-
1
-
-
66449087281
-
The circadian system in higher plants
-
PMID:19575587
-
Harmer SL. The circadian system in higher plants. Annu Rev Plant Biol 2009; 60:357-377; PMID:19575587; http://dx.doi.org/10.1146/annurev.arplant.043008.092054
-
(2009)
Annu Rev Plant Biol
, vol.60
, pp. 357-377
-
-
Harmer, S.L.1
-
2
-
-
84862675384
-
Central and peripheral circadian clocks in mammals
-
PMID:22483041
-
Mohawk JA, Green CB, Takahashi JS. Central and peripheral circadian clocks in mammals. Annu Rev Neurosci 2012; 35:445-462; PMID:22483041; http://dx.doi.org/10.1146/annurev-neuro-060909-153128
-
(2012)
Annu Rev Neurosci
, vol.35
, pp. 445-462
-
-
Mohawk, J.A.1
Green, C.B.2
Takahashi, J.S.3
-
3
-
-
70350128135
-
AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation
-
PMID:19833968
-
Lamia KA, Sachdeva UM, DiTacchio L, Williams EC, Alvarez JG, Egan DF, Vasquez DS, Juguilon H, Panda S, Shaw RJ, et al. AMPK regulates the circadian clock by cryptochrome phosphorylation and degradation. Science 2009; 326:437-440; PMID:19833968; http://dx.doi.org/10.1126/science.1172156
-
(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
-
4
-
-
33644816031
-
Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis
-
PMID:16299223
-
Bläsing OE, Gibon Y, Günther M, Höhne M, Morcuende R, Osuna D, Thimm O, Usadel B, Scheible WR, Stitt M. Sugars and circadian regulation make major contributions to the global regulation of diurnal gene expression in Arabidopsis. Plant Cell 2005; 17:3257-3281; PMID:16299223; http://dx.doi.org/10.1105/tpc.105.035261
-
(2005)
Plant Cell
, vol.17
, pp. 3257-3281
-
-
Bläsing, O.E.1
Gibon, Y.2
Günther, M.3
Höhne, M.4
Morcuende, R.5
Osuna, D.6
Thimm, O.7
Usadel, B.8
Scheible, W.R.9
Stitt, M.10
-
5
-
-
78651453820
-
Light-driven changes in energy metabolism directly entrain the cyanobacterial circadian oscillator
-
PMID:21233390
-
Rust MJ, Golden SS, O'Shea EK. Light-driven changes in energy metabolism directly entrain the cyanobacterial circadian oscillator. Science 2011; 331:220-223; PMID:21233390; http://dx.doi.//10.1126/science.1197243
-
(2011)
Science
, vol.331
, pp. 220-223
-
-
Rust, M.J.1
Golden, S.S.2
O'Shea, E.K.3
-
6
-
-
20844461135
-
Obesity and metabolic syndrome in circadian Clock mutant mice
-
PMID:15845877
-
Turek FW, Joshu C, Kohsaka A, Lin E, Ivanova G, McDearmon E, Laposky A, Losee-Olson S, Easton A, Jensen DR, et al. Obesity and metabolic syndrome in circadian Clock mutant mice. Science 2005; 308:1043-1045; PMID:15845877; http://dx.doi.//10.1126/science.1108750
-
(2005)
Science
, vol.308
, pp. 1043-1045
-
-
Turek, F.W.1
Joshu, C.2
Kohsaka, A.3
Lin, E.4
Ivanova, G.5
McDearmon, E.6
Laposky, A.7
Losee-Olson, S.8
Easton, A.9
Jensen, D.R.10
-
7
-
-
75749086085
-
DIAGRAM Consortium; GIANT Consortium; Global BPgen Consortium; Anders Hamsten on behalf of Procardis Consortium; MAGIC investigators New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk
-
PMID:20081858
-
Dupuis J, Langenberg C, Prokopenko I, Saxena R, Soranzo N, Jackson AU, Wheeler E, Glazer NL, Bouatia-Naji N, Gloyn AL, et al.; DIAGRAM Consortium; GIANT Consortium; Global BPgen Consortium; Anders Hamsten on behalf of Procardis Consortium; MAGIC investigators. New genetic loci implicated in fasting glucose homeostasis and their impact on type 2 diabetes risk. Nat Genet 2010; 42:105-116; PMID:20081858; http://dx.doi.//10.1038/ng.520
-
(2010)
Nat Genet
, vol.42
, pp. 105-116
-
-
Dupuis, J.1
Langenberg, C.2
Prokopenko, I.3
Saxena, R.4
Soranzo, N.5
Jackson, A.U.6
Wheeler, E.7
Glazer, N.L.8
Bouatia-Naji, N.9
Gloyn, A.L.10
-
8
-
-
0034671791
-
Orchestrated transcription of key pathways in Arabidopsis by the circadian clock
-
PMID:11118138
-
Harmer SL, Hogenesch JB, Straume M, Chang HS, Han B, Zhu T, Wang X, Kreps JA, Kay SA. Orchestrated transcription of key pathways in Arabidopsis by the circadian clock. Science 2000; 290:2110-2113; PMID:11118138; http://dx.doi.//10.1126/science.290.5499.2110
-
(2000)
Science
, vol.290
, pp. 2110-2113
-
-
Harmer, S.L.1
Hogenesch, J.B.2
Straume, M.3
Chang, H.S.4
Han, B.5
Zhu, T.6
Wang, X.7
Kreps, J.A.8
Kay, S.A.9
-
9
-
-
79955397431
-
Interactions between plant circadian clocks and solute transport
-
PMID:21378117
-
Haydon MJ, Bell LJ, Webb AA. Interactions between plant circadian clocks and solute transport. J Exp Bot 2011; 62:2333-2348; PMID:21378117; http://dx.doi.//10.1093/jxb/err040
-
(2011)
J Exp Bot
, vol.62
, pp. 2333-2348
-
-
Haydon, M.J.1
Bell, L.J.2
Webb, A.A.3
-
10
-
-
79551534130
-
Crosstalk between components of circadian and metabolic cycles in mammals
-
PMID:21284980
-
Asher G, Schibler U. Crosstalk between components of circadian and metabolic cycles in mammals. Cell Metab 2011; 13:125-137; PMID:21284980; http://dx.doi.org/10.1016/j.cmet.2011.01.006
-
(2011)
Cell Metab
, vol.13
, pp. 125-137
-
-
Asher, G.1
Schibler, U.2
-
11
-
-
84867644429
-
CIRCADIAN CLOCK-ASSOCIATED 1 regulates ROS homeostasis and oxidative stress responses
-
PMID:23027948
-
Lai AG, Doherty CJ, Mueller-Roeber B, Kay SA, Schippers JH, Dijkwel PP. CIRCADIAN CLOCK-ASSOCIATED 1 regulates ROS homeostasis and oxidative stress responses. Proc Natl Acad Sci U S A 2012; 109:17129-17134; PMID:23027948; http://dx.doi.org/10.1073/pnas.1209148109
-
(2012)
Proc Natl Acad Sci U S A
, vol.109
, pp. 17129-17134
-
-
Lai, A.G.1
Doherty, C.J.2
Mueller-Roeber, B.3
Kay, S.A.4
Schippers, J.H.5
Dijkwel, P.P.6
-
12
-
-
84866382187
-
ROS homeostasis during development: An evolutionary conserved strategy
-
PMID:22842779
-
Schippers JH, Nguyen HM, Lu D, Schmidt R, Mueller-Roeber B. ROS homeostasis during development: an evolutionary conserved strategy. Cell Mol Life Sci 2012; 69:3245-3257; PMID:22842779; http://dx.doi.org/10.1007/s00018-012-1092-4
-
(2012)
Cell Mol Life Sci
, vol.69
, pp. 3245-3257
-
-
Schippers, J.H.1
Nguyen, H.M.2
Lu, D.3
Schmidt, R.4
Mueller-Roeber, B.5
-
13
-
-
84866133072
-
Reactive oxygen species in health and disease
-
2012
-
Alfadda AA, Sallam RM. Reactive oxygen species in health and disease. J Biomed Biotechnol 2012; 2012:936486.
-
(2012)
J Biomed Biotechnol
, pp. 936486
-
-
Alfadda, A.A.1
Sallam, R.M.2
-
14
-
-
79955963976
-
Cold defence responses: The role of oxidative stress
-
[Schol Ed], (Schol Ed), PMID:21196386
-
Blagojevic DP, Grubor-Lajsic GN, Spasic MB. Cold defence responses: the role of oxidative stress. [Schol Ed]. Front Biosci (Schol Ed) 2011; 3:416-427; PMID:21196386; http://dx.doi.org/10.2741/s161
-
(2011)
Front Biosci
, vol.3
, pp. 416-427
-
-
Blagojevic, D.P.1
Grubor-Lajsic, G.N.2
Spasic, M.B.3
-
15
-
-
84855340218
-
ROS and redox signalling in the response of plants to abiotic stress
-
PMID:21486305
-
Suzuki N, Koussevitzky S, Mittler R, Miller G. ROS and redox signalling in the response of plants to abiotic stress. Plant Cell Environ 2012; 35:259-270; PMID:21486305; http://dx.doi.//10.1111/j.1365-3040.2011.02336.x
-
(2012)
Plant Cell Environ
, vol.35
, pp. 259-270
-
-
Suzuki, N.1
Koussevitzky, S.2
Mittler, R.3
Miller, G.4
-
16
-
-
84878771046
-
ROS signaling pathways and biological rhythms: Perspectives in crustaceans
-
PMID:23276951
-
Fanjul-Moles ML. ROS signaling pathways and biological rhythms: perspectives in crustaceans. Front Biosci (Landmark Ed) 2013; 18:665-675; PMID:23276951; http://dx.doi.org/10.2741/4129
-
(2013)
Front Biosci
, vol.18
, pp. 665-675
-
-
Fanjul-Moles, M.L.1
-
17
-
-
0032303006
-
Imbibition, but not release from stratification, sets the circadian clock in Arabidopsis seedlings
-
PMID:9836741
-
Zhong HH, Painter JE, Salomé PA, Straume M, McClung CR. Imbibition, but not release from stratification, sets the circadian clock in Arabidopsis seedlings. Plant Cell 1998; 10:2005-2017; PMID:9836741
-
(1998)
Plant Cell
, vol.10
, pp. 2005-2017
-
-
Zhong, H.H.1
Painter, J.E.2
Salomé, P.A.3
Straume, M.4
McClung, C.R.5
-
18
-
-
51549089224
-
Circadian timekeeping during early Arabidopsis development
-
PMID:18480377
-
Salomé PA, Xie Q, McClung CR. Circadian timekeeping during early Arabidopsis development. Plant Physiol 2008; 147:1110-1125; PMID:18480377; http://dx.doi.org/10.1104/pp.108.117622
-
(2008)
Plant Physiol
, vol.147
, pp. 1110-1125
-
-
Salomé, P.A.1
Xie, Q.2
McClung, C.R.3
-
19
-
-
77953313350
-
Extracellular production of reactive oxygen species during seed germination and early seedling growth in Pisum sativum
-
PMID:20303611
-
Kranner I, Roach T, Beckett RP, Whitaker C, Minibayeva FV. Extracellular production of reactive oxygen species during seed germination and early seedling growth in Pisum sativum. J Plant Physiol 2010; 167:805-811; PMID:20303611; http://dx.doi.//10.1016/j.jplph.2010.01.019
-
(2010)
J Plant Physiol
, vol.167
, pp. 805-811
-
-
Kranner, I.1
Roach, T.2
Beckett, R.P.3
Whitaker, C.4
Minibayeva, F.V.5
-
20
-
-
84875745987
-
Genes that respond to Have also evoked under light in Arabidopsis
-
PMID:23024208
-
Cheng H, Zhang Q, Guo D. Genes that respond to Have also evoked under light in Arabidopsis. Mol Plant 2013; 6:226-228; PMID:23024208; http://dx.doi.org/10.1093/mp/sss108
-
(2013)
Mol Plant
, vol.6
, pp. 226-228
-
-
Cheng, H.1
Zhang, Q.2
Guo, D.3
-
21
-
-
51749110466
-
Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development
-
PMID:18710561
-
Covington MF, Maloof JN, Straume M, Kay SA, Harmer SL. Global transcriptome analysis reveals circadian regulation of key pathways in plant growth and development. Genome Biol 2008; 9:R130; PMID:18710561; http://dx.doi.org/10.1186/gb-2008-9-8-r130
-
(2008)
Genome Biol
, vol.9
-
-
Covington, M.F.1
Maloof, J.N.2
Straume, M.3
Kay, S.A.4
Harmer, S.L.5
-
22
-
-
84879001061
-
Bmal1 and β-cell clock are required for adaptation to circadian disruption, and their loss of function leads to oxidative stress-induced β-cell failure in mice
-
PMID:23547261
-
Lee J, Moulik M, Fang Z, Saha P, Zou F, Xu Y, Nelson DL, Ma K, Moore DD, Yechoor VK. Bmal1 and β-cell clock are required for adaptation to circadian disruption, and their loss of function leads to oxidative stress-induced β-cell failure in mice. Mol Cell Biol 2013; 33:2327-2338; PMID:23547261; http://dx.doi.org/10.1128/MCB.01421-12
-
(2013)
Mol Cell Biol
, vol.33
, pp. 2327-2338
-
-
Lee, J.1
Moulik, M.2
Fang, Z.3
Saha, P.4
Zou, F.5
Xu, Y.6
Nelson, D.L.7
Ma, K.8
Moore, D.D.9
Yechoor, V.K.10
-
23
-
-
48349130341
-
Circadian regulation of response to oxidative stress in Drosophila melanogaster
-
PMID:18627767
-
Krishnan N, Davis AJ, Giebultowicz JM. Circadian regulation of response to oxidative stress in Drosophila melanogaster. Biochem Biophys Res Commun 2008; 374:299-303; PMID:18627767; http://dx.doi.org/10.1016/j.bbrc.2008.07.011
-
(2008)
Biochem Biophys Res Commun
, vol.374
, pp. 299-303
-
-
Krishnan, N.1
Davis, A.J.2
Giebultowicz, J.M.3
-
24
-
-
84870587629
-
Circadian regulation of glutathione levels and biosynthesis in Drosophila melanogaster
-
PMID:23226288
-
Beaver LM, Klichko VI, Chow ES, Kotwica-Rolinska J, Williamson M, Orr WC, Radyuk SN, Giebultowicz JM. Circadian regulation of glutathione levels and biosynthesis in Drosophila melanogaster. PLoS One 2012; 7:e50454; PMID:23226288; http://dx.doi.//10.1371/journal.pone.0050454
-
(2012)
PLoS One
, vol.7
-
-
Beaver, L.M.1
Klichko, V.I.2
Chow, E.S.3
Kotwica-Rolinska, J.4
Williamson, M.5
Orr, W.C.6
Radyuk, S.N.7
Giebultowicz, J.M.8
-
25
-
-
82555185702
-
Cross-talk between the cellular redox state and the circadian system in Neurospora
-
PMID:22164247
-
Yoshida Y, Iigusa H, Wang N, Hasunuma K. Cross-talk between the cellular redox state and the circadian system in Neurospora. PLoS One 2011; 6:e28227; PMID:22164247; http://dx.doi.org/10.1371/journal.pone.0028227
-
(2011)
PLoS One
, vol.6
-
-
Yoshida, Y.1
Iigusa, H.2
Wang, N.3
Hasunuma, K.4
-
26
-
-
79958042568
-
ROS signaling: The new wave?
-
PMID:21482172
-
Mittler R, Vanderauwera S, Suzuki N, Miller G, Tognetti VB, Vandepoele K, Gollery M, Shulaev V, Van Breusegem F. ROS signaling: the new wave? Trends Plant Sci 2011; 16:300-309; PMID:21482172; http://dx.doi.org/10.1016/j.tplants.2011.03.007
-
(2011)
Trends Plant Sci
, vol.16
, pp. 300-309
-
-
Mittler, R.1
Vanderauwera, S.2
Suzuki, N.3
Miller, G.4
Tognetti, V.B.5
Vandepoele, K.6
Gollery, M.7
Shulaev, V.8
van Breusegem, F.9
-
27
-
-
57849139821
-
The circadian clock in Arabidopsis roots is a simplified slave version of the clock in shoots
-
PMID:19095940
-
James AB, Monreal JA, Nimmo GA, Kelly CL, Herzyk P, Jenkins GI, Nimmo HG. The circadian clock in Arabidopsis roots is a simplified slave version of the clock in shoots. Science 2008; 322:1832-1835; PMID:19095940; http://dx.doi.org/10.1126/science.1161403
-
(2008)
Science
, vol.322
, pp. 1832-1835
-
-
James, A.B.1
Monreal, J.A.2
Nimmo, G.A.3
Kelly, C.L.4
Herzyk, P.5
Jenkins, G.I.6
Nimmo, H.G.7
-
28
-
-
84864822857
-
The circadian output signals from the suprachiasmatic nuclei
-
PMID:22877662
-
Li JD, Hu WP, Zhou QY. The circadian output signals from the suprachiasmatic nuclei. Prog Brain Res 2012; 199:119-127; PMID:22877662; http://dx.doi.//10.1016/B978-0-444-59427-3.00028-9
-
(2012)
Prog Brain Res
, vol.199
, pp. 119-127
-
-
Li, J.D.1
Hu, W.P.2
Zhou, Q.Y.3
-
29
-
-
33947303520
-
Ghrelin effects on the circadian system of mice
-
PMID:17360911
-
Yannielli PC, Molyneux PC, Harrington ME, Golombek DA. Ghrelin effects on the circadian system of mice. J Neurosci 2007; 27:2890-2895; PMID:17360911; http://dx.doi.org/10.1523/JNEUROSCI.3913-06.2007
-
(2007)
J Neurosci
, vol.27
, pp. 2890-2895
-
-
Yannielli, P.C.1
Molyneux, P.C.2
Harrington, M.E.3
Golombek, D.A.4
-
30
-
-
49649122302
-
UCP2 mediates ghrelin's action on NPY/AgRP neurons by lowering free radicals
-
PMID:18668043
-
Andrews ZB, Liu ZW, Walllingford N, Erion DM, Borok E, Friedman JM, Tschöp MH, Shanabrough M, Cline G, Shulman GI, et al. UCP2 mediates ghrelin's action on NPY/AgRP neurons by lowering free radicals. Nature 2008; 454:846-851; PMID:18668043; http://dx.doi.org/10.1038/nature07181
-
(2008)
Nature
, vol.454
, pp. 846-851
-
-
Andrews, Z.B.1
Liu, Z.W.2
Walllingford, N.3
Erion, D.M.4
Borok, E.5
Friedman, J.M.6
Tschöp, M.H.7
Shanabrough, M.8
Cline, G.9
Shulman, G.I.10
-
31
-
-
63749097442
-
Fuel utilization by hypothalamic neurons: Roles for ROS
-
PMID:19084428
-
Horvath TL, Andrews ZB, Diano S. Fuel utilization by hypothalamic neurons: roles for ROS. Trends Endocrinol Metab 2009; 20:78-87; PMID:19084428; http://dx.doi.org/10.1016/j.tem.2008.10.003
-
(2009)
Trends Endocrinol Metab
, vol.20
, pp. 78-87
-
-
Horvath, T.L.1
Andrews, Z.B.2
Diano, S.3
-
32
-
-
79251539603
-
Circadian rhythms persist without transcription in a eukaryote
-
PMID:21270895
-
O'Neill JS, van Ooijen G, Dixon LE, Troein C, Corellou F, Bouget FY, Reddy AB, Millar AJ. Circadian rhythms persist without transcription in a eukaryote. Nature 2011; 469:554-558; PMID:21270895; http://dx.doi.org/10.1038/nature09654
-
(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
-
33
-
-
84861452257
-
Peroxiredoxins are conserved markers of circadian rhythms
-
PMID:22622569
-
Edgar RS, Green EW, Zhao Y, van Ooijen G, Olmedo M, Qin X, Xu Y, Pan M, Valekunja UK, Feeney KA, et al. Peroxiredoxins are conserved markers of circadian rhythms. Nature 2012; 485:459-464; PMID:22622569
-
(2012)
Nature
, vol.485
, pp. 459-464
-
-
Edgar, R.S.1
Green, E.W.2
Zhao, Y.3
van Ooijen, G.4
Olmedo, M.5
Qin, X.6
Xu, Y.7
Pan, M.8
Valekunja, U.K.9
Feeney, K.A.10
-
34
-
-
84876791786
-
Connecting cellular metabolism to circadian clocks
-
PMID:23391694
-
Rey G, Reddy AB. Connecting cellular metabolism to circadian clocks. Trends Cell Biol 2013; 23:234-241; PMID:23391694; http://dx.doi.org/10.1016/j.tcb.2013.01.003
-
(2013)
Trends Cell Biol
, vol.23
, pp. 234-241
-
-
Rey, G.1
Reddy, A.B.2
|