-
1
-
-
79955840690
-
The cyanobacterial circadian system: From biophysics to bioevolution
-
C.H. Johnson, P.L. Stewart, and M. Egli The cyanobacterial circadian system: from biophysics to bioevolution Annu. Rev. Biophys. 40 2011 143 167
-
(2011)
Annu. Rev. Biophys.
, vol.40
, pp. 143-167
-
-
Johnson, C.H.1
Stewart, P.L.2
Egli, M.3
-
2
-
-
80052900616
-
Molecular genetic analysis of circadian timekeeping in Drosophila
-
P.E. Hardin Molecular genetic analysis of circadian timekeeping in Drosophila Adv. Genet. 74 2011 141 173
-
(2011)
Adv. Genet.
, vol.74
, pp. 141-173
-
-
Hardin, P.E.1
-
3
-
-
80052899933
-
Genetics of circadian rhythms in mammalian model organisms
-
P.L. Lowrey, and J.S. Takahashi Genetics of circadian rhythms in mammalian model organisms Adv. Genet. 74 2011 175 230
-
(2011)
Adv. Genet.
, vol.74
, pp. 175-230
-
-
Lowrey, P.L.1
Takahashi, J.S.2
-
4
-
-
52149109334
-
The genetics of mammalian circadian order and disorder: Implications for physiology and disease
-
J.S. Takahashi, H.K. Hong, C.H. Ko, and E.L. McDearmon The genetics of mammalian circadian order and disorder: implications for physiology and disease Nat. Rev.; Genet. 9 2008 764 775
-
(2008)
Nat. Rev.; Genet.
, vol.9
, pp. 764-775
-
-
Takahashi, J.S.1
Hong, H.K.2
Ko, C.H.3
McDearmon, E.L.4
-
5
-
-
77951927020
-
Suprachiasmatic nucleus: Cell autonomy and network properties
-
D.K. Welsh, J.S. Takahashi, and S.A. Kay Suprachiasmatic nucleus: cell autonomy and network properties Annu. Rev. Physiol. 72 2010 551 577
-
(2010)
Annu. Rev. Physiol.
, vol.72
, pp. 551-577
-
-
Welsh, D.K.1
Takahashi, J.S.2
Kay, S.A.3
-
6
-
-
84860299312
-
Timing to perfection: The biology of central and peripheral circadian clocks
-
U. Albrecht Timing to perfection: the biology of central and peripheral circadian clocks Neuron 74 2012 246 260
-
(2012)
Neuron
, vol.74
, pp. 246-260
-
-
Albrecht, U.1
-
7
-
-
80052903129
-
The genetics of plant clocks
-
C.R. McClung The genetics of plant clocks Adv. Genet. 74 2011 105 139
-
(2011)
Adv. Genet.
, vol.74
, pp. 105-139
-
-
McClung, C.R.1
-
8
-
-
0037007625
-
Extensive and divergent circadian gene expression in liver and heart
-
K.F. Storch, O. Lipan, I. Leykin, N. Viswanathan, F.C. Davis, W.H. Wong, and C.J. Weitz Extensive and divergent circadian gene expression in liver and heart Nature 417 2002 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
-
9
-
-
0141557951
-
DNA microarray analyses of circadian timing: The genomic basis of biological time
-
G.E. Duffield DNA microarray analyses of circadian timing: the genomic basis of biological time J. Neuroendocrinol. 15 2003 991 1002
-
(2003)
J. Neuroendocrinol.
, vol.15
, pp. 991-1002
-
-
Duffield, G.E.1
-
10
-
-
79251566511
-
Circadian clocks in human red blood cells
-
J.S. O'Neill, and A.B. Reddy Circadian clocks in human red blood cells Nature 469 2011 499 503
-
(2011)
Nature
, vol.469
, pp. 499-503
-
-
O'Neill, J.S.1
Reddy, A.B.2
-
11
-
-
33744515807
-
Circadian orchestration of the hepatic proteome
-
A.B. Reddy, N.A. Karp, E.S. Maywood, E.A. Sage, M. Deery, and J.S. O'Neill Circadian orchestration of the hepatic proteome Curr. Biol. 16 2006 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
-
12
-
-
71649093603
-
Proteomic analysis reveals the role of synaptic vesicle cycling in sustaining the suprachiasmatic circadian clock
-
M.J. Deery, E.S. Maywood, J.E. Chesham, M. Sladek, N.A. Karp, and E.W. Green Proteomic analysis reveals the role of synaptic vesicle cycling in sustaining the suprachiasmatic circadian clock Curr. Biol. 19 2009 2031 2036
-
(2009)
Curr. Biol.
, vol.19
, pp. 2031-2036
-
-
Deery, M.J.1
Maywood, E.S.2
Chesham, J.E.3
Sladek, M.4
Karp, N.A.5
Green, E.W.6
-
13
-
-
30844466208
-
PER-TIM interactions in living Drosophila cells: An interval timer for the circadian clock
-
P. Meyer, L. Saez, and M.W. Young PER-TIM interactions in living Drosophila cells: an interval timer for the circadian clock Science 311 2006 226 229
-
(2006)
Science
, vol.311
, pp. 226-229
-
-
Meyer, P.1
Saez, L.2
Young, M.W.3
-
14
-
-
0037423224
-
Vrille, Pdp1, and dClock form a second feedback loop in the Drosophila circadian clock
-
S.A. Cyran, A.M. Buchsbaum, K.L. Reddy, M.C. Lin, N.R. Glossop, and P.E. Hardin Vrille, Pdp1, and dClock form a second feedback loop in the Drosophila circadian clock Cell 112 2003 329 341
-
(2003)
Cell
, vol.112
, pp. 329-341
-
-
Cyran, S.A.1
Buchsbaum, A.M.2
Reddy, K.L.3
Lin, M.C.4
Glossop, N.R.5
Hardin, P.E.6
-
15
-
-
34347375754
-
A functional genomics strategy reveals clockwork orange as a transcriptional regulator in the Drosophila circadian clock
-
A. Matsumoto, M. Ukai-Tadenuma, R.G. Yamada, J. Houl, K.D. Uno, and T. Kasukawa A functional genomics strategy reveals clockwork orange as a transcriptional regulator in the Drosophila circadian clock Genes Dev. 21 2007 1687 1700
-
(2007)
Genes Dev.
, vol.21
, pp. 1687-1700
-
-
Matsumoto, A.1
Ukai-Tadenuma, M.2
Yamada, R.G.3
Houl, J.4
Uno, K.D.5
Kasukawa, T.6
-
16
-
-
34347382964
-
Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component
-
S. Kadener, D. Stoleru, M. McDonald, P. Nawathean, and M. Rosbash Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component Genes Dev. 21 2007 1675 1686
-
(2007)
Genes Dev.
, vol.21
, pp. 1675-1686
-
-
Kadener, S.1
Stoleru, D.2
McDonald, M.3
Nawathean, P.4
Rosbash, M.5
-
17
-
-
0034800310
-
Photic signaling by cryptochrome in the Drosophila circadian system
-
F.J. Lin, W. Song, E. Meyer-Bernstein, N. Naidoo, and A. Sehgal Photic signaling by cryptochrome in the Drosophila circadian system Mol. Cell. Biol. 21 2001 7287 7294
-
(2001)
Mol. Cell. Biol.
, vol.21
, pp. 7287-7294
-
-
Lin, F.J.1
Song, W.2
Meyer-Bernstein, E.3
Naidoo, N.4
Sehgal, A.5
-
18
-
-
33745503975
-
JETLAG resets the Drosophila circadian clock by promoting light-induced degradation of TIMELESS
-
K. Koh, X.Z. Zheng, and A. Sehgal JETLAG resets the Drosophila circadian clock by promoting light-induced degradation of TIMELESS Science 312 2006 1809 1812
-
(2006)
Science
, vol.312
, pp. 1809-1812
-
-
Koh, K.1
Zheng, X.Z.2
Sehgal, A.3
-
19
-
-
0033597904
-
MCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop
-
K. Kume, M.J. Zylka, S. Sriram, L.P. Shearman, D.R. Weaver, and X. Jin mCRY1 and mCRY2 are essential components of the negative limb of the circadian clock feedback loop Cell 98 1999 193 205
-
(1999)
Cell
, vol.98
, pp. 193-205
-
-
Kume, K.1
Zylka, M.J.2
Sriram, S.3
Shearman, L.P.4
Weaver, D.R.5
Jin, X.6
-
20
-
-
0037178787
-
The orphan nuclear receptor REV-ERBα controls circadian transcription within the positive limb of the mammalian circadian oscillator
-
N. Preitner, F. Damiola, L. Lopez-Molina, J. Zakany, D. Duboule, U. Albrecht, and U. Schibler The orphan nuclear receptor REV-ERBα controls circadian transcription within the positive limb of the mammalian circadian oscillator Cell 110 2002 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
Albrecht, U.6
Schibler, U.7
-
21
-
-
4143142003
-
A functional genomics strategy reveals Rora as a component of the mammalian circadian clock
-
T.K. Sato, S. Panda, L.G. Miraglia, T.M. Reyes, R.D. Rudic, and P. McNamara A functional genomics strategy reveals Rora as a component of the mammalian circadian clock Neuron 43 2004 527 537
-
(2004)
Neuron
, vol.43
, pp. 527-537
-
-
Sato, T.K.1
Panda, S.2
Miraglia, L.G.3
Reyes, T.M.4
Rudic, R.D.5
McNamara, P.6
-
22
-
-
77953293491
-
An expanding universe of circadian networks in higher plants
-
J.L. Pruneda-Paz, and S.A. Kay An expanding universe of circadian networks in higher plants Trends Plant Sci. 15 2010 259 265
-
(2010)
Trends Plant Sci.
, vol.15
, pp. 259-265
-
-
Pruneda-Paz, J.L.1
Kay, S.A.2
-
23
-
-
34548813657
-
ZEITLUPE is a circadian photoreceptor stabilized by GIGANTEA in blue light
-
W.Y. Kim, S. Fujiwara, S.S. Suh, J. Kim, Y. Kim, and L. Han ZEITLUPE is a circadian photoreceptor stabilized by GIGANTEA in blue light Nature 449 2007 356 360
-
(2007)
Nature
, vol.449
, pp. 356-360
-
-
Kim, W.Y.1
Fujiwara, S.2
Suh, S.S.3
Kim, J.4
Kim, Y.5
Han, L.6
-
24
-
-
0041029474
-
Direct targeting of light signals to a promoter element-bound transcription factor
-
J.F. Martinez-Garcia, E. Huq, and P.H. Quail Direct targeting of light signals to a promoter element-bound transcription factor Science 288 2000 859 863
-
(2000)
Science
, vol.288
, pp. 859-863
-
-
Martinez-Garcia, J.F.1
Huq, E.2
Quail, P.H.3
-
25
-
-
77951912759
-
Circadian organization of behavior and physiology in Drosophila
-
R. Allada, and B.Y. Chung Circadian organization of behavior and physiology in Drosophila Annu. Rev. Physiol. 72 2010 605 624
-
(2010)
Annu. Rev. Physiol.
, vol.72
, pp. 605-624
-
-
Allada, R.1
Chung, B.Y.2
-
26
-
-
7244242193
-
Coupled oscillators control morning and evening locomotor behaviour of Drosophila
-
D. Stoleru, Y. Peng, J. Agosto, and M. Rosbash Coupled oscillators control morning and evening locomotor behaviour of Drosophila Nature 431 2004 862 868
-
(2004)
Nature
, vol.431
, pp. 862-868
-
-
Stoleru, D.1
Peng, Y.2
Agosto, J.3
Rosbash, M.4
-
27
-
-
0034988751
-
Circadian photoreception in Drosophila: Functions of cryptochrome in peripheral and central clocks
-
M. Ivanchenko, R. Stanewsky, and J.M. Giebultowicz Circadian photoreception in Drosophila: functions of cryptochrome in peripheral and central clocks J. Biol. Rhythms 16 2001 205 215
-
(2001)
J. Biol. Rhythms
, vol.16
, pp. 205-215
-
-
Ivanchenko, M.1
Stanewsky, R.2
Giebultowicz, J.M.3
-
28
-
-
0031583808
-
Organization of neural inputs to the suprachiasmatic nucleus in the rat
-
M.M. Moga, and R.Y. Moore Organization of neural inputs to the suprachiasmatic nucleus in the rat J. Comp. Neurol. 389 1997 508 534
-
(1997)
J. Comp. Neurol.
, vol.389
, pp. 508-534
-
-
Moga, M.M.1
Moore, R.Y.2
-
29
-
-
0028334364
-
Intergeniculate leaflet lesions and behaviorally-induced shifts of circadian rhythms
-
D. Janik, and N. Mrosovsky Intergeniculate leaflet lesions and behaviorally-induced shifts of circadian rhythms Brain Res. 651 1994 174 182
-
(1994)
Brain Res.
, vol.651
, pp. 174-182
-
-
Janik, D.1
Mrosovsky, N.2
-
30
-
-
0035914180
-
Suprachiasmatic nucleus in the mouse: Retinal innervation, intrinsic organization and efferent projections
-
E.E. Abrahamson, and R.Y. Moore Suprachiasmatic nucleus in the mouse: retinal innervation, intrinsic organization and efferent projections Brain Res. 916 2001 172 191
-
(2001)
Brain Res.
, vol.916
, pp. 172-191
-
-
Abrahamson, E.E.1
Moore, R.Y.2
-
31
-
-
79955890550
-
Kinases and phosphatases in the mammalian circadian clock
-
S. Reischl, and A. Kramer Kinases and phosphatases in the mammalian circadian clock FEBS Lett. 585 2011 1393 1399
-
(2011)
FEBS Lett.
, vol.585
, pp. 1393-1399
-
-
Reischl, S.1
Kramer, A.2
-
32
-
-
0032503969
-
Double-time is a novel Drosophila clock gene that regulates PERIOD protein accumulation
-
J.L. Price, J. Blau, A. Rothenfluh, M. Abodeely, B. Kloss, and M.W. Young Double-time is a novel Drosophila clock gene that regulates PERIOD protein accumulation Cell 94 1998 83 95
-
(1998)
Cell
, vol.94
, pp. 83-95
-
-
Price, J.L.1
Blau, J.2
Rothenfluh, A.3
Abodeely, M.4
Kloss, B.5
Young, M.W.6
-
33
-
-
23944470712
-
Circadian clock control by SUMOylation of BMAL1
-
L. Cardone, J. Hirayama, F. Giordano, T. Tamaru, J.J. Palvimo, and P. Sassone-Corsi Circadian clock control by SUMOylation of BMAL1 Science 309 2005 1390 1394
-
(2005)
Science
, vol.309
, pp. 1390-1394
-
-
Cardone, L.1
Hirayama, J.2
Giordano, F.3
Tamaru, T.4
Palvimo, J.J.5
Sassone-Corsi, P.6
-
34
-
-
34248566788
-
SCFFbxl3 controls the oscillation of the circadian clock by directing the degradation of cryptochrome proteins
-
L. Busino, F. Bassermann, A. Maiolica, C. Lee, P.M. Nolan, and S.I. Godinho SCFFbxl3 controls the oscillation of the circadian clock by directing the degradation of cryptochrome proteins Science 316 2007 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
Godinho, S.I.6
-
35
-
-
78649886477
-
The histone methyltransferase MLL1 permits the oscillation of circadian gene expression
-
S. Katada, and P. Sassone-Corsi The histone methyltransferase MLL1 permits the oscillation of circadian gene expression Nat. Struct. Mol. Biol. 17 2010 1414 1421
-
(2010)
Nat. Struct. Mol. Biol.
, vol.17
, pp. 1414-1421
-
-
Katada, S.1
Sassone-Corsi, P.2
-
36
-
-
79551506940
-
Post-transcriptional control of circadian rhythms
-
S. Kojima, D.L. Shingle, and C.B. Green Post-transcriptional control of circadian rhythms J. Cell Sci. 124 2011 311 320
-
(2011)
J. Cell Sci.
, vol.124
, pp. 311-320
-
-
Kojima, S.1
Shingle, D.L.2
Green, C.B.3
-
37
-
-
58549089726
-
Mouse period 2 mRNA circadian oscilation is modulated by PTB-mediated rhythmic mRNA degradation
-
K.C. Woo, T.D. Kim, K.H. Lee, D.Y. Kim, W. Kim, K.Y. Lee, and K.T. Kim Mouse period 2 mRNA circadian oscilation is modulated by PTB-mediated rhythmic mRNA degradation Nucleic Acids Res. 37 2009 26 37
-
(2009)
Nucleic Acids Res.
, vol.37
, pp. 26-37
-
-
Woo, K.C.1
Kim, T.D.2
Lee, K.H.3
Kim, D.Y.4
Kim, W.5
Lee, K.Y.6
Kim, K.T.7
-
38
-
-
73549102403
-
Circadian amplitude of cryptochrome 1 is modulated by mRNA stability regulation via cytoplasmic hnRNP D oscillation
-
K.C. Woo, D.C. Ha, K.H. Lee, D.Y. Kim, T.D. Kim, and K.T. Kim Circadian amplitude of cryptochrome 1 is modulated by mRNA stability regulation via cytoplasmic hnRNP D oscillation Mol. Cell. Biol. 30 2010 197 205
-
(2010)
Mol. Cell. Biol.
, vol.30
, pp. 197-205
-
-
Woo, K.C.1
Ha, D.C.2
Lee, K.H.3
Kim, D.Y.4
Kim, T.D.5
Kim, K.T.6
-
39
-
-
0037316406
-
Nocturnin, a deadenylase in Xenopus laevis retina: A mechanism for posttranscriptional control of circadian-related mRNA
-
J.E. Baggs, and C.B. Green Nocturnin, a deadenylase in Xenopus laevis retina: a mechanism for posttranscriptional control of circadian-related mRNA Curr. Biol. 13 2003 189 198
-
(2003)
Curr. Biol.
, vol.13
, pp. 189-198
-
-
Baggs, J.E.1
Green, C.B.2
-
40
-
-
34547434830
-
Loss of Nocturnin, a circadian deadenylase, confers resistance to hepatic steatosis and diet-induced obesity
-
C.B. Green, N. Douris, S. Kojima, C.A. Strayer, J. Fogerty, and D. Lourim Loss of Nocturnin, a circadian deadenylase, confers resistance to hepatic steatosis and diet-induced obesity Proc. Natl Acad. Sci. USA 104 2007 9888 9893
-
(2007)
Proc. Natl Acad. Sci. USA
, vol.104
, pp. 9888-9893
-
-
Green, C.B.1
Douris, N.2
Kojima, S.3
Strayer, C.A.4
Fogerty, J.5
Lourim, D.6
-
41
-
-
33846907098
-
LARK activates posttranscriptional expression of an essential mammalian clock protein, PERIOD1
-
S. Kojima, K. Matsumoto, M. Hirose, M. Shimada, M. Nagano, and Y. Shigeyoshi LARK activates posttranscriptional expression of an essential mammalian clock protein, PERIOD1 Proc. Natl Acad. Sci. USA 104 2007 1859 1864
-
(2007)
Proc. Natl Acad. Sci. USA
, vol.104
, pp. 1859-1864
-
-
Kojima, S.1
Matsumoto, K.2
Hirose, M.3
Shimada, M.4
Nagano, M.5
Shigeyoshi, Y.6
-
42
-
-
57649200130
-
Natural variation in the splice site strength of a clock gene and species-specific thermal adaptation
-
K.H. Low, C. Lim, H.W. Ko, and I. Edery Natural variation in the splice site strength of a clock gene and species-specific thermal adaptation Neuron 60 2008 1054 1067
-
(2008)
Neuron
, vol.60
, pp. 1054-1067
-
-
Low, K.H.1
Lim, C.2
Ko, H.W.3
Edery, I.4
-
43
-
-
3042767202
-
MicroRNAs: Small RNAs with a big role in gene regulation
-
L. He, and G.J. Hannon MicroRNAs: small RNAs with a big role in gene regulation Nat. Rev.; Genet. 5 2004 522 531
-
(2004)
Nat. Rev.; Genet.
, vol.5
, pp. 522-531
-
-
He, L.1
Hannon, G.J.2
-
44
-
-
0036544755
-
MicroRNAs are complementary to 3′ UTR sequence motifs that mediate negative post-transcriptional regulation
-
E.C. Lai MicroRNAs are complementary to 3′ UTR sequence motifs that mediate negative post-transcriptional regulation Nat. Genet. 30 2002 363 364
-
(2002)
Nat. Genet.
, vol.30
, pp. 363-364
-
-
Lai, E.C.1
-
45
-
-
8144225486
-
MicroRNA genes are transcribed by RNA polymerase II
-
Y. Lee, M. Kim, J. Han, K.H. Yeom, S. Lee, S.H. Baek, and V.N. Kim MicroRNA genes are transcribed by RNA polymerase II EMBO J. 23 2004 4051 4060
-
(2004)
EMBO J.
, vol.23
, pp. 4051-4060
-
-
Lee, Y.1
Kim, M.2
Han, J.3
Yeom, K.H.4
Lee, S.5
Baek, S.H.6
Kim, V.N.7
-
46
-
-
0141843656
-
The nuclear RNase III Drosha initiates microRNA processing
-
Y. Lee, C. Ahn, J. Han, H. Choi, J. Kim, and J. Yim The nuclear RNase III Drosha initiates microRNA processing Nature 425 2003 415 419
-
(2003)
Nature
, vol.425
, pp. 415-419
-
-
Lee, Y.1
Ahn, C.2
Han, J.3
Choi, H.4
Kim, J.5
Yim, J.6
-
47
-
-
10644234841
-
The Drosha-DGCR8 complex in primary microRNA processing
-
J. Han, Y. Lee, K.H. Yeom, Y.K. Kim, H. Jin, and V.N. Kim The Drosha-DGCR8 complex in primary microRNA processing Genes Dev. 18 2004 3016 3027
-
(2004)
Genes Dev.
, vol.18
, pp. 3016-3027
-
-
Han, J.1
Lee, Y.2
Yeom, K.H.3
Kim, Y.K.4
Jin, H.5
Kim, V.N.6
-
48
-
-
0035905766
-
Role for a bidentate ribonuclease in the initiation step of RNA interference
-
E. Bernstein, A.A. Caudy, S.M. Hammond, and G.J. Hannon Role for a bidentate ribonuclease in the initiation step of RNA interference Nature 409 2001 363 366
-
(2001)
Nature
, vol.409
, pp. 363-366
-
-
Bernstein, E.1
Caudy, A.A.2
Hammond, S.M.3
Hannon, G.J.4
-
49
-
-
0037144546
-
A microRNA in a multiple-turnover RNAi enzyme complex
-
G. Hutvagner, and P.D. Zamore A microRNA in a multiple-turnover RNAi enzyme complex Science 297 2002 2056 2060
-
(2002)
Science
, vol.297
, pp. 2056-2060
-
-
Hutvagner, G.1
Zamore, P.D.2
-
50
-
-
34447097693
-
Intronic microRNA precursors that bypass Drosha processing
-
J.G. Ruby, C.H. Jan, and D.P. Bartel Intronic microRNA precursors that bypass Drosha processing Nature 448 2007 83 86
-
(2007)
Nature
, vol.448
, pp. 83-86
-
-
Ruby, J.G.1
Jan, C.H.2
Bartel, D.P.3
-
51
-
-
0034708122
-
The 21-nucleotide let-7 RNA regulates developmental timing in Caenorhabditis elegans
-
B.J. Reinhart, F.J. Slack, M. Basson, A.E. Pasquinelli, J.C. Bettinger, and A.E. Rougvie The 21-nucleotide let-7 RNA regulates developmental timing in Caenorhabditis elegans Nature 403 2000 901 906
-
(2000)
Nature
, vol.403
, pp. 901-906
-
-
Reinhart, B.J.1
Slack, F.J.2
Basson, M.3
Pasquinelli, A.E.4
Bettinger, J.C.5
Rougvie, A.E.6
-
52
-
-
11844278458
-
Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets
-
B.P. Lewis, C.B. Burge, and D.P. Bartel Conserved seed pairing, often flanked by adenosines, indicates that thousands of human genes are microRNA targets Cell 120 2005 15 20
-
(2005)
Cell
, vol.120
, pp. 15-20
-
-
Lewis, B.P.1
Burge, C.B.2
Bartel, D.P.3
-
53
-
-
34548329963
-
MicroRNA (miRNA) transcriptome of mouse retina and identification of a sensory organ-specific miRNA cluster
-
S.B. Xu, P.D. Witmer, S. Lumayag, B. Kovacs, and D. Valle MicroRNA (miRNA) transcriptome of mouse retina and identification of a sensory organ-specific miRNA cluster J. Biol. Chem. 282 2007 25053 25066
-
(2007)
J. Biol. Chem.
, vol.282
, pp. 25053-25066
-
-
Xu, S.B.1
Witmer, P.D.2
Lumayag, S.3
Kovacs, B.4
Valle, D.5
-
54
-
-
33644687880
-
Rhythmic expression of adenylyl cyclase VI contributes to the differential regulation of serotonin N-acetyltransferase by bradykinin in rat pineal glands
-
S. Han, T.D. Kim, D.C. Ha, and K.T. Kim Rhythmic expression of adenylyl cyclase VI contributes to the differential regulation of serotonin N-acetyltransferase by bradykinin in rat pineal glands J. Biol. Chem. 280 2005 38228 38234
-
(2005)
J. Biol. Chem.
, vol.280
, pp. 38228-38234
-
-
Han, S.1
Kim, T.D.2
Ha, D.C.3
Kim, K.T.4
-
55
-
-
40549096693
-
Circadian regulation of a limited set of conserved microRNAs in Drosophila
-
M. Yang, J.E. Lee, R.W. Padgett, and I. Edery Circadian regulation of a limited set of conserved microRNAs in Drosophila BMC Genomics 9 2008 83
-
(2008)
BMC Genomics
, vol.9
, pp. 83
-
-
Yang, M.1
Lee, J.E.2
Padgett, R.W.3
Edery, I.4
-
56
-
-
1342285689
-
Posttranslational regulation of Drosophila PERIOD protein by protein phosphatase 2A
-
S. Sathyanarayanan, X. Zheng, R. Xiao, and A. Sehgal Posttranslational regulation of Drosophila PERIOD protein by protein phosphatase 2A Cell 116 2004 603 615
-
(2004)
Cell
, vol.116
, pp. 603-615
-
-
Sathyanarayanan, S.1
Zheng, X.2
Xiao, R.3
Sehgal, A.4
-
57
-
-
70349469700
-
Comprehensive analysis of microRNA-mRNA co-expression in circadian rhythm
-
Y.J. Na, J.H. Sung, S.C. Lee, Y.J. Lee, Y.J. Choi, and W.Y. Park Comprehensive analysis of microRNA-mRNA co-expression in circadian rhythm Exp. Mol. Med. 41 2009 638 647
-
(2009)
Exp. Mol. Med.
, vol.41
, pp. 638-647
-
-
Na, Y.J.1
Sung, J.H.2
Lee, S.C.3
Lee, Y.J.4
Choi, Y.J.5
Park, W.Y.6
-
58
-
-
34249713720
-
MicroRNA modulation of circadian-clock period and entrainment
-
H.Y.M. Cheng, J.W. Papp, O. Varlamova, H. Dziema, B. Russell, and J.P. Curfman microRNA modulation of circadian-clock period and entrainment Neuron 54 2007 813 829
-
(2007)
Neuron
, vol.54
, pp. 813-829
-
-
Cheng, H.Y.M.1
Papp, J.W.2
Varlamova, O.3
Dziema, H.4
Russell, B.5
Curfman, J.P.6
-
59
-
-
62549091540
-
MicroRNA-219 modulates NMDA receptor-mediated neurobehavioral dysfunction
-
J. Kocerha, M.A. Faghihi, M.A. Lopez-Toledano, J. Huang, A.J. Ramsey, and M.G. Caron MicroRNA-219 modulates NMDA receptor-mediated neurobehavioral dysfunction Proc. Natl Acad. Sci. USA 106 2009 3507 3512
-
(2009)
Proc. Natl Acad. Sci. USA
, vol.106
, pp. 3507-3512
-
-
Kocerha, J.1
Faghihi, M.A.2
Lopez-Toledano, M.A.3
Huang, J.4
Ramsey, A.J.5
Caron, M.G.6
-
60
-
-
79960663616
-
Expression and rhythmic modulation of circulating microRNAs targeting the clock gene Bmal1 in mice
-
V.R. Shende, M.M. Goldrick, S. Ramani, and D.J. Earnest Expression and rhythmic modulation of circulating microRNAs targeting the clock gene Bmal1 in mice PLoS One 6 2011 e22586
-
(2011)
PLoS One
, vol.6
, pp. 22586
-
-
Shende, V.R.1
Goldrick, M.M.2
Ramani, S.3
Earnest, D.J.4
-
61
-
-
70349245117
-
The miRNA-192/194 cluster regulates the Period gene family and the circadian clock
-
R. Nagel, L. Clijsters, and R. Agami The miRNA-192/194 cluster regulates the Period gene family and the circadian clock FEBS J. 276 2009 5447 5455
-
(2009)
FEBS J.
, vol.276
, pp. 5447-5455
-
-
Nagel, R.1
Clijsters, L.2
Agami, R.3
-
62
-
-
70349093118
-
A role for microRNAs in the Drosophila circadian clock
-
S. Kadener, J.S. Menet, K. Sugino, M.D. Horwich, U. Weissbein, and P. Nawathean A role for microRNAs in the Drosophila circadian clock Genes Dev. 23 2009 2179 2191
-
(2009)
Genes Dev.
, vol.23
, pp. 2179-2191
-
-
Kadener, S.1
Menet, J.S.2
Sugino, K.3
Horwich, M.D.4
Weissbein, U.5
Nawathean, P.6
-
63
-
-
84863272424
-
Bantam is required for optic lobe development and glial cell proliferation
-
Y. Li, and R.W. Padgett Bantam is required for optic lobe development and glial cell proliferation PLoS One 7 2012 e32910
-
(2012)
PLoS One
, vol.7
, pp. 32910
-
-
Li, Y.1
Padgett, R.W.2
-
64
-
-
78751686549
-
MiRNA-132 orchestrates chromatin remodeling and translational control of the circadian clock
-
M. Alvarez-Saavedra, G. Antoun, A. Yanagiya, R. Oliva-Hernandez, D. Cornejo-Palma, and C. Perez-Iratxeta miRNA-132 orchestrates chromatin remodeling and translational control of the circadian clock Hum. Mol. Genet. 20 2011 731 751
-
(2011)
Hum. Mol. Genet.
, vol.20
, pp. 731-751
-
-
Alvarez-Saavedra, M.1
Antoun, G.2
Yanagiya, A.3
Oliva-Hernandez, R.4
Cornejo-Palma, D.5
Perez-Iratxeta, C.6
-
65
-
-
0037426839
-
Rhythmic histone acetylation underlies transcription in the mammalian circadian clock
-
J.P. Etchegaray, C. Lee, P.A. Wade, and S.M. Reppert Rhythmic histone acetylation underlies transcription in the mammalian circadian clock Nature 421 2003 177 182
-
(2003)
Nature
, vol.421
, pp. 177-182
-
-
Etchegaray, J.P.1
Lee, C.2
Wade, P.A.3
Reppert, S.M.4
-
66
-
-
33644617485
-
Rhythmic CLOCK-BMAL1 binding to multiple E-box motifs drives circadian Dbp transcription and chromatin transitions
-
J.A. Ripperger, and U. Schibler Rhythmic CLOCK-BMAL1 binding to multiple E-box motifs drives circadian Dbp transcription and chromatin transitions Nat. Genet. 38 2006 369 374
-
(2006)
Nat. Genet.
, vol.38
, pp. 369-374
-
-
Ripperger, J.A.1
Schibler, U.2
-
67
-
-
66149167562
-
Integration of microRNA miR-122 in hepatic circadian gene expression
-
D. Gatfield, G. Le Martelot, C.E. Vejnar, D. Gerlach, O. Schaad, and F. Fleury-Olela Integration of microRNA miR-122 in hepatic circadian gene expression Genes Dev. 23 2009 1313 1326
-
(2009)
Genes Dev.
, vol.23
, pp. 1313-1326
-
-
Gatfield, D.1
Le Martelot, G.2
Vejnar, C.E.3
Gerlach, D.4
Schaad, O.5
Fleury-Olela, F.6
-
68
-
-
33645075443
-
MiR-122 regulation of lipid metabolism revealed by in vivo antisense targeting
-
C. Esau, S. Davis, S.F. Murray, X.X. Yu, S.K. Pandey, and M. Pear miR-122 regulation of lipid metabolism revealed by in vivo antisense targeting Cell Metab. 3 2006 87 98
-
(2006)
Cell Metab.
, vol.3
, pp. 87-98
-
-
Esau, C.1
Davis, S.2
Murray, S.F.3
Yu, X.X.4
Pandey, S.K.5
Pear, M.6
-
69
-
-
77956197958
-
MicroRNA-122 modulates the rhythmic expression profile of the circadian deadenylase Nocturnin in mouse liver
-
S. Kojima, D. Gatfield, C.C. Esau, and C.B. Green MicroRNA-122 modulates the rhythmic expression profile of the circadian deadenylase Nocturnin in mouse liver PLoS One 5 2010 e11264
-
(2010)
PLoS One
, vol.5
, pp. 11264
-
-
Kojima, S.1
Gatfield, D.2
Esau, C.C.3
Green, C.B.4
-
70
-
-
3042719574
-
Rhythmic expression of Nocturnin mRNA in multiple tissues of the mouse
-
Y. Wang, D.L. Osterbur, P.L. Megaw, G. Tosini, C. Fukuhara, C.B. Green, and J.C. Besharse Rhythmic expression of Nocturnin mRNA in multiple tissues of the mouse BMC Dev. Biol. 1 2001 9
-
(2001)
BMC Dev. Biol.
, vol.1
, pp. 9
-
-
Wang, Y.1
Osterbur, D.L.2
Megaw, P.L.3
Tosini, G.4
Fukuhara, C.5
Green, C.B.6
Besharse, J.C.7
-
71
-
-
70349177026
-
Mammalian miRNA RISC recruits CAF1 and PABP to affect PABP-dependent deadenylation
-
M.R. Fabian, G. Mathonnet, T. Sundermeier, H. Mathys, J.T. Zipprich, and Y.V. Svitkin Mammalian miRNA RISC recruits CAF1 and PABP to affect PABP-dependent deadenylation Mol. Cell 35 2009 868 880
-
(2009)
Mol. Cell
, vol.35
, pp. 868-880
-
-
Fabian, M.R.1
Mathonnet, G.2
Sundermeier, T.3
Mathys, H.4
Zipprich, J.T.5
Svitkin, Y.V.6
-
72
-
-
34848853942
-
The expression of L-type voltage-gated calcium channels in retinal photoreceptors is under circadian control
-
M.L. Ko, Y.L. Liu, S.E. Dryer, and G.Y.P. Ko The expression of L-type voltage-gated calcium channels in retinal photoreceptors is under circadian control J. Neurochem. 103 2007 784 792
-
(2007)
J. Neurochem.
, vol.103
, pp. 784-792
-
-
Ko, M.L.1
Liu, Y.L.2
Dryer, S.E.3
Ko, G.Y.P.4
-
73
-
-
61349185130
-
Phosphatidylinositol 3 kinase-Akt signaling serves as a circadian output in the retina
-
M.L. Ko, K. Jian, L. Shi, and G.Y. Ko Phosphatidylinositol 3 kinase-Akt signaling serves as a circadian output in the retina J. Neurochem. 108 2009 1607 1620
-
(2009)
J. Neurochem.
, vol.108
, pp. 1607-1620
-
-
Ko, M.L.1
Jian, K.2
Shi, L.3
Ko, G.Y.4
-
74
-
-
70350038002
-
Rhythmic expression of microRNA-26a regulates the L-type voltage-gated calcium channel α1C subunit in chicken cone photoreceptors
-
L. Shi, M.L. Ko, and G.Y. Ko Rhythmic expression of microRNA-26a regulates the L-type voltage-gated calcium channel α1C subunit in chicken cone photoreceptors J. Biol. Chem. 284 2009 25791 25803
-
(2009)
J. Biol. Chem.
, vol.284
, pp. 25791-25803
-
-
Shi, L.1
Ko, M.L.2
Ko, G.Y.3
-
75
-
-
84857367540
-
Regulation of circadian behavioral output via a MicroRNA-JAK/STAT circuit
-
W. Luo, and A. Sehgal Regulation of circadian behavioral output via a MicroRNA-JAK/STAT circuit Cell 148 2012 765 779
-
(2012)
Cell
, vol.148
, pp. 765-779
-
-
Luo, W.1
Sehgal, A.2
-
76
-
-
0037381239
-
Living by the calendar: How plants know when to flower
-
M.J. Yanovsky, and S.A. Kay Living by the calendar: how plants know when to flower Nat. Rev.; Mol. Cell Biol. 4 2003 265 275
-
(2003)
Nat. Rev.; Mol. Cell Biol.
, vol.4
, pp. 265-275
-
-
Yanovsky, M.J.1
Kay, S.A.2
-
77
-
-
16244398080
-
Specific effects of microRNAs on the plant transcriptome
-
R. Schwab, J.F. Palatnik, M. Riester, C. Schommer, M. Schmid, and D. Weigel Specific effects of microRNAs on the plant transcriptome Dev. Cell 8 2005 517 527
-
(2005)
Dev. Cell
, vol.8
, pp. 517-527
-
-
Schwab, R.1
Palatnik, J.F.2
Riester, M.3
Schommer, C.4
Schmid, M.5
Weigel, D.6
-
78
-
-
4243111895
-
Modulation of floral development by a gibberellin-regulated microRNA
-
P. Achard, A. Herr, D.C. Baulcombe, and N.P. Harberd Modulation of floral development by a gibberellin-regulated microRNA Development 131 2004 3357 3365
-
(2004)
Development
, vol.131
, pp. 3357-3365
-
-
Achard, P.1
Herr, A.2
Baulcombe, D.C.3
Harberd, N.P.4
-
79
-
-
0242361521
-
Regulation of flowering time and floral organ identity by a MicroRNA and its APETALA2-like target genes
-
M.J. Aukerman, and H. Sakai Regulation of flowering time and floral organ identity by a MicroRNA and its APETALA2-like target genes Plant Cell 15 2003 2730 2741
-
(2003)
Plant Cell
, vol.15
, pp. 2730-2741
-
-
Aukerman, M.J.1
Sakai, H.2
-
80
-
-
35748944555
-
The GIGANTEA-regulated microRNA172 mediates photoperiodic flowering independent of CONSTANS in Arabidopsis
-
J.H. Jung, Y.H. Seo, P.J. Seo, J.L. Reyes, J. Yun, N.H. Chua, and C.M. Park The GIGANTEA-regulated microRNA172 mediates photoperiodic flowering independent of CONSTANS in Arabidopsis Plant Cell 19 2007 2736 2748
-
(2007)
Plant Cell
, vol.19
, pp. 2736-2748
-
-
Jung, J.H.1
Seo, Y.H.2
Seo, P.J.3
Reyes, J.L.4
Yun, J.5
Chua, N.H.6
Park, C.M.7
-
81
-
-
77957734498
-
Genetic variants and abnormal processing of pre-miR-182, a circadian clock modulator, in major depression patients with late insomnia
-
E. Saus, V. Soria, G. Escaramis, F. Vivarelli, J.M. Crespo, and B. Kagerbauer Genetic variants and abnormal processing of pre-miR-182, a circadian clock modulator, in major depression patients with late insomnia Hum. Mol. Genet. 19 2010 4017 4025
-
(2010)
Hum. Mol. Genet.
, vol.19
, pp. 4017-4025
-
-
Saus, E.1
Soria, V.2
Escaramis, G.3
Vivarelli, F.4
Crespo, J.M.5
Kagerbauer, B.6
-
82
-
-
0041318969
-
Genetic dissection of psychopathological symptoms: Insomnia in mood disorders and CLOCK gene polymorphism
-
A. Serretti, F. Benedetti, L. Mandelli, C. Lorenzi, A. Pirovano, C. Colombo, and E. Smeraldi Genetic dissection of psychopathological symptoms: insomnia in mood disorders and CLOCK gene polymorphism Am. J. Med. Genet.; Part B 121B 2003 35 38
-
(2003)
Am. J. Med. Genet.; Part B
, vol.121 B
, pp. 35-38
-
-
Serretti, A.1
Benedetti, F.2
Mandelli, L.3
Lorenzi, C.4
Pirovano, A.5
Colombo, C.6
Smeraldi, E.7
-
83
-
-
78751689926
-
Investigation of post-transcriptional gene regulatory networks associated with autism spectrum disorders by microRNA expression profiling of lymphoblastoid cell lines
-
T. Sarachana, R. Zhou, G. Chen, H.K. Manji, and V.W. Hu Investigation of post-transcriptional gene regulatory networks associated with autism spectrum disorders by microRNA expression profiling of lymphoblastoid cell lines Genome Med. 2 2010 23
-
(2010)
Genome Med.
, vol.2
, pp. 23
-
-
Sarachana, T.1
Zhou, R.2
Chen, G.3
Manji, H.K.4
Hu, V.W.5
-
84
-
-
84861395945
-
Circadian rhythm-dependent alterations of gene expression in Drosophila brain lacking fragile X mental retardation protein
-
S. Xu, M. Poidevin, E. Han, J. Bi, and P. Jin Circadian rhythm-dependent alterations of gene expression in Drosophila brain lacking fragile X mental retardation protein PLoS One 7 2012 e37937
-
(2012)
PLoS One
, vol.7
, pp. 37937
-
-
Xu, S.1
Poidevin, M.2
Han, E.3
Bi, J.4
Jin, P.5
-
85
-
-
80053015696
-
MicroRNA 132 alters sleep and varies with time in brain
-
C.J. Davis, J.M. Clinton, P. Taishi, S.G. Bohnet, K.A. Honn, and J.M. Krueger MicroRNA 132 alters sleep and varies with time in brain J. Appl. Physiol. 111 2011 665 672
-
(2011)
J. Appl. Physiol.
, vol.111
, pp. 665-672
-
-
Davis, C.J.1
Clinton, J.M.2
Taishi, P.3
Bohnet, S.G.4
Honn, K.A.5
Krueger, J.M.6
-
86
-
-
0017899176
-
Circadian variation in cell division of the mouse alimentary tract, bone marrow and corneal epithelium
-
L.E. Scheving, E.R. Burns, J.E. Pauly, and T.H. Tsai Circadian variation in cell division of the mouse alimentary tract, bone marrow and corneal epithelium Anat. Rec. 191 1978 479 486
-
(1978)
Anat. Rec.
, vol.191
, pp. 479-486
-
-
Scheving, L.E.1
Burns, E.R.2
Pauly, J.E.3
Tsai, T.H.4
-
87
-
-
78149416322
-
MicroRNA mir-16 is anti-proliferative in enterocytes and exhibits diurnal rhythmicity in intestinal crypts
-
A. Balakrishnan, A.T. Stearns, P.J. Park, J.M. Dreyfuss, S.W. Ashley, D.B. Rhoads, and A. Tavakkolizadeh MicroRNA mir-16 is anti-proliferative in enterocytes and exhibits diurnal rhythmicity in intestinal crypts Exp. Cell Res. 316 2010 3512 3521
-
(2010)
Exp. Cell Res.
, vol.316
, pp. 3512-3521
-
-
Balakrishnan, A.1
Stearns, A.T.2
Park, P.J.3
Dreyfuss, J.M.4
Ashley, S.W.5
Rhoads, D.B.6
Tavakkolizadeh, A.7
-
88
-
-
80052607334
-
MiR-206-mediated dynamic mechanism of the mammalian circadian clock
-
W. Zhou, Y. Li, X. Wang, L. Wu, and Y. Wang MiR-206-mediated dynamic mechanism of the mammalian circadian clock BMC Syst. Biol. 5 2011 141
-
(2011)
BMC Syst. Biol.
, vol.5
, pp. 141
-
-
Zhou, W.1
Li, Y.2
Wang, X.3
Wu, L.4
Wang, Y.5
-
89
-
-
84859645373
-
MicroRNA-mediated regulation in the mammalian circadian rhythm
-
K.H. Liu, and R.Q. Wang MicroRNA-mediated regulation in the mammalian circadian rhythm J. Theor. Biol. 304 2012 103 110
-
(2012)
J. Theor. Biol.
, vol.304
, pp. 103-110
-
-
Liu, K.H.1
Wang, R.Q.2
-
90
-
-
84865188054
-
Circadian changes in long noncoding RNAs in the pineal gland
-
S.L. Coon, P.J. Munson, P.F. Cherukuri, D. Sugden, M.F. Rath, and M. Møller Circadian changes in long noncoding RNAs in the pineal gland Proc. Natl Acad. Sci. USA 109 2012 13319 13324
-
(2012)
Proc. Natl Acad. Sci. USA
, vol.109
, pp. 13319-13324
-
-
Coon, S.L.1
Munson, P.J.2
Cherukuri, P.F.3
Sugden, D.4
Rath, M.F.5
Møller, M.6
-
91
-
-
84861441546
-
Deep sequencing the circadian and diurnal transcriptome of Drosophila brain
-
M.E. Hughes, G.R. Grant, C. Paquin, J. Qian, and M.N. Nitabach Deep sequencing the circadian and diurnal transcriptome of Drosophila brain Genome Res. 22 2012 1266 1281
-
(2012)
Genome Res.
, vol.22
, pp. 1266-1281
-
-
Hughes, M.E.1
Grant, G.R.2
Paquin, C.3
Qian, J.4
Nitabach, M.N.5
-
92
-
-
62349089764
-
Exploring the transcriptional landscape of plant circadian rhythms using genome tiling arrays
-
S.P. Hazen, F. Naef, T. Quisel, J.M. Gendron, H.M. Chen, and J.R. Ecker Exploring the transcriptional landscape of plant circadian rhythms using genome tiling arrays Genome Biol. 10 2009 R17
-
(2009)
Genome Biol.
, vol.10
, pp. 17
-
-
Hazen, S.P.1
Naef, F.2
Quisel, T.3
Gendron, J.M.4
Chen, H.M.5
Ecker, J.R.6
-
93
-
-
80053984236
-
A conserved long noncoding RNA affects sleep behavior in Drosophila
-
A.A. Soshnev, H. Ishimoto, B.F. McAllister, X. Li, M.D. Wehling, T. Kitamoto, and P.K. Geyer A conserved long noncoding RNA affects sleep behavior in Drosophila Genetics 189 2011 455 468
-
(2011)
Genetics
, vol.189
, pp. 455-468
-
-
Soshnev, A.A.1
Ishimoto, H.2
McAllister, B.F.3
Li, X.4
Wehling, M.D.5
Kitamoto, T.6
Geyer, P.K.7
|