasini C, et al. (1997) Transgenic expression in the liver of truncated Met blocks apoptosis and permits immortalization of hepatocytes. EMBO J 16: 495-503.
    • (1997) EMBO J , vol.16 , pp. 495-503
    • Amicone, L.1    Spagnoli, F.M.2    Spath, G.3    Giordano, S.4    Tommasini, C.5
  • 37
    • 13944268227 scopus 로고    scopus 로고
    • Growth of hepatitis A virus in a mouse liver cell line
    • Feigelstock DA, Thompson P, Kaplan GG, (2005) Growth of hepatitis A virus in a mouse liver cell line. J Virol 79: 2950-2955.
    • (2005) J Virol , vol.79 , pp. 2950-2955
    • Feigelstock, D.A.1    Thompson, P.2    Kaplan, G.G.3
  • 38
    • 70450174509 scopus 로고    scopus 로고
    • Circadian rhythmicity in murine pre-adipocyte and adipocyte cells
    • Otway DT, Frost G, Johnston JD, (2009) Circadian rhythmicity in murine pre-adipocyte and adipocyte cells. Chronobiol Int 26: 1340-1354.
    • (2009) Chronobiol Int , vol.26 , pp. 1340-1354
    • Otway, D.T.1    Frost, G.2    Johnston, J.D.3
  • 39
    • 18244397169 scopus 로고    scopus 로고
    • Characteristics of Circadian Gene Expression in Mice White Adipose Tissue and 3T3-L1 Adipocytes
    • Aoyagi T, Shimba S, Tezuka M, (2005) Characteristics of Circadian Gene Expression in Mice White Adipose Tissue and 3T3-L1 Adipocytes. Journal of Health Science 51: 21-32.
    • (2005) Journal of Health Science , vol.51 , pp. 21-32
    • Aoyagi, T.1    Shimba, S.2    Tezuka, M.3
  • 40
    • 33745329809 scopus 로고    scopus 로고
    • The circadian PAR-domain basic leucine zipper transcription factors DBP, TEF, and HLF modulate basal and inducible xenobiotic detoxification
    • Gachon F, Olela FF, Schaad O, Descombes P, Schibler U, (2006) The circadian PAR-domain basic leucine zipper transcription factors DBP, TEF, and HLF modulate basal and inducible xenobiotic detoxification. Cell Metab 4: 25-36.
    • (2006) Cell Metab , vol.4 , pp. 25-36
    • Gachon, F.1    Olela, F.F.2    Schaad, O.3    Descombes, P.4    Schibler, U.5
  • 41
    • 79960357928 scopus 로고    scopus 로고
    • Cellular DBP and E4BP4 proteins are critical for determining the period length of the circadian oscillator
    • Yamajuku D, Shibata Y, Kitazawa M, Katakura T, Urata H, et al. (2011) Cellular DBP and E4BP4 proteins are critical for determining the period length of the circadian oscillator. FEBS Lett 585: 2217-2222.
    • (2011) FEBS Lett , vol.585 , pp. 2217-2222
    • Yamajuku, D.1    Shibata, Y.2    Kitazawa, M.3    Katakura, T.4    Urata, H.5
  • 42
    • 33749023011 scopus 로고    scopus 로고
    • Minimizing the risk of reporting false positives in large-scale RNAi screens
    • Echeverri CJ, Beachy PA, Baum B, Boutros M, Buchholz F, et al. (2006) Minimizing the risk of reporting false positives in large-scale RNAi screens. Nat Methods 3: 777-779.
    • (2006) Nat Methods , vol.3 , pp. 777-779
    • Echeverri, C.J.1    Beachy, P.A.2    Baum, B.3    Boutros, M.4    Buchholz, F.5
  • 43
    • 34247516815 scopus 로고    scopus 로고
    • Intercellular coupling confers robustness against mutations in the SCN circadian clock network
    • Liu AC, Welsh DK, Ko CH, Tran HG, Zhang EE, et al. (2007) Intercellular coupling confers robustness against mutations in the SCN circadian clock network. Cell 129: 605-616.
    • (2007) Cell , vol.129 , pp. 605-616
    • Liu, A.C.1    Welsh, D.K.2    Ko, C.H.3    Tran, H.G.4    Zhang, E.E.5
  • 44
    • 63049126277 scopus 로고    scopus 로고
    • A large-scale functional RNAi screen reveals a role for CK2 in the mammalian circadian clock
    • Maier B, Wendt S, Vanselow JT, Wallach T, Reischl S, et al. (2009) A large-scale functional RNAi screen reveals a role for CK2 in the mammalian circadian clock. Genes Dev 23: 708-718.
    • (2009) Genes Dev , vol.23 , pp. 708-718
    • Maier, B.1    Wendt, S.2    Vanselow, J.T.3    Wallach, T.4    Reischl, S.5
  • 45
    • 78149369911 scopus 로고    scopus 로고
    • Emergence of noise-induced oscillations in the central circadian pacemaker
    • Ko CH, Yamada YR, Welsh DK, Buhr ED, Liu AC, et al. (2010) Emergence of noise-induced oscillations in the central circadian pacemaker. PLoS Biol 8: e1000513.
    • (2010) PLoS Biol , vol.8
    • Ko, C.H.1    Yamada, Y.R.2    Welsh, D.K.3    Buhr, E.D.4    Liu, A.C.5
  • 46
  • 47
    • 0038454431 scopus 로고    scopus 로고
    • Altered patterns of sleep and behavioral adaptability in NPAS2-deficient mice
    • Dudley CA, Erbel-Sieler C, Estill SJ, Reick M, Franken P, et al. (2003) Altered patterns of sleep and behavioral adaptability in NPAS2-deficient mice. Science 301: 379-383.
    • (2003) Science , vol.301 , pp. 379-383
    • Dudley, C.A.1    Erbel-Sieler, C.2    Estill, S.J.3    Reick, M.4    Franken, P.5
  • 48
    • 76749168029 scopus 로고    scopus 로고
    • Circadian clock gene Bmal1 is not essential; functional replacement with its paralog, Bmal2
    • Shi S, Hida A, McGuinness OP, Wasserman DH, Yamazaki S, et al. (2010) Circadian clock gene Bmal1 is not essential; functional replacement with its paralog, Bmal2. Curr Biol 20: 316-321.
    • (2010) Curr Biol , vol.20 , pp. 316-321
    • Shi, S.1    Hida, A.2    McGuinness, O.P.3    Wasserman, D.H.4    Yamazaki, S.5
  • 49
    • 0037178787 scopus 로고    scopus 로고
    • The orphan nuclear receptor REV-ERBalpha controls circadian transcription within the positive limb of the mammalian circadian oscillator
    • Preitner N, Damiola F, Lopez-Molina L, Zakany J, Duboule D, et al. (2002) The orphan nuclear receptor REV-ERBalpha controls circadian transcription within the positive limb of the mammalian circadian oscillator. Cell 110: 251-260.
    • (2002) Cell , vol.110 , pp. 251-260
    • Preitner, N.1    Damiola, F.2    Lopez-Molina, L.3    Zakany, J.4    Duboule, D.5
  • 50
    • 70949104144 scopus 로고    scopus 로고
    • Endogenous rhythms in Period1 mutant suprachiasmatic nuclei in vitro do not represent circadian behavior
    • Pendergast JS, Friday RC, Yamazaki S, (2009) Endogenous rhythms in Period1 mutant suprachiasmatic nuclei in vitro do not represent circadian behavior. J Neurosci 29: 14681-14686.
    • (2009) J Neurosci , vol.29 , pp. 14681-14686
    • Pendergast, J.S.1    Friday, R.C.2    Yamazaki, S.3
  • 51
    • 0034989269 scopus 로고    scopus 로고
    • Differential functions of mPer1, mPer2, and mPer3 in the SCN circadian clock
    • Bae K, Jin X, Maywood ES, Hastings MH, Reppert SM, et al. (2001) Differential functions of mPer1, mPer2, and mPer3 in the SCN circadian clock. Neuron 30: 525-536.
    • (2001) Neuron , vol.30 , pp. 525-536
    • Bae, K.1    Jin, X.2    Maywood, E.S.3    Hastings, M.H.4    Reppert, S.M.5
  • 52
    • 0035368681 scopus 로고    scopus 로고
    • Nonredundant roles of the mPer1 and mPer2 genes in the mammalian circadian clock
    • Zheng B, Albrecht U, Kaasik K, Sage M, Lu W, et al. (2001) Nonredundant roles of the mPer1 and mPer2 genes in the mammalian circadian clock. Cell 105: 683-694.
    • (2001) Cell , vol.105 , pp. 683-694
    • Zheng, B.1    Albrecht, U.2    Kaasik, K.3    Sage, M.4    Lu, W.5
  • 53
    • 26444507854 scopus 로고    scopus 로고
    • The period length of fibroblast circadian gene expression varies widely among human individuals
    • Brown SA, Fleury-Olela F, Nagoshi E, Hauser C, Juge C, et al. (2005) The period length of fibroblast circadian gene expression varies widely among human individuals. PLoS Biol 3: e338.
    • (2005) PLoS Biol , vol.3
    • Brown, S.A.1    Fleury-Olela, F.2    Nagoshi, E.3    Hauser, C.4    Juge, C.5
  • 54
    • 77649108067 scopus 로고    scopus 로고
    • Distinct functions of Period2 and Period3 in the mouse circadian system revealed by in vitro analysis
    • Pendergast JS, Friday RC, Yamazaki S, (2010) Distinct functions of Period2 and Period3 in the mouse circadian system revealed by in vitro analysis. PLoS One 5: e8552.
    • (2010) PLoS One , vol.5
    • Pendergast, J.S.1    Friday, R.C.2    Yamazaki, S.3
  • 55
    • 70449093653 scopus 로고    scopus 로고
    • Rhythmic PER abundance defines a critical nodal point for negative feedback within the circadian clock mechanism
    • Chen R, Schirmer A, Lee Y, Lee H, Kumar V, et al. (2009) Rhythmic PER abundance defines a critical nodal point for negative feedback within the circadian clock mechanism. Mol Cell 36: 417-430.
    • (2009) Mol Cell , vol.36 , pp. 417-430
    • Chen, R.1    Schirmer, A.2    Lee, Y.3    Lee, H.4    Kumar, V.5
  • 56
    • 0033847103 scopus 로고    scopus 로고
    • Targeted disruption of the mPer3 gene: subtle effects on circadian clock function
    • Shearman LP, Jin X, Lee C, Reppert SM, Weaver DR, (2000) Targeted disruption of the mPer3 gene: subtle effects on circadian clock function. Mol Cell Biol 20: 6269-6275.
    • (2000) Mol Cell Biol , vol.20 , pp. 6269-6275
    • Shearman, L.P.1    Jin, X.2    Lee, C.3    Reppert, S.M.4    Weaver, D.R.5
  • 57
    • 0035853525 scopus 로고    scopus 로고
    • Molecular mechanisms of the biological clock in cultured fibroblasts
    • Yagita K, Tamanini F, van Der Horst GT, Okamura H, (2001) Molecular mechanisms of the biological clock in cultured fibroblasts. Science 292: 278-281.
    • (2001) Science , vol.292 , pp. 278-281
    • Yagita, K.1    Tamanini, F.2    van Der Horst, G.T.3    Okamura, H.4
  • 58
    • 84855664207 scopus 로고    scopus 로고
    • Tissue-specific function of Period3 in circadian rhythmicity
    • Pendergast JS, Niswender KD, Yamazaki S, (2012) Tissue-specific function of Period3 in circadian rhythmicity. PLoS One 7: e30254.
    • (2012) PLoS One , vol.7
    • Pendergast, J.S.1    Niswender, K.D.2    Yamazaki, S.3
  • 59
    • 84870782694 scopus 로고    scopus 로고
    • Cry1-/- circadian rhythmicity depends on SCN intercellular coupling
    • Evans JA, Pan H, Liu AC, Welsh DK, (2012) Cry1-/- circadian rhythmicity depends on SCN intercellular coupling. J Biol Rhythms 27: 443-452.
    • (2012) J Biol Rhythms , vol.27 , pp. 443-452
    • Evans, J.A.1    Pan, H.2    Liu, A.C.3    Welsh, D.K.4
  • 61
    • 77954965008 scopus 로고    scopus 로고
    • Altered body mass regulation in male mPeriod mutant mice on high-fat diet
    • Dallmann R, Weaver DR, (2010) Altered body mass regulation in male mPeriod mutant mice on high-fat diet. Chronobiol Int 27: 1317-1328.
    • (2010) Chronobiol Int , vol.27 , pp. 1317-1328
    • Dallmann, R.1    Weaver, D.R.2
  • 62
    • 79953179668 scopus 로고    scopus 로고
    • Circadian rhythm gene period 3 is an inhibitor of the adipocyte cell fate
    • Costa MJ, So AY, Kaasik K, Krueger KC, Pillsbury ML, et al. (2011) Circadian rhythm gene period 3 is an inhibitor of the adipocyte cell fate. J Biol Chem 286: 9063-9070.
    • (2011) J Biol Chem , vol.286 , pp. 9063-9070
    • Costa, M.J.1    So, A.Y.2    Kaasik, K.3    Krueger, K.C.4    Pillsbury, M.L.5
  • 63
    • 44949131716 scopus 로고    scopus 로고
    • When clocks go bad: neurobehavioural consequences of disrupted circadian timing
    • Barnard AR, Nolan PM, (2008) When clocks go bad: neurobehavioural consequences of disrupted circadian timing. PLoS Genet 4: e1000040.
    • (2008) PLoS Genet , vol.4
    • Barnard, A.R.1    Nolan, P.M.2
  • 64
    • 77950866154 scopus 로고    scopus 로고
    • PERIOD3, circadian phenotypes, and sleep homeostasis
    • Dijk DJ, Archer SN, (2009) PERIOD3, circadian phenotypes, and sleep homeostasis. Sleep Med Rev 14: 151-160.
    • (2009) Sleep Med Rev , vol.14 , pp. 151-160
    • Dijk, D.J.1    Archer, S.N.2
  • 65
    • 0034640253 scopus 로고    scopus 로고
    • Interacting molecular loops in the mammalian circadian clock
    • Shearman LP, Sriram S, Weaver DR, Maywood ES, Chaves I, et al. (2000) Interacting molecular loops in the mammalian circadian clock. Science 288: 1013-1019.
    • (2000) Science , vol.288 , pp. 1013-1019
    • Shearman, L.P.1    Sriram, S.2    Weaver, D.R.3    Maywood, E.S.4    Chaves, I.5
  • 66
    • 76749139528 scopus 로고    scopus 로고
    • The mammalian clock component PERIOD2 coordinates circadian output by interaction with nuclear receptors
    • Schmutz I, Ripperger JA, Baeriswyl-Aebischer S, Albrecht U, (2010) The mammalian clock component PERIOD2 coordinates circadian output by interaction with nuclear receptors. Genes Dev 24: 345-357.
    • (2010) Genes Dev , vol.24 , pp. 345-357
    • Schmutz, I.1    Ripperger, J.A.2    Baeriswyl-Aebischer, S.3    Albrecht, U.4
  • 67
    • 84877625752 scopus 로고    scopus 로고
    • A mechanism for robust circadian timekeeping via stoichiometric balance
    • Kim JK, Forger DB, (2012) A mechanism for robust circadian timekeeping via stoichiometric balance. Mol Syst Biol 8: 630.
    • (2012) Mol Syst Biol , vol.8 , pp. 630
    • Kim, J.K.1    Forger, D.B.2
  • 68
    • 79953211112 scopus 로고    scopus 로고
    • Stoichiometric relationship among clock proteins determines robustness of circadian rhythms
    • Lee Y, Chen R, Lee HM, Lee C, (2011) Stoichiometric relationship among clock proteins determines robustness of circadian rhythms. J Biol Chem 286: 7033-7042.
    • (2011) J Biol Chem , vol.286 , pp. 7033-7042
    • Lee, Y.1    Chen, R.2    Lee, H.M.3    Lee, C.4
  • 69
    • 79960423858 scopus 로고    scopus 로고
    • Biochemical analysis of the canonical model for the mammalian circadian clock
    • Ye R, Selby CP, Ozturk N, Annayev Y, Sancar A, (2011) Biochemical analysis of the canonical model for the mammalian circadian clock. J Biol Chem 286: 25891-25902.
    • (2011) J Biol Chem , vol.286 , pp. 25891-25902
    • Ye, R.1    Selby, C.P.2    Ozturk, N.3    Annayev, Y.4    Sancar, A.5
  • 70
    • 84873345653 scopus 로고    scopus 로고
    • How sugar tunes your clock
    • Hart GW, (2013) How sugar tunes your clock. Cell Metab 17: 155-156.
    • (2013) Cell Metab , vol.17 , pp. 155-156
    • Hart, G.W.1
  • 71
    • 4444350468 scopus 로고    scopus 로고
    • Wagging the dogma; tissue-specific cell cycle control in the mouse embryo
    • Pagano M, Jackson PK, (2004) Wagging the dogma; tissue-specific cell cycle control in the mouse embryo. Cell 118: 535-538.
    • (2004) Cell , vol.118 , pp. 535-538
    • Pagano, M.1    Jackson, P.K.2
  • 72
    • 0141750434 scopus 로고    scopus 로고
    • Identification of modulators of TRAIL-induced apoptosis via RNAi-based phenotypic screening
    • Aza-Blanc P, Cooper CL, Wagner K, Batalov S, Deveraux QL, et al. (2003) Identification of modulators of TRAIL-induced apoptosis via RNAi-based phenotypic screening. Mol Cell 12: 627-637.
    • (2003) Mol Cell , vol.12 , pp. 627-637
    • Aza-Blanc, P.1    Cooper, C.L.2    Wagner, K.3    Batalov, S.4    Deveraux, Q.L.5
  • 73
    • 0037370498 scopus 로고    scopus 로고
    • A lentivirus-based system to functionally silence genes in primary mammalian cells, stem cells and transgenic mice by RNA interference
    • Rubinson DA, Dillon CP, Kwiatkowski AV, Sievers C, Yang L, et al. (2003) A lentivirus-based system to functionally silence genes in primary mammalian cells, stem cells and transgenic mice by RNA interference. Nat Genet 33: 401-406.
    • (2003) Nat Genet , vol.33 , pp. 401-406
    • Rubinson, D.A.1    Dillon, C.P.2    Kwiatkowski, A.V.3    Sievers, C.4    Yang, L.5
  • 74
    • 34250666701 scopus 로고    scopus 로고
    • Production and purification of lentiviral vectors
    • Tiscornia G, Singer O, Verma IM, (2006) Production and purification of lentiviral vectors. Nat Protoc 1: 241-245.
    • (2006) Nat Protoc , vol.1 , pp. 241-245
    • Tiscornia, G.1    Singer, O.2    Verma, I.M.3
  • 75
    • 58549103297 scopus 로고    scopus 로고
    • A chemical biology approach reveals period shortening of the mammalian circadian clock by specific inhibition of GSK-3beta
    • Hirota T, Lewis WG, Liu AC, Lee JW, Schultz PG, et al. (2008) A chemical biology approach reveals period shortening of the mammalian circadian clock by specific inhibition of GSK-3beta. Proc Natl Acad Sci U S A 105: 20746-20751.
    • (2008) Proc Natl Acad Sci U S A , vol.105 , pp. 20746-20751
    • Hirota, T.1    Lewis, W.G.2    Liu, A.C.3    Lee, J.W.4    Schultz, P.G.5


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