-
1
-
-
80052900616
-
Molecular genetic analysis of circadian timekeeping in Drosophila
-
Hardin PE, (2011) Molecular genetic analysis of circadian timekeeping in Drosophila. Adv Genet 74: 141-173.
-
(2011)
Adv Genet
, vol.74
, pp. 141-173
-
-
Hardin, P.E.1
-
2
-
-
69749116301
-
An isoform-specific mutant reveals a role of PDP1epsilon in the circadian oscillator
-
Zheng X, Koh K, Sowcik M, Smith CJ, Chen D, et al. (2009) An isoform-specific mutant reveals a role of PDP1epsilon in the circadian oscillator. J Neurosci 29: 10920-10927.
-
(2009)
J Neurosci
, vol.29
, pp. 10920-10927
-
-
Zheng, X.1
Koh, K.2
Sowcik, M.3
Smith, C.J.4
Chen, D.5
-
3
-
-
0037423224
-
vrille, Pdp1, and dClock form a second feedback loop in the Drosophila circadian clock
-
Cyran SA, Buchsbaum AM, Reddy KL, Lin MC, Glossop NR, et al. (2003) vrille, Pdp1, and dClock form a second feedback loop in the Drosophila circadian clock. Cell 112: 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
-
4
-
-
34347382964
-
Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component
-
Kadener S, Stoleru D, McDonald M, Nawathean P, Rosbash M, (2007) Clockwork Orange is a transcriptional repressor and a new Drosophila circadian pacemaker component. Genes Dev 21: 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
-
5
-
-
34250215964
-
Clockwork orange encodes a transcriptional repressor important for circadian-clock amplitude in Drosophila
-
Lim C, Chung BY, Pitman JL, McGill JJ, Pradhan S, et al. (2007) Clockwork orange encodes a transcriptional repressor important for circadian-clock amplitude in Drosophila. Curr Biol 17: 1082-1089.
-
(2007)
Curr Biol
, vol.17
, pp. 1082-1089
-
-
Lim, C.1
Chung, B.Y.2
Pitman, J.L.3
McGill, J.J.4
Pradhan, S.5
-
6
-
-
34347375754
-
A functional genomics strategy reveals clockwork orange as a transcriptional regulator in the Drosophila circadian clock
-
Matsumoto A, Ukai-Tadenuma M, Yamada RG, Houl J, Uno KD, et al. (2007) A functional genomics strategy reveals clockwork orange as a transcriptional regulator in the Drosophila circadian clock. Genes Dev 21: 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
-
7
-
-
40849106529
-
The clockwork orange Drosophila protein functions as both an activator and a repressor of clock gene expression
-
Richier B, Michard-Vanhee C, Lamouroux A, Papin C, Rouyer F, (2008) The clockwork orange Drosophila protein functions as both an activator and a repressor of clock gene expression. J Biol Rhythms 23: 103-116.
-
(2008)
J Biol Rhythms
, vol.23
, pp. 103-116
-
-
Richier, B.1
Michard-Vanhee, C.2
Lamouroux, A.3
Papin, C.4
Rouyer, F.5
-
8
-
-
0038032878
-
A novel C-terminal domain of Drosophila PERIOD inhibits dCLOCK:CYCLE-mediated transcription
-
Chang DC, Reppert SM, (2003) A novel C-terminal domain of Drosophila PERIOD inhibits dCLOCK:CYCLE-mediated transcription. Curr Biol 13: 758-762.
-
(2003)
Curr Biol
, vol.13
, pp. 758-762
-
-
Chang, D.C.1
Reppert, S.M.2
-
9
-
-
34347356507
-
A small conserved domain of Drosophila PERIOD is important for circadian phosphorylation, nuclear localization and transcriptional repressor activity
-
Nawathean P, Stoleru D, Rosbash M, (2007) A small conserved domain of Drosophila PERIOD is important for circadian phosphorylation, nuclear localization and transcriptional repressor activity. Mol Cell Biol 27: 5002-5013.
-
(2007)
Mol Cell Biol
, vol.27
, pp. 5002-5013
-
-
Nawathean, P.1
Stoleru, D.2
Rosbash, M.3
-
10
-
-
0042821797
-
Novel insights into the regulation of the timeless protein
-
Ashmore LJ, Sathyanarayanan S, Silvestre DW, Emerson MM, Schotland P, et al. (2003) Novel insights into the regulation of the timeless protein. J Neurosci 23: 7810-7819.
-
(2003)
J Neurosci
, vol.23
, pp. 7810-7819
-
-
Ashmore, L.J.1
Sathyanarayanan, S.2
Silvestre, D.W.3
Emerson, M.M.4
Schotland, P.5
-
11
-
-
0032486432
-
Closing the circadian loop: CLOCK-induced transcription of its own inhibitors per and tim
-
Darlington TK, Wager-Smith K, Ceriani MF, Staknis D, Gekakis N, et al. (1998) Closing the circadian loop: CLOCK-induced transcription of its own inhibitors per and tim. Science 280: 1599-1603.
-
(1998)
Science
, vol.280
, pp. 1599-1603
-
-
Darlington, T.K.1
Wager-Smith, K.2
Ceriani, M.F.3
Staknis, D.4
Gekakis, N.5
-
12
-
-
30844466208
-
PER-TIM interactions in living Drosophila cells: an interval timer for the circadian clock
-
Meyer P, Saez L, Young MW, (2006) PER-TIM interactions in living Drosophila cells: an interval timer for the circadian clock. Science 311: 226-229.
-
(2006)
Science
, vol.311
, pp. 226-229
-
-
Meyer, P.1
Saez, L.2
Young, M.W.3
-
13
-
-
0029989521
-
Light-induced degradation of TIMELESS and entrainment of the Drosophila circadian clock
-
Myers MP, Wagner-Smith K, Rothenfluh-Hilfiker A, Young MW, (1996) Light-induced degradation of TIMELESS and entrainment of the Drosophila circadian clock. Science 271: 1736-1740.
-
(1996)
Science
, vol.271
, pp. 1736-1740
-
-
Myers, M.P.1
Wagner-Smith, K.2
Rothenfluh-Hilfiker, A.3
Young, M.W.4
-
14
-
-
0030293638
-
Regulation of nuclear entry of the Drosophila clock proteins period and timeless
-
Saez L, Young MW, (1996) Regulation of nuclear entry of the Drosophila clock proteins period and timeless. Neuron 17: 979-990.
-
(1996)
Neuron
, vol.17
, pp. 979-990
-
-
Saez, L.1
Young, M.W.2
-
15
-
-
0033597921
-
Light-dependent sequestration of TIMELESS by CRYPTOCHROME
-
Ceriani MF, Darlington TK, Staknis D, Mas P, Petti AA, et al. (1999) Light-dependent sequestration of TIMELESS by CRYPTOCHROME. Science 285: 553-556.
-
(1999)
Science
, vol.285
, pp. 553-556
-
-
Ceriani, M.F.1
Darlington, T.K.2
Staknis, D.3
Mas, P.4
Petti, A.A.5
-
16
-
-
0033695992
-
Drosophila CRY is a deep brain circadian photoreceptor
-
Emery P, Stanewsky R, Helfrich-Forster C, Emery-Le M, Hall JC, et al. (2000) Drosophila CRY is a deep brain circadian photoreceptor. Neuron 26: 493-504.
-
(2000)
Neuron
, vol.26
, pp. 493-504
-
-
Emery, P.1
Stanewsky, R.2
Helfrich-Forster, C.3
Emery-Le, M.4
Hall, J.C.5
-
17
-
-
0034800310
-
Photic signaling by cryptochrome in the Drosophila circadian system
-
Lin FJ, Song W, Meyer-Bernstein E, Naidoo N, Sehgal A, (2001) Photic signaling by cryptochrome in the Drosophila circadian system. Mol Cell Biol 21: 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
-
-
0032566970
-
The cryb mutation identifies cryptochrome as a circadian photoreceptor in Drosophila
-
Stanewsky R, Kaneko M, Emery P, Beretta B, Wager-Smith K, et al. (1998) The cryb mutation identifies cryptochrome as a circadian photoreceptor in Drosophila. Cell 95: 681-692.
-
(1998)
Cell
, vol.95
, pp. 681-692
-
-
Stanewsky, R.1
Kaneko, M.2
Emery, P.3
Beretta, B.4
Wager-Smith, K.5
-
19
-
-
33846102215
-
Regulating a circadian clock's period, phase and amplitude by phosphorylation: insights from Drosophila
-
Bae K, Edery I, (2006) Regulating a circadian clock's period, phase and amplitude by phosphorylation: insights from Drosophila. J Biochem (Tokyo) 140: 609-617.
-
(2006)
J Biochem (Tokyo)
, vol.140
, pp. 609-617
-
-
Bae, K.1
Edery, I.2
-
20
-
-
79955540602
-
NEMO/NLK phosphorylates PERIOD to initiate a time-delay phosphorylation circuit that sets circadian clock speed
-
Chiu JC, Ko HW, Edery I, (2011) NEMO/NLK phosphorylates PERIOD to initiate a time-delay phosphorylation circuit that sets circadian clock speed. Cell 145: 357-370.
-
(2011)
Cell
, vol.145
, pp. 357-370
-
-
Chiu, J.C.1
Ko, H.W.2
Edery, I.3
-
21
-
-
46249098507
-
The phospho-occupancy of an atypical SLIMB-binding site on PERIOD that is phosphorylated by DOUBLETIME controls the pace of the clock
-
Chiu JC, Vanselow JT, Kramer A, Edery I, (2008) The phospho-occupancy of an atypical SLIMB-binding site on PERIOD that is phosphorylated by DOUBLETIME controls the pace of the clock. Genes Dev 22: 1758-1772.
-
(2008)
Genes Dev
, vol.22
, pp. 1758-1772
-
-
Chiu, J.C.1
Vanselow, J.T.2
Kramer, A.3
Edery, I.4
-
22
-
-
84865791254
-
CULLIN-3 controls TIMELESS oscillations in the Drosophila circadian clock
-
Grima B, Dognon A, Lamouroux A, Chélot E, Rouyer F, (2012) CULLIN-3 controls TIMELESS oscillations in the Drosophila circadian clock. PLOS Biol 10: e1001367.
-
(2012)
PLOS Biol
, vol.10
-
-
Grima, B.1
Dognon, A.2
Lamouroux, A.3
Chélot, E.4
Rouyer, F.5
-
23
-
-
79958005498
-
The E3 ubiquitin ligase CTRIP controls CLOCK levels and PERIOD oscillations in Drosophila
-
Lamaze A, Lamouroux A, Vias C, Hung HC, Weber F, et al. (2011) The E3 ubiquitin ligase CTRIP controls CLOCK levels and PERIOD oscillations in Drosophila. EMBO Rep 12: 549-557.
-
(2011)
EMBO Rep
, vol.12
, pp. 549-557
-
-
Lamaze, A.1
Lamouroux, A.2
Vias, C.3
Hung, H.C.4
Weber, F.5
-
24
-
-
0033543596
-
A role for the proteasome in the light response of the timeless clock protein
-
Naidoo N, Song W, Hunter-Ensor M, Sehgal A, (1999) A role for the proteasome in the light response of the timeless clock protein. Science 285: 1737-1741.
-
(1999)
Science
, vol.285
, pp. 1737-1741
-
-
Naidoo, N.1
Song, W.2
Hunter-Ensor, M.3
Sehgal, A.4
-
25
-
-
33847098901
-
The Drosophila circadian network is a seasonal timer
-
Stoleru D, Nawathean P, de la Paz Fernandez M, Menet JS, Ceriani MF, Rosbash M, (2007) The Drosophila circadian network is a seasonal timer. Cell 129: 207-219.
-
(2007)
Cell
, vol.129
, pp. 207-219
-
-
Stoleru, D.1
Nawathean, P.2
de la Paz Fernandez, M.3
Menet, J.S.4
Ceriani, M.F.5
Rosbash, M.6
-
26
-
-
1342285689
-
Posttranslational regulation of Drosophila PERIOD protein by protein phosphatase 2A
-
Sathyanarayanan S, Zheng X, Xiao R, Sehgal A, (2004) Posttranslational regulation of Drosophila PERIOD protein by protein phosphatase 2A. Cell 116: 603-615.
-
(2004)
Cell
, vol.116
, pp. 603-615
-
-
Sathyanarayanan, S.1
Zheng, X.2
Xiao, R.3
Sehgal, A.4
-
27
-
-
77951912759
-
Circadian organization of behavior and physiology in Drosophila
-
Allada R, Chung BY, (2010) Circadian organization of behavior and physiology in Drosophila. Annu Rev Physiol 72: 605-624.
-
(2010)
Annu Rev Physiol
, vol.72
, pp. 605-624
-
-
Allada, R.1
Chung, B.Y.2
-
28
-
-
0034724292
-
Differential regulation of circadian pacemaker output by separate clock genes in Drosophila
-
Park JH, Helfrich-Forster C, Lee G, Liu L, Rosbash M, et al. (2000) Differential regulation of circadian pacemaker output by separate clock genes in Drosophila. Proc Natl Acad Sci U S A 97: 3608-3613.
-
(2000)
Proc Natl Acad Sci U S A
, vol.97
, pp. 3608-3613
-
-
Park, J.H.1
Helfrich-Forster, C.2
Lee, G.3
Liu, L.4
Rosbash, M.5
-
29
-
-
84865743518
-
Autoreceptor control of peptide/neurotransmitter corelease from PDF neurons determines allocation of circadian activity in drosophila
-
Choi C, Cao G, Tanenhaus AK, McCarthy EV, Jung M, et al. (2012) Autoreceptor control of peptide/neurotransmitter corelease from PDF neurons determines allocation of circadian activity in drosophila. Cell Rep 2: 332-344.
-
(2012)
Cell Rep
, vol.2
, pp. 332-344
-
-
Choi, C.1
Cao, G.2
Tanenhaus, A.K.3
McCarthy, E.V.4
Jung, M.5
-
30
-
-
74949097778
-
PDF-modulated visual inputs and cryptochrome define diurnal behavior in Drosophila
-
Cusumano P, Klarsfeld A, Chelot E, Picot M, Richier B, et al. (2009) PDF-modulated visual inputs and cryptochrome define diurnal behavior in Drosophila. Nat Neurosci 12: 1431-1437.
-
(2009)
Nat Neurosci
, vol.12
, pp. 1431-1437
-
-
Cusumano, P.1
Klarsfeld, A.2
Chelot, E.3
Picot, M.4
Richier, B.5
-
31
-
-
84863664308
-
The circadian neuropeptide PDF signals preferentially through a specific adenylate cyclase isoform AC3 in M pacemakers of Drosophila
-
Duvall LB, Taghert PH, (2012) The circadian neuropeptide PDF signals preferentially through a specific adenylate cyclase isoform AC3 in M pacemakers of Drosophila. PLoS Biol 10: e1001337.
-
(2012)
PLoS Biol
, vol.10
-
-
Duvall, L.B.1
Taghert, P.H.2
-
32
-
-
36249006061
-
Intracellular Ca2+ regulates free-running circadian clock oscillation in vivo
-
Harrisingh MC, Wu Y, Lnenicka GA, Nitabach MN, (2007) Intracellular Ca2+ regulates free-running circadian clock oscillation in vivo. J Neurosci 27: 12489-12499.
-
(2007)
J Neurosci
, vol.27
, pp. 12489-12499
-
-
Harrisingh, M.C.1
Wu, Y.2
Lnenicka, G.A.3
Nitabach, M.N.4
-
33
-
-
26944502709
-
Drosophila GPCR Han is a receptor for the circadian clock neuropeptide PDF
-
Hyun S, Lee Y, Hong ST, Bang S, Paik D, et al. (2005) Drosophila GPCR Han is a receptor for the circadian clock neuropeptide PDF. Neuron 48: 267-278.
-
(2005)
Neuron
, vol.48
, pp. 267-278
-
-
Hyun, S.1
Lee, Y.2
Hong, S.T.3
Bang, S.4
Paik, D.5
-
34
-
-
26944456961
-
A G protein-coupled receptor, groom-of-PDF, is required for PDF neuron action in circadian behavior
-
Lear BC, Merrill CE, Lin JM, Schroeder A, Zhang L, et al. (2005) A G protein-coupled receptor, groom-of-PDF, is required for PDF neuron action in circadian behavior. Neuron 48: 221-227.
-
(2005)
Neuron
, vol.48
, pp. 221-227
-
-
Lear, B.C.1
Merrill, C.E.2
Lin, J.M.3
Schroeder, A.4
Zhang, L.5
-
35
-
-
68049147714
-
The neuropeptide PDF acts directly on evening pacemaker neurons to regulate multiple features of circadian behavior
-
Lear BC, Zhang L, Allada R, (2009) The neuropeptide PDF acts directly on evening pacemaker neurons to regulate multiple features of circadian behavior. PLoS Biol 7: e1000154.
-
(2009)
PLoS Biol
, vol.7
-
-
Lear, B.C.1
Zhang, L.2
Allada, R.3
-
36
-
-
26944486625
-
PDF receptor signaling in Drosophila contributes to both circadian and geotactic behaviors
-
Mertens I, Vandingenen A, Johnson EC, Shafer OT, Li W, et al. (2005) PDF receptor signaling in Drosophila contributes to both circadian and geotactic behaviors. Neuron 48: 213-219.
-
(2005)
Neuron
, vol.48
, pp. 213-219
-
-
Mertens, I.1
Vandingenen, A.2
Johnson, E.C.3
Shafer, O.T.4
Li, W.5
-
37
-
-
0033599009
-
A pdf neuropeptide gene mutation and ablation of PDF neurons each cause severe abnormalities of behavioral circadian rhythms in Drosophila
-
Renn SC, Park JH, Rosbash M, Hall JC, Taghert PH, (1999) A pdf neuropeptide gene mutation and ablation of PDF neurons each cause severe abnormalities of behavioral circadian rhythms in Drosophila. Cell 99: 791-802.
-
(1999)
Cell
, vol.99
, pp. 791-802
-
-
Renn, S.C.1
Park, J.H.2
Rosbash, M.3
Hall, J.C.4
Taghert, P.H.5
-
38
-
-
77949512736
-
RNA-interference knockdown of Drosophila pigment dispersing factor in neuronal subsets: the anatomical basis of a neuropeptide's circadian functions
-
Shafer OT, Taghert PH, (2009) RNA-interference knockdown of Drosophila pigment dispersing factor in neuronal subsets: the anatomical basis of a neuropeptide's circadian functions. PLoS ONE 4: e8298.
-
(2009)
PLoS ONE
, vol.4
-
-
Shafer, O.T.1
Taghert, P.H.2
-
39
-
-
7244242193
-
Coupled oscillators control morning and evening locomotor behaviour of Drosophila
-
Stoleru D, Peng Y, Agosto J, Rosbash M, (2004) Coupled oscillators control morning and evening locomotor behaviour of Drosophila. Nature 431: 862-868.
-
(2004)
Nature
, vol.431
, pp. 862-868
-
-
Stoleru, D.1
Peng, Y.2
Agosto, J.3
Rosbash, M.4
-
40
-
-
40849134063
-
Electrical silencing of PDF neurons advances the phase of non-PDF clock neurons in Drosophila
-
Wu Y, Cao G, Nitabach MN, (2008) Electrical silencing of PDF neurons advances the phase of non-PDF clock neurons in Drosophila. J Biol Rhythms 23: 117-128.
-
(2008)
J Biol Rhythms
, vol.23
, pp. 117-128
-
-
Wu, Y.1
Cao, G.2
Nitabach, M.N.3
-
41
-
-
77950495934
-
DN1(p) circadian neurons coordinate acute light and PDF inputs to produce robust daily behavior in Drosophila
-
Zhang L, Chung BY, Lear BC, Kilman VL, Liu Y, et al. (2010) DN1(p) circadian neurons coordinate acute light and PDF inputs to produce robust daily behavior in Drosophila. Curr Biol 20: 591-599.
-
(2010)
Curr Biol
, vol.20
, pp. 591-599
-
-
Zhang, L.1
Chung, B.Y.2
Lear, B.C.3
Kilman, V.L.4
Liu, Y.5
-
42
-
-
4243112662
-
Drosophila free-running rhythms require intercellular communication
-
Peng Y, Stoleru D, Levine JD, Hall JC, Rosbash M, (2003) Drosophila free-running rhythms require intercellular communication. PLoS Biol 1: e13.
-
(2003)
PLoS Biol
, vol.1
-
-
Peng, Y.1
Stoleru, D.2
Levine, J.D.3
Hall, J.C.4
Rosbash, M.5
-
43
-
-
4544363312
-
The neuropeptide pigment-dispersing factor coordinates pacemaker interactions in the Drosophila circadian system
-
Lin Y, Stormo GD, Taghert PH, (2004) The neuropeptide pigment-dispersing factor coordinates pacemaker interactions in the Drosophila circadian system. J Neurosci 24: 7951-7957.
-
(2004)
J Neurosci
, vol.24
, pp. 7951-7957
-
-
Lin, Y.1
Stormo, G.D.2
Taghert, P.H.3
-
44
-
-
61449178808
-
The neuropeptide pigment-dispersing factor adjusts period and phase of Drosophila's clock
-
Yoshii T, Wulbeck C, Sehadova H, Veleri S, Bichler D, et al. (2009) The neuropeptide pigment-dispersing factor adjusts period and phase of Drosophila's clock. J Neurosci 29: 2597-2610.
-
(2009)
J Neurosci
, vol.29
, pp. 2597-2610
-
-
Yoshii, T.1
Wulbeck, C.2
Sehadova, H.3
Veleri, S.4
Bichler, D.5
-
45
-
-
19444384153
-
Pigment-dispersing factor and GABA synchronize cells of the isolated circadian clock of the cockroach Leucophaea maderae
-
Schneider NL, Stengl M, (2005) Pigment-dispersing factor and GABA synchronize cells of the isolated circadian clock of the cockroach Leucophaea maderae. J Neurosci 25: 5138-5147.
-
(2005)
J Neurosci
, vol.25
, pp. 5138-5147
-
-
Schneider, N.L.1
Stengl, M.2
-
46
-
-
77952168831
-
PDF receptor expression reveals direct interactions between circadian oscillators in Drosophila
-
Im SH, Taghert PH, (2010) PDF receptor expression reveals direct interactions between circadian oscillators in Drosophila. J Comp Neurol 518: 1925-1945.
-
(2010)
J Comp Neurol
, vol.518
, pp. 1925-1945
-
-
Im, S.H.1
Taghert, P.H.2
-
47
-
-
42149175153
-
Widespread receptivity to neuropeptide PDF throughout the neuronal circadian clock network of Drosophila revealed by real-time cyclic AMP imaging
-
Shafer OT, Kim DJ, Dunbar-Yaffe R, Nikolaev VO, Lohse MJ, et al. (2008) Widespread receptivity to neuropeptide PDF throughout the neuronal circadian clock network of Drosophila revealed by real-time cyclic AMP imaging. Neuron 58: 223-237.
-
(2008)
Neuron
, vol.58
, pp. 223-237
-
-
Shafer, O.T.1
Kim, D.J.2
Dunbar-Yaffe, R.3
Nikolaev, V.O.4
Lohse, M.J.5
-
48
-
-
0024375582
-
cAMP-dependent protein kinase. Model for an enzyme family
-
Taylor SS, (1989) cAMP-dependent protein kinase. Model for an enzyme family. J Biol Chem 264: 8443-8446.
-
(1989)
J Biol Chem
, vol.264
, pp. 8443-8446
-
-
Taylor, S.S.1
-
49
-
-
0030768056
-
Drosophila melanogaster deficient in protein kinase A manifests behavior-specific arrhythmia but normal clock function
-
Majercak J, Kalderon D, Edery I, (1997) Drosophila melanogaster deficient in protein kinase A manifests behavior-specific arrhythmia but normal clock function. Mol Cell Biol 17: 5915-5922.
-
(1997)
Mol Cell Biol
, vol.17
, pp. 5915-5922
-
-
Majercak, J.1
Kalderon, D.2
Edery, I.3
-
50
-
-
0034617078
-
Type II cAMP-dependent protein kinase-deficient Drosophila are viable but show developmental, circadian, and drug response phenotypes
-
Park SK, Sedore SA, Cronmiller C, Hirsh J, (2000) Type II cAMP-dependent protein kinase-deficient Drosophila are viable but show developmental, circadian, and drug response phenotypes. J Biol Chem 275: 20588-20596.
-
(2000)
J Biol Chem
, vol.275
, pp. 20588-20596
-
-
Park, S.K.1
Sedore, S.A.2
Cronmiller, C.3
Hirsh, J.4
-
51
-
-
0027160708
-
Targeted gene expression as a means of altering cell fates and generating dominant phenotypes
-
Brand AH, Perrimon N, (1993) Targeted gene expression as a means of altering cell fates and generating dominant phenotypes. Development 118: 401-415.
-
(1993)
Development
, vol.118
, pp. 401-415
-
-
Brand, A.H.1
Perrimon, N.2
-
52
-
-
0028897883
-
Function of protein kinase A in hedgehog signal transduction and Drosophila imaginal disc development
-
Li W, Ohlmeyer JT, Lane ME, Kalderon D, (1995) Function of protein kinase A in hedgehog signal transduction and Drosophila imaginal disc development. Cell 80: 553-562.
-
(1995)
Cell
, vol.80
, pp. 553-562
-
-
Li, W.1
Ohlmeyer, J.T.2
Lane, M.E.3
Kalderon, D.4
-
53
-
-
0026679892
-
Raf functions downstream of Ras1 in the Sevenless signal transduction pathway
-
Dickson B, Sprenger F, Morrison D, Hafen E, (1992) Raf functions downstream of Ras1 in the Sevenless signal transduction pathway. Nature 360: 600-603.
-
(1992)
Nature
, vol.360
, pp. 600-603
-
-
Dickson, B.1
Sprenger, F.2
Morrison, D.3
Hafen, E.4
-
54
-
-
29144447019
-
The ion channel narrow abdomen is critical for neural output of the Drosophila circadian pacemaker
-
Lear BC, Lin JM, Keath JR, McGill JJ, Raman IM, et al. (2005) The ion channel narrow abdomen is critical for neural output of the Drosophila circadian pacemaker. Neuron 48: 965-976.
-
(2005)
Neuron
, vol.48
, pp. 965-976
-
-
Lear, B.C.1
Lin, J.M.2
Keath, J.R.3
McGill, J.J.4
Raman, I.M.5
-
55
-
-
7244252844
-
Morning and evening peaks of activity rely on different clock neurons of the Drosophila brain
-
Grima B, Chelot E, Xia R, Rouyer F, (2004) Morning and evening peaks of activity rely on different clock neurons of the Drosophila brain. Nature 431: 869-873.
-
(2004)
Nature
, vol.431
, pp. 869-873
-
-
Grima, B.1
Chelot, E.2
Xia, R.3
Rouyer, F.4
-
56
-
-
33644589701
-
PDF cycling in the dorsal protocerebrum of the Drosophila brain is not necessary for circadian clock function
-
Kula E, Levitan ES, Pyza E, Rosbash M, (2006) PDF cycling in the dorsal protocerebrum of the Drosophila brain is not necessary for circadian clock function. J Biol Rhythms 21: 104-117.
-
(2006)
J Biol Rhythms
, vol.21
, pp. 104-117
-
-
Kula, E.1
Levitan, E.S.2
Pyza, E.3
Rosbash, M.4
-
57
-
-
38749109672
-
GFP Reconstitution Across Synaptic Partners (GRASP) defines cell contacts and synapses in living nervous systems
-
Feinberg EH, Vanhoven MK, Bendesky A, Wang G, Fetter RD, et al. (2008) GFP Reconstitution Across Synaptic Partners (GRASP) defines cell contacts and synapses in living nervous systems. Neuron 57: 353-363.
-
(2008)
Neuron
, vol.57
, pp. 353-363
-
-
Feinberg, E.H.1
Vanhoven, M.K.2
Bendesky, A.3
Wang, G.4
Fetter, R.D.5
-
58
-
-
4444377903
-
Novel single chain cAMP sensors for receptor-induced signal propagation
-
Nikolaev VO, Bunemann M, Hein L, Hannawacker A, Lohse MJ, (2004) Novel single chain cAMP sensors for receptor-induced signal propagation. J Biol Chem 279: 37215-37218.
-
(2004)
J Biol Chem
, vol.279
, pp. 37215-37218
-
-
Nikolaev, V.O.1
Bunemann, M.2
Hein, L.3
Hannawacker, A.4
Lohse, M.J.5
-
59
-
-
84880427381
-
Ultrasensitive fluorescent proteins for imaging neuronal activity
-
Chen TW, Wardill TJ, Sun Y, Pulver SR, Renninger SL, et al. (2013) Ultrasensitive fluorescent proteins for imaging neuronal activity. Nature 499: 295-300.
-
(2013)
Nature
, vol.499
, pp. 295-300
-
-
Chen, T.W.1
Wardill, T.J.2
Sun, Y.3
Pulver, S.R.4
Renninger, S.L.5
-
60
-
-
33645313112
-
CNG and HCN channels: two peas, one pod
-
Craven KB, Zagotta WN, (2006) CNG and HCN channels: two peas, one pod. Annu Rev Physiol 68: 375-401.
-
(2006)
Annu Rev Physiol
, vol.68
, pp. 375-401
-
-
Craven, K.B.1
Zagotta, W.N.2
-
61
-
-
67649214496
-
Perturbing dynamin reveals potent effects on the Drosophila circadian clock
-
Kilman VL, Zhang L, Meissner RA, Burg E, Allada R, (2009) Perturbing dynamin reveals potent effects on the Drosophila circadian clock. PLoS ONE 4: e5235.
-
(2009)
PLoS ONE
, vol.4
-
-
Kilman, V.L.1
Zhang, L.2
Meissner, R.A.3
Burg, E.4
Allada, R.5
-
62
-
-
84867891647
-
Electrical activity can impose time of day on the circadian transcriptome of pacemaker neurons
-
Mizrak D, Ruben M, Myers GN, Rhrissorrakrai K, Gunsalus KC, et al. (2012) Electrical activity can impose time of day on the circadian transcriptome of pacemaker neurons. Curr Biol 22: 1871-1880.
-
(2012)
Curr Biol
, vol.22
, pp. 1871-1880
-
-
Mizrak, D.1
Ruben, M.2
Myers, G.N.3
Rhrissorrakrai, K.4
Gunsalus, K.C.5
-
63
-
-
0027996648
-
Altered circadian pacemaker functions and cyclic AMP rhythms in the Drosophila learning mutant dunce
-
Levine JD, Casey CI, Kalderon DD, Jackson FR, (1994) Altered circadian pacemaker functions and cyclic AMP rhythms in the Drosophila learning mutant dunce. Neuron 13: 967-974.
-
(1994)
Neuron
, vol.13
, pp. 967-974
-
-
Levine, J.D.1
Casey, C.I.2
Kalderon, D.D.3
Jackson, F.R.4
-
64
-
-
84862828137
-
Old flies have a robust central oscillator but weaker behavioral rhythms that can be improved by genetic and environmental manipulations
-
Luo W, Chen WF, Yue Z, Chen D, Sowcik M, et al. (2012) Old flies have a robust central oscillator but weaker behavioral rhythms that can be improved by genetic and environmental manipulations. Aging Cell 11: 428-438.
-
(2012)
Aging Cell
, vol.11
, pp. 428-438
-
-
Luo, W.1
Chen, W.F.2
Yue, Z.3
Chen, D.4
Sowcik, M.5
-
65
-
-
84876076662
-
GW182 controls Drosophila circadian behavior and PDF-receptor signaling
-
Zhang Y, Emery P, (2013) GW182 controls Drosophila circadian behavior and PDF-receptor signaling. Neuron 78: 152-165.
-
(2013)
Neuron
, vol.78
, pp. 152-165
-
-
Zhang, Y.1
Emery, P.2
-
66
-
-
76749085755
-
Dynamic PER repression mechanisms in the Drosophila circadian clock: from on-DNA to off-DNA
-
Menet JS, Abruzzi KC, Desrochers J, Rodriguez J, Rosbash M, (2010) Dynamic PER repression mechanisms in the Drosophila circadian clock: from on-DNA to off-DNA. Genes Dev 24: 358-367.
-
(2010)
Genes Dev
, vol.24
, pp. 358-367
-
-
Menet, J.S.1
Abruzzi, K.C.2
Desrochers, J.3
Rodriguez, J.4
Rosbash, M.5
-
67
-
-
33745101711
-
Second messenger and Ras/MAPK signalling pathways regulate CLOCK/CYCLE-dependent transcription
-
Weber F, Hung HC, Maurer C, Kay SA, (2006) Second messenger and Ras/MAPK signalling pathways regulate CLOCK/CYCLE-dependent transcription. J Neurochem 98: 248-257.
-
(2006)
J Neurochem
, vol.98
, pp. 248-257
-
-
Weber, F.1
Hung, H.C.2
Maurer, C.3
Kay, S.A.4
-
68
-
-
0029979174
-
A light-entrainment mechanism for the Drosophila circadian clock
-
Zeng H, Qian Z, Myers MP, Rosbash M, (1996) A light-entrainment mechanism for the Drosophila circadian clock. Nature 380: 129-135.
-
(1996)
Nature
, vol.380
, pp. 129-135
-
-
Zeng, H.1
Qian, Z.2
Myers, M.P.3
Rosbash, M.4
-
69
-
-
0032126727
-
Evidence that the TIM light response is relevant to light-induced phase shifts in Drosophila melanogaster
-
Suri V, Qian Z, Hall JC, Rosbash M, (1998) Evidence that the TIM light response is relevant to light-induced phase shifts in Drosophila melanogaster. Neuron 21: 225-234.
-
(1998)
Neuron
, vol.21
, pp. 225-234
-
-
Suri, V.1
Qian, Z.2
Hall, J.C.3
Rosbash, M.4
-
70
-
-
71649101068
-
The CRYPTOCHROME photoreceptor gates PDF neuropeptide signaling to set circadian network hierarchy in Drosophila
-
Zhang L, Lear BC, Seluzicki A, Allada R, (2009) The CRYPTOCHROME photoreceptor gates PDF neuropeptide signaling to set circadian network hierarchy in Drosophila. Curr Biol 19: 2050-2055.
-
(2009)
Curr Biol
, vol.19
, pp. 2050-2055
-
-
Zhang, L.1
Lear, B.C.2
Seluzicki, A.3
Allada, R.4
-
71
-
-
59849096398
-
Motor control in a Drosophila taste circuit
-
Gordon MD, Scott K, (2009) Motor control in a Drosophila taste circuit. Neuron 61: 373-384.
-
(2009)
Neuron
, vol.61
, pp. 373-384
-
-
Gordon, M.D.1
Scott, K.2
-
72
-
-
56349125022
-
From the cover: feature article: light-arousal and circadian photoreception circuits intersect at the large PDF cells of the Drosophila brain
-
Shang Y, Griffith LC, Rosbash M, (2008) From the cover: feature article: light-arousal and circadian photoreception circuits intersect at the large PDF cells of the Drosophila brain. Proc Natl Acad Sci U S A 105: 19587-19594.
-
(2008)
Proc Natl Acad Sci U S A
, vol.105
, pp. 19587-19594
-
-
Shang, Y.1
Griffith, L.C.2
Rosbash, M.3
-
73
-
-
78249240868
-
Processing circadian data collected from the Drosophila Activity Monitoring (DAM) System
-
Pfeiffenberger C, Lear BC, Keegan KP, Allada R, (2010) Processing circadian data collected from the Drosophila Activity Monitoring (DAM) System. Cold Spring Harb Protoc 2010: pdb prot5519.
-
(2010)
Cold Spring Harb Protoc
, vol.2010
, pp. 5519
-
-
Pfeiffenberger, C.1
Lear, B.C.2
Keegan, K.P.3
Allada, R.4
-
74
-
-
73949101875
-
Dissecting differential gene expression within the circadian neuronal circuit of Drosophila
-
Nagoshi E, Sugino K, Kula E, Okazaki E, Tachibana T, et al. (2010) Dissecting differential gene expression within the circadian neuronal circuit of Drosophila. Nat Neurosci 13: 60-68.
-
(2010)
Nat Neurosci
, vol.13
, pp. 60-68
-
-
Nagoshi, E.1
Sugino, K.2
Kula, E.3
Okazaki, E.4
Tachibana, T.5
-
75
-
-
77955829612
-
Surprising gene expression patterns within and between PDF-containing circadian neurons in Drosophila
-
Kula-Eversole E, Nagoshi E, Shang Y, Rodriguez J, Allada R, et al. (2010) Surprising gene expression patterns within and between PDF-containing circadian neurons in Drosophila. Proc Natl Acad Sci U S A 107: 13497-13502.
-
(2010)
Proc Natl Acad Sci U S A
, vol.107
, pp. 13497-13502
-
-
Kula-Eversole, E.1
Nagoshi, E.2
Shang, Y.3
Rodriguez, J.4
Allada, R.5
-
76
-
-
0028483237
-
Improved stability of Drosophila larval neuromuscular preparations in haemolymph-like physiological solutions
-
Stewart BA, Atwood HL, Renger JJ, Wang J, Wu CF, (1994) Improved stability of Drosophila larval neuromuscular preparations in haemolymph-like physiological solutions. J Comp Physiol A 175: 179-191.
-
(1994)
J Comp Physiol A
, vol.175
, pp. 179-191
-
-
Stewart, B.A.1
Atwood, H.L.2
Renger, J.J.3
Wang, J.4
Wu, C.F.5
|