-
1
-
-
84930042223
-
The emerging roles of lipids in circadian control
-
Adamovich Y, Aviram R, Asher G, (2015) The emerging roles of lipids in circadian control. Biochim Biophys Acta 1851: 1017-1025.
-
(2015)
Biochim Biophys Acta
, vol.1851
, pp. 1017-1025
-
-
Adamovich, Y.1
Aviram, R.2
Asher, G.3
-
2
-
-
84893444129
-
Circadian clocks and feeding time regulate the oscillations and levels of hepatic triglycerides
-
Adamovich Y, Rousso-Noori L, Zwighaft Z, Neufeld-Cohen A, Golik M, Kraut-Cohen J, Wang M, Han X, Asher G, (2014) Circadian clocks and feeding time regulate the oscillations and levels of hepatic triglycerides. Cell Metab 19: 319-330.
-
(2014)
Cell Metab
, vol.19
, pp. 319-330
-
-
Adamovich, Y.1
Rousso-Noori, L.2
Zwighaft, Z.3
Neufeld-Cohen, A.4
Golik, M.5
Kraut-Cohen, J.6
Wang, M.7
Han, X.8
Asher, G.9
-
3
-
-
0037006795
-
Circadian cycling of the mouse liver transcriptome, as revealed by cDNA microarray, is driven by the suprachiasmatic nucleus
-
Akhtar RA, Reddy AB, Maywood ES, Clayton JD, King VM, Smith AG, Gant TW, Hastings MH, Kyriacou CP, (2002) Circadian cycling of the mouse liver transcriptome, as revealed by cDNA microarray, is driven by the suprachiasmatic nucleus. Curr Biol 12: 540-550.
-
(2002)
Curr Biol
, vol.12
, pp. 540-550
-
-
Akhtar, R.A.1
Reddy, A.B.2
Maywood, E.S.3
Clayton, J.D.4
King, V.M.5
Smith, A.G.6
Gant, T.W.7
Hastings, M.H.8
Kyriacou, C.P.9
-
4
-
-
47749140333
-
SIRT1 regulates circadian clock gene expression through PER2 deacetylation
-
Asher G, Gatfield D, Stratmann M, Reinke H, Dibner C, Kreppel F, Mostoslavsky R, Alt FW, Schibler U, (2008) SIRT1 regulates circadian clock gene expression through PER2 deacetylation. Cell 134: 317-328.
-
(2008)
Cell
, vol.134
, pp. 317-328
-
-
Asher, G.1
Gatfield, D.2
Stratmann, M.3
Reinke, H.4
Dibner, C.5
Kreppel, F.6
Mostoslavsky, R.7
Alt, F.W.8
Schibler, U.9
-
5
-
-
77956627087
-
Poly(ADP-ribose) polymerase 1 participates in the phase entrainment of circadian clocks to feeding
-
Asher G, Reinke H, Altmeyer M, Gutierrez-Arcelus M, Hottiger MO, Schibler U, (2010) Poly(ADP-ribose) polymerase 1 participates in the phase entrainment of circadian clocks to feeding. Cell 142: 943-953.
-
(2010)
Cell
, vol.142
, pp. 943-953
-
-
Asher, G.1
Reinke, H.2
Altmeyer, M.3
Gutierrez-Arcelus, M.4
Hottiger, M.O.5
Schibler, U.6
-
6
-
-
84925844053
-
Time for food: The intimate interplay between nutrition, metabolism, and the circadian clock
-
Asher G, Sassone-Corsi P, (2015) Time for food: The intimate interplay between nutrition, metabolism, and the circadian clock. Cell 161: 84-92.
-
(2015)
Cell
, vol.161
, pp. 84-92
-
-
Asher, G.1
Sassone-Corsi, P.2
-
7
-
-
79551534130
-
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 Metabolism 13: 125-137.
-
(2011)
Cell Metabolism
, vol.13
, pp. 125-137
-
-
Asher, G.1
Schibler, U.2
-
8
-
-
84947929557
-
Circadian and feeding rhythms differentially affect rhythmic mRNA transcription and translation in mouse liver
-
Atger F, Gobet C, Marquis J, Martin E, Wang J, Weger B, Lefebvre G, Descombes P, Naef F, Gachon F, (2015) Circadian and feeding rhythms differentially affect rhythmic mRNA transcription and translation in mouse liver. Proc Natl Acad Sci U S A 112: E6579-E6588.
-
(2015)
Proc Natl Acad Sci U S A
, vol.112
, pp. E6579-E6588
-
-
Atger, F.1
Gobet, C.2
Marquis, J.3
Martin, E.4
Wang, J.5
Weger, B.6
Lefebvre, G.7
Descombes, P.8
Naef, F.9
Gachon, F.10
-
9
-
-
0034730493
-
Resetting of circadian time in peripheral tissues by glucocorticoid signaling
-
Balsalobre A, Brown SA, Marcacci L, Tronche F, Kellendonk C, Reichardt HM, Schutz G, Schibler U, (2000) Resetting of circadian time in peripheral tissues by glucocorticoid signaling. Science 289: 2344-2347.
-
(2000)
Science
, vol.289
, pp. 2344-2347
-
-
Balsalobre, A.1
Brown, S.A.2
Marcacci, L.3
Tronche, F.4
Kellendonk, C.5
Reichardt, H.M.6
Schutz, G.7
Schibler, U.8
-
10
-
-
67349119804
-
Cellular organization of normal mouse liver: A histological, quantitative immunocytochemical, and fine structural analysis
-
Baratta JL, Ngo A, Lopez B, Kasabwalla N, Longmuir KJ, Robertson RT, (2009) Cellular organization of normal mouse liver: A histological, quantitative immunocytochemical, and fine structural analysis. Histochem Cell Biol 131: 713-726.
-
(2009)
Histochem Cell Biol
, vol.131
, pp. 713-726
-
-
Baratta, J.L.1
Ngo, A.2
Lopez, B.3
Kasabwalla, N.4
Longmuir, K.J.5
Robertson, R.T.6
-
11
-
-
18244365850
-
PERIOD1-associated proteins modulate the negative limb of the mammalian circadian oscillator
-
Brown SA, Ripperger J, Kadener S, Fleury-Olela F, Vilbois F, Rosbash M, Schibler U, (2005) PERIOD1-associated proteins modulate the negative limb of the mammalian circadian oscillator. Science 308: 693-696.
-
(2005)
Science
, vol.308
, pp. 693-696
-
-
Brown, S.A.1
Ripperger, J.2
Kadener, S.3
Fleury-Olela, F.4
Vilbois, F.5
Rosbash, M.6
Schibler, U.7
-
12
-
-
77957960061
-
Temperature as a universal resetting cue for mammalian circadian oscillators
-
Buhr ED, Yoo SH, Takahashi JS, (2010) Temperature as a universal resetting cue for mammalian circadian oscillators. Science 330: 379-385.
-
(2010)
Science
, vol.330
, pp. 379-385
-
-
Buhr, E.D.1
Yoo, S.H.2
Takahashi, J.S.3
-
13
-
-
84879391795
-
SIRT1 mediates central circadian control in the SCN by a mechanism that decays with aging
-
Chang HC, Guarente L, (2013) SIRT1 mediates central circadian control in the SCN by a mechanism that decays with aging. Cell 153: 1448-1460.
-
(2013)
Cell
, vol.153
, pp. 1448-1460
-
-
Chang, H.C.1
Guarente, L.2
-
14
-
-
0033637383
-
Restricted feeding uncouples circadian oscillators in peripheral tissues from the central pacemaker in the suprachiasmatic nucleus
-
Damiola F, Le Minh N, Preitner N, Kornmann B, Fleury-Olela F, Schibler U, (2000) Restricted feeding uncouples circadian oscillators in peripheral tissues from the central pacemaker in the suprachiasmatic nucleus. Genes Dev 14: 2950-2961.
-
(2000)
Genes Dev
, vol.14
, pp. 2950-2961
-
-
Damiola, F.1
Le Minh, N.2
Preitner, N.3
Kornmann, B.4
Fleury-Olela, F.5
Schibler, U.6
-
15
-
-
84927009462
-
Circadian timing of metabolism in animal models and humans
-
Dibner C, Schibler U, (2015) Circadian timing of metabolism in animal models and humans. J Intern Med 277: 513-527.
-
(2015)
J Intern Med
, vol.277
, pp. 513-527
-
-
Dibner, C.1
Schibler, U.2
-
16
-
-
79959366611
-
A molecular mechanism for circadian clock negative feedback
-
Duong HA, Robles MS, Knutti D, Weitz CJ, (2011) A molecular mechanism for circadian clock negative feedback. Science 332: 1436-1439.
-
(2011)
Science
, vol.332
, pp. 1436-1439
-
-
Duong, H.A.1
Robles, M.S.2
Knutti, D.3
Weitz, C.J.4
-
17
-
-
84859459231
-
Coordination of the transcriptome and metabolome by the circadian clock
-
Eckel-Mahan KL, Patel VR, Mohney RP, Vignola KS, Baldi P, Sassone-Corsi P, (2012) Coordination of the transcriptome and metabolome by the circadian clock. Proc Natl Acad Sci U S A 109: 5541-5546.
-
(2012)
Proc Natl Acad Sci U S A
, vol.109
, pp. 5541-5546
-
-
Eckel-Mahan, K.L.1
Patel, V.R.2
Mohney, R.P.3
Vignola, K.S.4
Baldi, P.5
Sassone-Corsi, P.6
-
18
-
-
84927697716
-
Nuclear receptor Rev-erbalpha: Up, down, and all around
-
Everett LJ, Lazar MA, (2014) Nuclear receptor Rev-erbalpha: up, down, and all around. Trends Endocrinol Metab 25: 586-592.
-
(2014)
Trends Endocrinol Metab
, vol.25
, pp. 586-592
-
-
Everett, L.J.1
Lazar, M.A.2
-
19
-
-
84911865436
-
Circadian enhancers coordinate multiple phases of rhythmic gene transcription in vivo
-
Fang B, Everett LJ, Jager J, Briggs E, Armour SM, Feng D, Roy A, Gerhart-Hines Z, Sun Z, Lazar MA, (2014) Circadian enhancers coordinate multiple phases of rhythmic gene transcription in vivo. Cell 159: 1140-1152.
-
(2014)
Cell
, vol.159
, pp. 1140-1152
-
-
Fang, B.1
Everett, L.J.2
Jager, J.3
Briggs, E.4
Armour, S.M.5
Feng, D.6
Roy, A.7
Gerhart-Hines, Z.8
Sun, Z.9
Lazar, M.A.10
-
20
-
-
84978747032
-
Dissecting the Rev-erbalpha cistrome and the mechanisms controlling circadian transcription in liver
-
14 [Epub ahead of print]
-
Fang B, Lazar MA, (2015) Dissecting the Rev-erbalpha cistrome and the mechanisms controlling circadian transcription in liver. Cold Spring Harb Symp Quant Biol. 14 [Epub ahead of print].
-
(2015)
Cold Spring Harb Symp Quant Biol
-
-
Fang, B.1
Lazar, M.A.2
-
21
-
-
84873287518
-
Blood-borne circadian signal stimulates daily oscillations in actin dynamics and SRF activity
-
Gerber A, Esnault C, Aubert G, Treisman R, Pralong F, Schibler U, (2013) Blood-borne circadian signal stimulates daily oscillations in actin dynamics and SRF activity. Cell 152: 492-503.
-
(2013)
Cell
, vol.152
, pp. 492-503
-
-
Gerber, A.1
Esnault, C.2
Aubert, G.3
Treisman, R.4
Pralong, F.5
Schibler, U.6
-
22
-
-
33947575572
-
Regulation of gluconeogenesis by Kruppel-like factor 15
-
Gray S, Wang B, Orihuela Y, Hong EG, Fisch S, Haldar S, Cline GW, Kim JK, Peroni OD, Kahn BB, et al. (2007) Regulation of gluconeogenesis by Kruppel-like factor 15. Cell Metab 5: 305-312.
-
(2007)
Cell Metab
, vol.5
, pp. 305-312
-
-
Gray, S.1
Wang, B.2
Orihuela, Y.3
Hong, E.G.4
Fisch, S.5
Haldar, S.6
Cline, G.W.7
Kim, J.K.8
Peroni, O.D.9
Kahn, B.B.10
-
23
-
-
77953394284
-
Kruppel-like factor KLF10 is a link between the circadian clock and metabolism in liver
-
Guillaumond F, Grechez-Cassiau A, Subramaniam M, Brangolo S, Peteri-Brunback B, Staels B, Fievet C, Spelsberg TC, Delaunay F, Teboul M, (2010) Kruppel-like factor KLF10 is a link between the circadian clock and metabolism in liver. Mol Cell Biol 30: 3059-3070.
-
(2010)
Mol Cell Biol
, vol.30
, pp. 3059-3070
-
-
Guillaumond, F.1
Grechez-Cassiau, A.2
Subramaniam, M.3
Brangolo, S.4
Peteri-Brunback, B.5
Staels, B.6
Fievet, C.7
Spelsberg, T.C.8
Delaunay, F.9
Teboul, M.10
-
24
-
-
84930655782
-
Circadian control of bile acid synthesis by a KLF15-Fgf15 axis
-
Han SS, Zhang R, Jain R, Shi H, Zhang L, Zhou G, Sangwung P, Tugal D, Atkins GB, Prosdocimo DA, et al. (2015) Circadian control of bile acid synthesis by a KLF15-Fgf15 axis. Nat Commun 6: 7231.
-
(2015)
Nat Commun
, vol.6
, pp. 7231
-
-
Han, S.S.1
Zhang, R.2
Jain, R.3
Shi, H.4
Zhang, L.5
Zhou, G.6
Sangwung, P.7
Tugal, D.8
Atkins, G.B.9
Prosdocimo, D.A.10
-
25
-
-
84898599981
-
Nuclear receptors and metabolism: From feast to famine
-
Hong SH, Ahmadian M, Yu RT, Atkins AR, Downes M, Evans RM, (2014) Nuclear receptors and metabolism: from feast to famine. Diabetologia 57: 860-867.
-
(2014)
Diabetologia
, vol.57
, pp. 860-867
-
-
Hong, S.H.1
Ahmadian, M.2
Yu, R.T.3
Atkins, A.R.4
Downes, M.5
Evans, R.M.6
-
26
-
-
84943450709
-
Hepatic Bmal1 regulates rhythmic mitochondrial dynamics and promotes metabolic fitness
-
Jacobi D, Liu S, Burkewitz K, Kory N, Knudsen NH, Alexander RK, Unluturk U, Li X, Kong X, Hyde AL, et al. (2015) Hepatic Bmal1 regulates rhythmic mitochondrial dynamics and promotes metabolic fitness. Cell Metab 22: 709-720.
-
(2015)
Cell Metab
, vol.22
, pp. 709-720
-
-
Jacobi, D.1
Liu, S.2
Burkewitz, K.3
Kory, N.4
Knudsen, N.H.5
Alexander, R.K.6
Unluturk, U.7
Li, X.8
Kong, X.9
Hyde, A.L.10
-
27
-
-
84956675608
-
Ribosome profiling reveals the rhythmic liver translatome and circadian clock regulation by upstream open reading frames
-
Janich P, Arpat AB, Castelo-Szekely V, Lopes M, Gatfield D, (2015) Ribosome profiling reveals the rhythmic liver translatome and circadian clock regulation by upstream open reading frames. Genome Res 25: 1848-1859.
-
(2015)
Genome Res
, vol.25
, pp. 1848-1859
-
-
Janich, P.1
Arpat, A.B.2
Castelo-Szekely, V.3
Lopes, M.4
Gatfield, D.5
-
28
-
-
84863230321
-
Klf15 orchestrates circadian nitrogen homeostasis
-
Jeyaraj D, Scheer FA, Ripperger JA, Haldar SM, Lu Y, Prosdocimo DA, Eapen SJ, Eapen BL, Cui Y, Mahabeleshwar GH, et al. (2012) Klf15 orchestrates circadian nitrogen homeostasis. Cell Metab 15: 311-323.
-
(2012)
Cell Metab
, vol.15
, pp. 311-323
-
-
Jeyaraj, D.1
Scheer, F.A.2
Ripperger, J.A.3
Haldar, S.M.4
Lu, Y.5
Prosdocimo, D.A.6
Eapen, S.J.7
Eapen, B.L.8
Cui, Y.9
Mahabeleshwar, G.H.10
-
29
-
-
84918841904
-
Specificity in circadian clock feedback from targeted reconstitution of the NuRD corepressor
-
Kim JY, Kwak PB, Weitz CJ, (2014) Specificity in circadian clock feedback from targeted reconstitution of the NuRD corepressor. Mol Cell 56: 738-748.
-
(2014)
Mol Cell
, vol.56
, pp. 738-748
-
-
Kim, J.Y.1
Kwak, P.B.2
Weitz, C.J.3
-
30
-
-
20244377493
-
Positional cloning of the mouse circadian clock gene
-
King DP, Zhao Y, Sangoram AM, Wilsbacher LD, Tanaka M, Antoch MP, Steeves TD, Vitaterna MH, Kornhauser JM, Lowrey PL, et al. (1997) Positional cloning of the mouse circadian clock gene. Cell 89: 641-653.
-
(1997)
Cell
, vol.89
, pp. 641-653
-
-
King, D.P.1
Zhao, Y.2
Sangoram, A.M.3
Wilsbacher, L.D.4
Tanaka, M.5
Antoch, M.P.6
Steeves, T.D.7
Vitaterna, M.H.8
Kornhauser, J.M.9
Lowrey, P.L.10
-
31
-
-
84867667011
-
Transcriptional architecture and chromatin landscape of the core circadian clock in mammals
-
Koike N, Yoo SH, Huang HC, Kumar V, Lee C, Kim TK, Takahashi JS, (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
Kim, T.K.6
Takahashi, J.S.7
-
32
-
-
33846944676
-
System-driven and oscillator-dependent circadian transcription in mice with a conditionally active liver clock
-
Kornmann B, Schaad O, Bujard H, Takahashi JS, Schibler U, (2007a) System-driven and oscillator-dependent circadian transcription in mice with a conditionally active liver clock. PLoS Biol 5: e34.
-
(2007)
PLoS Biol
, vol.5
, pp. e34
-
-
Kornmann, B.1
Schaad, O.2
Bujard, H.3
Takahashi, J.S.4
Schibler, U.5
-
33
-
-
48249113959
-
Regulation of circadian gene expression in liver by systemic signals and hepatocyte oscillators
-
Kornmann B, Schaad O, Reinke H, Saini C, Schibler U, (2007b) Regulation of circadian gene expression in liver by systemic signals and hepatocyte oscillators. Cold Spring Harb Symp Quant Biol 72: 319-330.
-
(2007)
Cold Spring Harb Symp Quant Biol
, vol.72
, pp. 319-330
-
-
Kornmann, B.1
Schaad, O.2
Reinke, H.3
Saini, C.4
Schibler, U.5
-
34
-
-
84255206549
-
Cryptochromes mediate rhythmic repression of the glucocorticoid receptor
-
Lamia KA, Papp SJ, Yu RT, Barish GD, Uhlenhaut NH, Jonker JW, Downes M, Evans RM, (2011) Cryptochromes mediate rhythmic repression of the glucocorticoid receptor. Nature 480: 552-556.
-
(2011)
Nature
, vol.480
, pp. 552-556
-
-
Lamia, K.A.1
Papp, S.J.2
Yu, R.T.3
Barish, G.D.4
Uhlenhaut, N.H.5
Jonker, J.W.6
Downes, M.7
Evans, R.M.8
-
35
-
-
70350128135
-
AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation
-
Lamia KA, Sachdeva UM, DiTacchio L, Williams EC, Alvarez JG, Egan DF, Vasquez DS, Juguilon H, Panda S, Shaw RJ, et al. (2009) AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation. Science 326: 437-440.
-
(2009)
Science
, vol.326
, pp. 437-440
-
-
Lamia, K.A.1
Sachdeva, U.M.2
DiTacchio, L.3
Williams, E.C.4
Alvarez, J.G.5
Egan, D.F.6
Vasquez, D.S.7
Juguilon, H.8
Panda, S.9
Shaw, R.J.10
-
36
-
-
54449085416
-
Physiological significance of a peripheral tissue circadian clock
-
Lamia KA, Storch KF, Weitz CJ, (2008) Physiological significance of a peripheral tissue circadian clock. Proc Natl Acad Sci U S A 105: 15172-15177.
-
(2008)
Proc Natl Acad Sci U S A
, vol.105
, pp. 15172-15177
-
-
Lamia, K.A.1
Storch, K.F.2
Weitz, C.J.3
-
37
-
-
84940560639
-
Transcriptional control of circadian metabolic rhythms in the liver
-
(Suppl 1)
-
Li S, Lin JD, (2015) Transcriptional control of circadian metabolic rhythms in the liver. Diabetes Obes Metab 17 (Suppl 1): 33-38.
-
(2015)
Diabetes Obes Metab
, vol.17
, pp. 33-38
-
-
Li, S.1
Lin, J.D.2
-
38
-
-
34249275727
-
Transcriptional coactivator PGC-1alpha integrates the mammalian clock and energy metabolism
-
Liu C, Li S, Liu T, Borjigin J, Lin JD, (2007) Transcriptional coactivator PGC-1alpha integrates the mammalian clock and energy metabolism. Nature 447: 477-481.
-
(2007)
Nature
, vol.447
, pp. 477-481
-
-
Liu, C.1
Li, S.2
Liu, T.3
Borjigin, J.4
Lin, J.D.5
-
39
-
-
13444263949
-
New insights into functional aspects of liver morphology
-
Malarkey DE, Johnson K, Ryan L, Boorman G, Maronpot RR, (2005) New insights into functional aspects of liver morphology. Toxicol Pathol 33: 27-34.
-
(2005)
Toxicol Pathol
, vol.33
, pp. 27-34
-
-
Malarkey, D.E.1
Johnson, K.2
Ryan, L.3
Boorman, G.4
Maronpot, R.R.5
-
40
-
-
84905389924
-
Partitioning circadian transcription by SIRT6 leads to segregated control of cellular metabolism
-
Masri S, Rigor P, Cervantes M, Ceglia N, Sebastian C, Xiao C, Roqueta-Rivera M, Deng C, Osborne TF, Mostoslavsky R, et al. (2014) Partitioning circadian transcription by SIRT6 leads to segregated control of cellular metabolism. Cell 158: 659-672.
-
(2014)
Cell
, vol.158
, pp. 659-672
-
-
Masri, S.1
Rigor, P.2
Cervantes, M.3
Ceglia, N.4
Sebastian, C.5
Xiao, C.6
Roqueta-Rivera, M.7
Deng, C.8
Osborne, T.F.9
Mostoslavsky, R.10
-
41
-
-
84891940889
-
Circadian clock-dependent and -independent rhythmic proteomes implement distinct diurnal functions in mouse liver
-
Mauvoisin D, Wang J, Jouffe C, Martin E, Atger F, Waridel P, Quadroni M, Gachon F, Naef F, (2014) Circadian clock-dependent and -independent rhythmic proteomes implement distinct diurnal functions in mouse liver. Proc Natl Acad Sci U S A 111: 167-172.
-
(2014)
Proc Natl Acad Sci U S A
, vol.111
, pp. 167-172
-
-
Mauvoisin, D.1
Wang, J.2
Jouffe, C.3
Martin, E.4
Atger, F.5
Waridel, P.6
Quadroni, M.7
Gachon, F.8
Naef, F.9
-
42
-
-
48249135678
-
Genetic and molecular analysis of the central and peripheral circadian clockwork of mice
-
Maywood ES, O'Neill JS, Reddy AB, Chesham JE, Prosser HM, Kyriacou CP, Godinho SI, Nolan PM, Hastings MH, (2007) Genetic and molecular analysis of the central and peripheral circadian clockwork of mice. Cold Spring Harb Symp Quant Biol 72: 85-94.
-
(2007)
Cold Spring Harb Symp Quant Biol
, vol.72
, pp. 85-94
-
-
Maywood, E.S.1
O'Neill, J.S.2
Reddy, A.B.3
Chesham, J.E.4
Prosser, H.M.5
Kyriacou, C.P.6
Godinho, S.I.7
Nolan, P.M.8
Hastings, M.H.9
-
43
-
-
47549088250
-
The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control
-
Nakahata Y, Kaluzova M, Grimaldi B, Sahar S, Hirayama J, Chen D, Guarente LP, Sassone-Corsi P, (2008) The NAD+-dependent deacetylase SIRT1 modulates CLOCK-mediated chromatin remodeling and circadian control. Cell 134: 329-340.
-
(2008)
Cell
, vol.134
, pp. 329-340
-
-
Nakahata, Y.1
Kaluzova, M.2
Grimaldi, B.3
Sahar, S.4
Hirayama, J.5
Chen, D.6
Guarente, L.P.7
Sassone-Corsi, P.8
-
44
-
-
65549118773
-
Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1
-
Nakahata Y, Sahar S, Astarita G, Kaluzova M, Sassone-Corsi P, (2009) Circadian control of the NAD+ salvage pathway by CLOCK-SIRT1. Science 324: 654-657.
-
(2009)
Science
, vol.324
, pp. 654-657
-
-
Nakahata, Y.1
Sahar, S.2
Astarita, G.3
Kaluzova, M.4
Sassone-Corsi, P.5
-
45
-
-
84962311227
-
Circadian control of oscillations in mitochondrial rate-limiting enzymes and nutrient utilization by PERIOD proteins
-
Neufeld-Cohen A, Robles MS, Aviram R, Manella G, Adamovich Y, Ladeuix B, Nir D, Rousso-Noori L, Kuperman Y, Golik M, et al. (2016) Circadian control of oscillations in mitochondrial rate-limiting enzymes and nutrient utilization by PERIOD proteins. Proc Natl Acad Sci U S A Feb 9 [Epub ahead of print].
-
(2016)
Proc Natl Acad Sci U S A Feb 9 [Epub Ahead of Print].
-
-
Neufeld-Cohen, A.1
Robles, M.S.2
Aviram, R.3
Manella, G.4
Adamovich, Y.5
Ladeuix, B.6
Nir, D.7
Rousso-Noori, L.8
Kuperman, Y.9
Golik, M.10
-
46
-
-
79251566511
-
Circadian clocks in human red blood cells
-
O'Neill JS, Reddy AB, (2011) Circadian clocks in human red blood cells. Nature 469: 498-503.
-
(2011)
Nature
, vol.469
, pp. 498-503
-
-
O'Neill, J.S.1
Reddy, A.B.2
-
47
-
-
79251539603
-
Circadian rhythms persist without transcription in a eukaryote
-
O'Neill JS, van Ooijen G, Dixon LE, Troein C, Corellou F, Bouget FY, Reddy AB, Millar AJ, (2011) Circadian rhythms persist without transcription in a eukaryote. Nature 469: 554-558.
-
(2011)
Nature
, vol.469
, pp. 554-558
-
-
O'Neill, J.S.1
Van Ooijen, G.2
Dixon, L.E.3
Troein, C.4
Corellou, F.5
Bouget, F.Y.6
Reddy, A.B.7
Millar, A.J.8
-
48
-
-
84864739194
-
Feedback regulation of transcriptional termination by the mammalian circadian clock PERIOD complex
-
Padmanabhan K, Robles MS, Westerling T, Weitz CJ, (2012) Feedback regulation of transcriptional termination by the mammalian circadian clock PERIOD complex. Science 337: 599-602.
-
(2012)
Science
, vol.337
, pp. 599-602
-
-
Padmanabhan, K.1
Robles, M.S.2
Westerling, T.3
Weitz, C.J.4
-
49
-
-
18444414586
-
Coordinated transcription of key pathways in the mouse by the circadian clock
-
Panda S, Antoch MP, Miller BH, Su AI, Schook AB, Straume M, Schultz PG, Kay SA, Takahashi JS, Hogenesch JB, (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
Straume, M.6
Schultz, P.G.7
Kay, S.A.8
Takahashi, J.S.9
Hogenesch, J.B.10
-
51
-
-
84864442776
-
CircadiOmics: Integrating circadian genomics, transcriptomics, proteomics and metabolomics
-
Patel VR, Eckel-Mahan K, Sassone-Corsi P, Baldi P, (2012) CircadiOmics: Integrating circadian genomics, transcriptomics, proteomics and metabolomics. Nat Methods 9: 772-773.
-
(2012)
Nat Methods
, vol.9
, pp. 772-773
-
-
Patel, V.R.1
Eckel-Mahan, K.2
Sassone-Corsi, P.3
Baldi, P.4
-
52
-
-
84884248040
-
Circadian clock NAD+ cycle drives mitochondrial oxidative metabolism in mice
-
Peek CB, Affinati AH, Ramsey KM, Kuo HY, Yu W, Sena LA, Ilkayeva O, Marcheva B, Kobayashi Y, Omura C, et al. (2013) Circadian clock NAD+ cycle drives mitochondrial oxidative metabolism in mice. Science 342: 1243417.
-
(2013)
Science
, vol.342
, pp. 1243417
-
-
Peek, C.B.1
Affinati, A.H.2
Ramsey, K.M.3
Kuo, H.Y.4
Yu, W.5
Sena, L.A.6
Ilkayeva, O.7
Marcheva, B.8
Kobayashi, Y.9
Omura, C.10
-
53
-
-
65549103855
-
Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis
-
Ramsey KM, Yoshino J, Brace CS, Abrassart D, Kobayashi Y, Marcheva B, Hong HK, Chong JL, Buhr ED, Lee C, et al. (2009) Circadian clock feedback cycle through NAMPT-mediated NAD+ biosynthesis. Science 324: 651-654.
-
(2009)
Science
, vol.324
, pp. 651-654
-
-
Ramsey, K.M.1
Yoshino, J.2
Brace, C.S.3
Abrassart, D.4
Kobayashi, Y.5
Marcheva, B.6
Hong, H.K.7
Chong, J.L.8
Buhr, E.D.9
Lee, C.10
-
54
-
-
33744515807
-
Circadian orchestration of the hepatic proteome
-
Reddy AB, Karp NA, Maywood ES, Sage EA, Deery M, O'Neill JS, Wong GK, Chesham J, Odell M, Lilley KS, et al. (2006) Circadian orchestration of the hepatic proteome. Curr Biol 16: 1107-1115.
-
(2006)
Curr Biol
, vol.16
, pp. 1107-1115
-
-
Reddy, A.B.1
Karp, N.A.2
Maywood, E.S.3
Sage, E.A.4
Deery, M.5
O'Neill, J.S.6
Wong, G.K.7
Chesham, J.8
Odell, M.9
Lilley, K.S.10
-
55
-
-
34047245459
-
Glucocorticoid signaling synchronizes the liver circadian transcriptome
-
Reddy AB, Maywood ES, Karp NA, King VM, Inoue Y, Gonzalez FJ, Lilley KS, Kyriacou CP, Hastings MH, (2007) Glucocorticoid signaling synchronizes the liver circadian transcriptome. Hepatology 45: 1478-1488.
-
(2007)
Hepatology
, vol.45
, pp. 1478-1488
-
-
Reddy, A.B.1
Maywood, E.S.2
Karp, N.A.3
King, V.M.4
Inoue, Y.5
Gonzalez, F.J.6
Lilley, K.S.7
Kyriacou, C.P.8
Hastings, M.H.9
-
56
-
-
84962590026
-
Circadian clock control of liver metabolic functions
-
2 [Epub ahead of print]
-
Reinke H, Asher G, (2015) Circadian clock control of liver metabolic functions. Gastroenterology. 2 [Epub ahead of print]
-
(2015)
Gastroenterology
-
-
Reinke, H.1
Asher, G.2
-
57
-
-
38949209515
-
Differential display of DNA-binding proteins reveals heat-shock factor 1 as a circadian transcription factor
-
Reinke H, Saini C, Fleury-Olela F, Dibner C, Benjamin IJ, Schibler U, (2008) Differential display of DNA-binding proteins reveals heat-shock factor 1 as a circadian transcription factor. Genes Dev 22: 331-345.
-
(2008)
Genes Dev
, vol.22
, pp. 331-345
-
-
Reinke, H.1
Saini, C.2
Fleury-Olela, F.3
Dibner, C.4
Benjamin, I.J.5
Schibler, U.6
-
58
-
-
79952261359
-
Genome-wide and phase-specific DNA-binding rhythms of BMAL1 control circadian output functions in mouse liver
-
Rey G, Cesbron F, Rougemont J, Reinke H, Brunner M, Naef F, (2011) Genome-wide and phase-specific DNA-binding rhythms of BMAL1 control circadian output functions in mouse liver. PLoS Biol 9: e1000595.
-
(2011)
PLoS Biol
, vol.9
, pp. e1000595
-
-
Rey, G.1
Cesbron, F.2
Rougemont, J.3
Reinke, H.4
Brunner, M.5
Naef, F.6
-
59
-
-
75649127967
-
Identification of RACK1 and protein kinase Calpha as integral components of the mammalian circadian clock
-
Robles MS, Boyault C, Knutti D, Padmanabhan K, Weitz CJ, (2010) Identification of RACK1 and protein kinase Calpha as integral components of the mammalian circadian clock. Science 327: 463-466.
-
(2010)
Science
, vol.327
, pp. 463-466
-
-
Robles, M.S.1
Boyault, C.2
Knutti, D.3
Padmanabhan, K.4
Weitz, C.J.5
-
60
-
-
84893799587
-
In-vivo quantitative proteomics reveals a key contribution of post-transcriptional mechanisms to the circadian regulation of liver metabolism
-
Robles MS, Cox J, Mann M, (2014) In-vivo quantitative proteomics reveals a key contribution of post-transcriptional mechanisms to the circadian regulation of liver metabolism. PLoS Genet 10: e1004047.
-
(2014)
PLoS Genet
, vol.10
, pp. e1004047
-
-
Robles, M.S.1
Cox, J.2
Mann, M.3
-
61
-
-
0035919479
-
Regulation of clock and NPAS2 DNA binding by the redox state of NAD cofactors
-
Rutter J, Reick M, Wu LC, McKnight SL, (2001) Regulation of clock and NPAS2 DNA binding by the redox state of NAD cofactors. Science 293: 510-514.
-
(2001)
Science
, vol.293
, pp. 510-514
-
-
Rutter, J.1
Reick, M.2
Wu, L.C.3
McKnight, S.L.4
-
62
-
-
84858321758
-
Simulated body temperature rhythms reveal the phase-shifting behavior and plasticity of mammalian circadian oscillators
-
Saini C, Morf J, Stratmann M, Gos P, Schibler U, (2012) Simulated body temperature rhythms reveal the phase-shifting behavior and plasticity of mammalian circadian oscillators. Genes Dev 26: 567-580.
-
(2012)
Genes Dev
, vol.26
, pp. 567-580
-
-
Saini, C.1
Morf, J.2
Stratmann, M.3
Gos, P.4
Schibler, U.5
-
64
-
-
70350447953
-
Glucocorticoid regulation of the circadian clock modulates glucose homeostasis
-
So AY, Bernal TU, Pillsbury ML, Yamamoto KR, Feldman BJ, (2009) Glucocorticoid regulation of the circadian clock modulates glucose homeostasis. Proc Natl Acad Sci U S A 106: 17582-17587.
-
(2009)
Proc Natl Acad Sci U S A
, vol.106
, pp. 17582-17587
-
-
So, A.Y.1
Bernal, T.U.2
Pillsbury, M.L.3
Yamamoto, K.R.4
Feldman, B.J.5
-
65
-
-
0031769253
-
Glucose, but not fat, phase shifts the feeding-entrained circadian clock
-
Stephan FK, Davidson AJ, (1998) Glucose, but not fat, phase shifts the feeding-entrained circadian clock. Physiol Behav 65: 277-288.
-
(1998)
Physiol Behav
, vol.65
, pp. 277-288
-
-
Stephan, F.K.1
Davidson, A.J.2
-
66
-
-
0037007625
-
Extensive and divergent circadian gene expression in liver and heart
-
Storch KF, Lipan O, Leykin I, Viswanathan N, Davis FC, Wong WH, Weitz CJ, (2002) Extensive and divergent circadian gene expression in liver and heart. Nature 417: 78-83.
-
(2002)
Nature
, vol.417
, pp. 78-83
-
-
Storch, K.F.1
Lipan, O.2
Leykin, I.3
Viswanathan, N.4
Davis, F.C.5
Wong, W.H.6
Weitz, C.J.7
-
67
-
-
84943456330
-
Histone monoubiquitination by Clock-Bmal1 complex marks Per1 and Per2 genes for circadian feedback
-
Tamayo AG, Duong HA, Robles MS, Mann M, Weitz CJ, (2015) Histone monoubiquitination by Clock-Bmal1 complex marks Per1 and Per2 genes for circadian feedback. Nat Struct Mol Biol 22: 759-766.
-
(2015)
Nat Struct Mol Biol
, vol.22
, pp. 759-766
-
-
Tamayo, A.G.1
Duong, H.A.2
Robles, M.S.3
Mann, M.4
Weitz, C.J.5
-
68
-
-
84870553909
-
Circadian oscillations of protein-coding and regulatory RNAs in a highly dynamic mammalian liver epigenome
-
Vollmers C, Schmitz RJ, Nathanson J, Yeo G, Ecker JR, Panda S, (2012) Circadian oscillations of protein-coding and regulatory RNAs in a highly dynamic mammalian liver epigenome. Cell Metab 16: 833-845.
-
(2012)
Cell Metab
, vol.16
, pp. 833-845
-
-
Vollmers, C.1
Schmitz, R.J.2
Nathanson, J.3
Yeo, G.4
Ecker, J.R.5
Panda, S.6
-
69
-
-
77951927020
-
Suprachiasmatic nucleus: Cell autonomy and network properties
-
Welsh DK, Takahashi JS, Kay SA, (2010) Suprachiasmatic nucleus: Cell autonomy and network properties. Annu Rev Physiol 72: 551-577.
-
(2010)
Annu Rev Physiol
, vol.72
, pp. 551-577
-
-
Welsh, D.K.1
Takahashi, J.S.2
Kay, S.A.3
-
70
-
-
84909592563
-
A circadian gene expression atlas in mammals: Implications for biology and medicine
-
Zhang R, Lahens NF, Ballance HI, Hughes ME, Hogenesch JB, (2014) A circadian gene expression atlas in mammals: Implications for biology and medicine. Proc Natl Acad Sci U S A 111: 16219-16224.
-
(2014)
Proc Natl Acad Sci U S A
, vol.111
, pp. 16219-16224
-
-
Zhang, R.1
Lahens, N.F.2
Ballance, H.I.3
Hughes, M.E.4
Hogenesch, J.B.5
-
71
-
-
84899806842
-
Nuclear receptors rock around the clock
-
Zhao X, Cho H, Yu RT, Atkins AR, Downes M, Evans RM, (2014) Nuclear receptors rock around the clock. EMBO Rep 15: 518-528.
-
(2014)
EMBO Rep
, vol.15
, pp. 518-528
-
-
Zhao, X.1
Cho, H.2
Yu, R.T.3
Atkins, A.R.4
Downes, M.5
Evans, R.M.6
-
72
-
-
84948436225
-
Circadian clock control by polyamine levels through a mechanism that declines with age
-
Zwighaft Z, Aviram R, Shalev M, Rousso-Noori L, Kraut-Cohen J, Golik M, Brandis A, Reinke H, Aharoni A, Kahana C, et al. (2015) Circadian clock control by polyamine levels through a mechanism that declines with age. Cell Metab 22: 874-885.
-
(2015)
Cell Metab
, vol.22
, pp. 874-885
-
-
Zwighaft, Z.1
Aviram, R.2
Shalev, M.3
Rousso-Noori, L.4
Kraut-Cohen, J.5
Golik, M.6
Brandis, A.7
Reinke, H.8
Aharoni, A.9
Kahana, C.10
|