-
1
-
-
0034708480
-
The genome sequence of Drosophila melanogaster
-
Adams M.D., Celniker S.E., Holt R.A., Evans C.A., Gocayne J.D., Amanatides P.G., Scherer S.E., Li P.W., Hoskins R.A., Galle R.F., George R.A., Lewis S.E., Richards S., Ashburner M., Henderson S.N., Sutton G.G., Wortman J.R., Yandell M.D., Zhang Q., Chen L.X., Brandon R.C., Rogers Y.H., Blazej R.G., Champe M., Pfeiffer B.D., Wan K.H., Doyle C., Baxter E.G., Helt G., Nelson C.R., Gabor G.L., Abril J.F., Agbayani A., An H.J., Andrews-Pfannkoch C., Baldwin D., Ballew R.M., Basu A., Baxendale J., Bayraktaroglu L., Beasley E.M., Beeson K.Y., Benos P.V., Berman B.P., Bhandari D., Bolshakov S., Borkova D., Botchan M.R., Bouck J., Brokstein P., Brottier P., Burtis K.C., Busam D.A., Butler H., Cadieu E., Center A., Chandra I., Cherry J.M., Cawley S., Dahlke C., Davenport L.B., Davies P., de Pablos B., Delcher A., Deng Z., Mays A.D., Dew I., Dietz S.M., Dodson K., Doup L.E., Downes M., Dugan-Rocha S., Dunkov B.C., Dunn P., Durbin K.J., Evangelista C.C., Ferraz C., Ferriera S., Fleischmann W., Fosler C., Gabrielian A.E., Garg N.S., Gelbart W.M., Glasser K., Glodek A., Gong F., Gorrell J.H., Gu Z., Guan P., Harris M., Harris N.L., Harvey D., Heiman T.J., Hernandez J.R., Houck J., Hostin D., Houston K.A., Howland T.J., Wei M.H., Ibegwam C., Jalali M., Kalush F., Karpen G.H., Ke Z., Kennison J.A., Ketchum K.A., Kimmel B.E., Kodira C.D., Kraft C., Kravitz S., Kulp D., Lai Z., Lasko P., Lei Y., Levitsky A.A., Li J., Li Z., Liang Y., Lin X., Liu X., Mattei B., McIntosh T.C., McLeod M.P., McPherson D., Merkulov G., Milshina N.V., Mobarry C., Morris J., Moshrefi A., Mount S.M., Moy M., Murphy B., Murphy L., Muzny D.M., Nelson D.L., Nelson D.R., Nelson K.A., Nixon K., Nusskern D.R., Pacleb J.M., Palazzolo M., Pittman G.S., Pan S., Pollard J., Puri V., Reese M.G., Reinert K., Remington K., Saunders R.D., Scheeler F., Shen H., Shue B.C., Siden-Kiamos I., Simpson M., Skupski M.P., Smith T., Spier E., Spradling A.C., Stapleton M., Strong R., Sun E., Svirskas R., Tector C., Turner R., Venter E., Wang A.H., Wang X., Wang Z.Y., Wassarman D.A., Weinstock G.M., Weissenbach J., Williams S.M., Woodage T., Worley K.C., Wu D., Yang S., Yao Q.A., Ye J., Yeh R.F., Zaveri J.S., Zhan M., Zhang G., Zhao Q., Zheng L., Zheng X.H., Zhong F.N., Zhong W., Zhou X., Zhu S., Zhu X., Smith H.O., Gibbs R.A., Myers E.W., Rubin G.M., and Venter J.C. The genome sequence of Drosophila melanogaster. Science 287 (2000) 2185-2195
-
(2000)
Science
, vol.287
, pp. 2185-2195
-
-
Adams, M.D.1
Celniker, S.E.2
Holt, R.A.3
Evans, C.A.4
Gocayne, J.D.5
Amanatides, P.G.6
Scherer, S.E.7
Li, P.W.8
Hoskins, R.A.9
Galle, R.F.10
George, R.A.11
Lewis, S.E.12
Richards, S.13
Ashburner, M.14
Henderson, S.N.15
Sutton, G.G.16
Wortman, J.R.17
Yandell, M.D.18
Zhang, Q.19
Chen, L.X.20
Brandon, R.C.21
Rogers, Y.H.22
Blazej, R.G.23
Champe, M.24
Pfeiffer, B.D.25
Wan, K.H.26
Doyle, C.27
Baxter, E.G.28
Helt, G.29
Nelson, C.R.30
Gabor, G.L.31
Abril, J.F.32
Agbayani, A.33
An, H.J.34
Andrews-Pfannkoch, C.35
Baldwin, D.36
Ballew, R.M.37
Basu, A.38
Baxendale, J.39
Bayraktaroglu, L.40
Beasley, E.M.41
Beeson, K.Y.42
Benos, P.V.43
Berman, B.P.44
Bhandari, D.45
Bolshakov, S.46
Borkova, D.47
Botchan, M.R.48
Bouck, J.49
Brokstein, P.50
Brottier, P.51
Burtis, K.C.52
Busam, D.A.53
Butler, H.54
Cadieu, E.55
Center, A.56
Chandra, I.57
Cherry, J.M.58
Cawley, S.59
Dahlke, C.60
Davenport, L.B.61
Davies, P.62
de Pablos, B.63
Delcher, A.64
Deng, Z.65
Mays, A.D.66
Dew, I.67
Dietz, S.M.68
Dodson, K.69
Doup, L.E.70
Downes, M.71
Dugan-Rocha, S.72
Dunkov, B.C.73
Dunn, P.74
Durbin, K.J.75
Evangelista, C.C.76
Ferraz, C.77
Ferriera, S.78
Fleischmann, W.79
Fosler, C.80
Gabrielian, A.E.81
Garg, N.S.82
Gelbart, W.M.83
Glasser, K.84
Glodek, A.85
Gong, F.86
Gorrell, J.H.87
Gu, Z.88
Guan, P.89
Harris, M.90
Harris, N.L.91
Harvey, D.92
Heiman, T.J.93
Hernandez, J.R.94
Houck, J.95
Hostin, D.96
Houston, K.A.97
Howland, T.J.98
Wei, M.H.99
Ibegwam, C.100
Jalali, M.101
Kalush, F.102
Karpen, G.H.103
Ke, Z.104
Kennison, J.A.105
Ketchum, K.A.106
Kimmel, B.E.107
Kodira, C.D.108
Kraft, C.109
Kravitz, S.110
Kulp, D.111
Lai, Z.112
Lasko, P.113
Lei, Y.114
Levitsky, A.A.115
Li, J.116
Li, Z.117
Liang, Y.118
Lin, X.119
Liu, X.120
Mattei, B.121
McIntosh, T.C.122
McLeod, M.P.123
McPherson, D.124
Merkulov, G.125
Milshina, N.V.126
Mobarry, C.127
Morris, J.128
Moshrefi, A.129
Mount, S.M.130
Moy, M.131
Murphy, B.132
Murphy, L.133
Muzny, D.M.134
Nelson, D.L.135
Nelson, D.R.136
Nelson, K.A.137
Nixon, K.138
Nusskern, D.R.139
Pacleb, J.M.140
Palazzolo, M.141
Pittman, G.S.142
Pan, S.143
Pollard, J.144
Puri, V.145
Reese, M.G.146
Reinert, K.147
Remington, K.148
Saunders, R.D.149
Scheeler, F.150
Shen, H.151
Shue, B.C.152
Siden-Kiamos, I.153
Simpson, M.154
Skupski, M.P.155
Smith, T.156
Spier, E.157
Spradling, A.C.158
Stapleton, M.159
Strong, R.160
Sun, E.161
Svirskas, R.162
Tector, C.163
Turner, R.164
Venter, E.165
Wang, A.H.166
Wang, X.167
Wang, Z.Y.168
Wassarman, D.A.169
Weinstock, G.M.170
Weissenbach, J.171
Williams, S.M.172
Woodage, T.173
Worley, K.C.174
Wu, D.175
Yang, S.176
Yao, Q.A.177
Ye, J.178
Yeh, R.F.179
Zaveri, J.S.180
Zhan, M.181
Zhang, G.182
Zhao, Q.183
Zheng, L.184
Zheng, X.H.185
Zhong, F.N.186
Zhong, W.187
Zhou, X.188
Zhu, S.189
Zhu, X.190
Smith, H.O.191
Gibbs, R.A.192
Myers, E.W.193
Rubin, G.M.194
Venter, J.C.195
more..
-
2
-
-
0010372870
-
A gene for lindane + cyclodeine resistance in the red flour beetle (Coleoptera: Tenebrionidae)
-
Beeman R.W., and Staurt J.J. A gene for lindane + cyclodeine resistance in the red flour beetle (Coleoptera: Tenebrionidae). J. Econ. Entomol. 83 (1990) 1745-1751
-
(1990)
J. Econ. Entomol.
, vol.83
, pp. 1745-1751
-
-
Beeman, R.W.1
Staurt, J.J.2
-
3
-
-
33751502151
-
International Union of Pharmacology. LXVI. Orphan nuclear receptors
-
Benoit G., Cooney A., Giguere V., Ingraham H., Lazar M., Muscat G., Perlmann T., Renaud J.P., Schwabe J., Sladek F., Tsai M.J., and Laudet V. International Union of Pharmacology. LXVI. Orphan nuclear receptors. Pharmacol. Rev. 58 (2006) 798-836
-
(2006)
Pharmacol. Rev.
, vol.58
, pp. 798-836
-
-
Benoit, G.1
Cooney, A.2
Giguere, V.3
Ingraham, H.4
Lazar, M.5
Muscat, G.6
Perlmann, T.7
Renaud, J.P.8
Schwabe, J.9
Sladek, F.10
Tsai, M.J.11
Laudet, V.12
-
4
-
-
0036696845
-
Loss of the ecdysteroid-inducible E75A orphan nuclear receptor uncouples molting from metamorphosis in Drosophila
-
Bialecki M., Shilton A., Fichtenberg C., Segraves W.A., and Thummel C.S. Loss of the ecdysteroid-inducible E75A orphan nuclear receptor uncouples molting from metamorphosis in Drosophila. Dev. Cell 3 (2002) 209-220
-
(2002)
Dev. Cell
, vol.3
, pp. 209-220
-
-
Bialecki, M.1
Shilton, A.2
Fichtenberg, C.3
Segraves, W.A.4
Thummel, C.S.5
-
5
-
-
0029595249
-
Evolution of neuroblast identity: seven-up and prospero expression reveal homologous and divergent neuroblast fates in Drosophila and Schistocerca
-
Broadus J., and Doe C.Q. Evolution of neuroblast identity: seven-up and prospero expression reveal homologous and divergent neuroblast fates in Drosophila and Schistocerca. Development 121 (1995) 3989-3996
-
(1995)
Development
, vol.121
, pp. 3989-3996
-
-
Broadus, J.1
Doe, C.Q.2
-
6
-
-
0032718125
-
Ecdysone response genes govern egg chamber development during mid-oogenesis in Drosophila
-
Buszczak M., Freeman M.R., Carlson J.R., Bender M., Cooley L., and Segraves W.A. Ecdysone response genes govern egg chamber development during mid-oogenesis in Drosophila. Development 126 (1999) 4581-4589
-
(1999)
Development
, vol.126
, pp. 4581-4589
-
-
Buszczak, M.1
Freeman, M.R.2
Carlson, J.R.3
Bender, M.4
Cooley, L.5
Segraves, W.A.6
-
7
-
-
16244418604
-
Overview of general physiologic features and functions of vitamin D
-
DeLuca H.F. Overview of general physiologic features and functions of vitamin D. Am. J. Clin. Nutr. 80 (2004) 1689S-1696S
-
(2004)
Am. J. Clin. Nutr.
, vol.80
-
-
DeLuca, H.F.1
-
8
-
-
0032427907
-
dissatisfaction encodes a tailless-like nuclear receptor expressed in a subset of CNS neurons controlling Drosophila sexual behavior
-
Finley K.D., Edeen P.T., Foss M., Gross E., Ghbeish N., Palmer R.H., Taylor B.J., and McKeown M. dissatisfaction encodes a tailless-like nuclear receptor expressed in a subset of CNS neurons controlling Drosophila sexual behavior. Neuron 21 (1998) 1363-1374
-
(1998)
Neuron
, vol.21
, pp. 1363-1374
-
-
Finley, K.D.1
Edeen, P.T.2
Foss, M.3
Gross, E.4
Ghbeish, N.5
Palmer, R.H.6
Taylor, B.J.7
McKeown, M.8
-
9
-
-
0028800017
-
Isolation, regulation, and DNA-binding properties of three Drosophila nuclear hormone receptor superfamily members
-
Fisk G.J., and Thummel C.S. Isolation, regulation, and DNA-binding properties of three Drosophila nuclear hormone receptor superfamily members. Proc. Natl. Acad. Sci. USA 92 (1995) 10604-10608
-
(1995)
Proc. Natl. Acad. Sci. USA
, vol.92
, pp. 10604-10608
-
-
Fisk, G.J.1
Thummel, C.S.2
-
10
-
-
33751550166
-
International Union of Pharmacology. LIX. The pharmacology and classification of the nuclear receptor superfamily: thyroid hormone receptors
-
Flamant F., Baxter J.D., Forrest D., Refetoff S., Samuels H., Scanlan T.S., Vennstrom B., and Samarut J. International Union of Pharmacology. LIX. The pharmacology and classification of the nuclear receptor superfamily: thyroid hormone receptors. Pharmacol. Rev. 58 (2006) 705-711
-
(2006)
Pharmacol. Rev.
, vol.58
, pp. 705-711
-
-
Flamant, F.1
Baxter, J.D.2
Forrest, D.3
Refetoff, S.4
Samuels, H.5
Scanlan, T.S.6
Vennstrom, B.7
Samarut, J.8
-
11
-
-
33751548984
-
Overview of nomenclature of nuclear receptors
-
Germain P., Staels B., Dacquet C., Spedding M., and Laudet V. Overview of nomenclature of nuclear receptors. Pharmacol. Rev. 58 (2006) 685-704
-
(2006)
Pharmacol. Rev.
, vol.58
, pp. 685-704
-
-
Germain, P.1
Staels, B.2
Dacquet, C.3
Spedding, M.4
Laudet, V.5
-
12
-
-
0000098339
-
Status of malathion resistance in five genera of beetles infesting farm-stored corn, wheat and oats in the United States
-
Haliscak J.P., and Beeman R.W. Status of malathion resistance in five genera of beetles infesting farm-stored corn, wheat and oats in the United States. J. Econ. Entomol. 76 (1983) 717-722
-
(1983)
J. Econ. Entomol.
, vol.76
, pp. 717-722
-
-
Haliscak, J.P.1
Beeman, R.W.2
-
13
-
-
0037020114
-
The genome sequence of the malaria mosquito Anopheles gambiae
-
Holt R.A., Subramanian G.M., Halpern A., Sutton G.G., Charlab R., Nusskern D.R., Wincker P., Clark A.G., Ribeiro J.M., Wides R., Salzberg S.L., Loftus B., Yandell M., Majoros W.H., Rusch D.B., Lai Z., Kraft C.L., Abril J.F., Anthouard V., Arensburger P., Atkinson P.W., Baden H., de Berardinis V., Baldwin D., Benes V., Biedler J., Blass C., Bolanos R., Boscus D., Barnstead M., Cai S., Center A., Chaturverdi K., Christophides G.K., Chrystal M.A., Clamp M., Cravchik A., Curwen V., Dana A., Delcher A., Dew I., Evans C.A., Flanigan M., Grundschober-Freimoser A., Friedli L., Gu Z., Guan P., Guigo R., Hillenmeyer M.E., Hladun S.L., Hogan J.R., Hong Y.S., Hoover J., Jaillon O., Ke Z., Kodira C., Kokoza E., Koutsos A., Letunic I., Levitsky A., Liang Y., Lin J.J., Lobo N.F., Lopez J.R., Malek J.A., McIntosh T.C., Meister S., Miller J., Mobarry C., Mongin E., Murphy S.D., O'Brochta D.A., Pfannkoch C., Qi R., Regier M.A., Remington K., Shao H., Sharakhova M.V., Sitter C.D., Shetty J., Smith T.J., Strong R., Sun J., Thomasova D., Ton L.Q., Topalis P., Tu Z., Unger M.F., Walenz B., Wang A., Wang J., Wang M., Wang X., Woodford K.J., Wortman J.R., Wu M., Yao A., Zdobnov E.M., Zhang H., Zhao Q., Zhao S., Zhu S.C., Zhimulev I., Coluzzi M., della Torre A., Roth C.W., Louis C., Kalush F., Mural R.J., Myers E.W., Adams M.D., Smith H.O., Broder S., Gardner M.J., Fraser C.M., Birney E., Bork P., Brey P.T., Venter J.C., Weissenbach J., Kafatos F.C., Collins F.H., and Hoffman S.L. The genome sequence of the malaria mosquito Anopheles gambiae. Science 298 (2002) 129-149
-
(2002)
Science
, vol.298
, pp. 129-149
-
-
Holt, R.A.1
Subramanian, G.M.2
Halpern, A.3
Sutton, G.G.4
Charlab, R.5
Nusskern, D.R.6
Wincker, P.7
Clark, A.G.8
Ribeiro, J.M.9
Wides, R.10
Salzberg, S.L.11
Loftus, B.12
Yandell, M.13
Majoros, W.H.14
Rusch, D.B.15
Lai, Z.16
Kraft, C.L.17
Abril, J.F.18
Anthouard, V.19
Arensburger, P.20
Atkinson, P.W.21
Baden, H.22
de Berardinis, V.23
Baldwin, D.24
Benes, V.25
Biedler, J.26
Blass, C.27
Bolanos, R.28
Boscus, D.29
Barnstead, M.30
Cai, S.31
Center, A.32
Chaturverdi, K.33
Christophides, G.K.34
Chrystal, M.A.35
Clamp, M.36
Cravchik, A.37
Curwen, V.38
Dana, A.39
Delcher, A.40
Dew, I.41
Evans, C.A.42
Flanigan, M.43
Grundschober-Freimoser, A.44
Friedli, L.45
Gu, Z.46
Guan, P.47
Guigo, R.48
Hillenmeyer, M.E.49
Hladun, S.L.50
Hogan, J.R.51
Hong, Y.S.52
Hoover, J.53
Jaillon, O.54
Ke, Z.55
Kodira, C.56
Kokoza, E.57
Koutsos, A.58
Letunic, I.59
Levitsky, A.60
Liang, Y.61
Lin, J.J.62
Lobo, N.F.63
Lopez, J.R.64
Malek, J.A.65
McIntosh, T.C.66
Meister, S.67
Miller, J.68
Mobarry, C.69
Mongin, E.70
Murphy, S.D.71
O'Brochta, D.A.72
Pfannkoch, C.73
Qi, R.74
Regier, M.A.75
Remington, K.76
Shao, H.77
Sharakhova, M.V.78
Sitter, C.D.79
Shetty, J.80
Smith, T.J.81
Strong, R.82
Sun, J.83
Thomasova, D.84
Ton, L.Q.85
Topalis, P.86
Tu, Z.87
Unger, M.F.88
Walenz, B.89
Wang, A.90
Wang, J.91
Wang, M.92
Wang, X.93
Woodford, K.J.94
Wortman, J.R.95
Wu, M.96
Yao, A.97
Zdobnov, E.M.98
Zhang, H.99
Zhao, Q.100
Zhao, S.101
Zhu, S.C.102
Zhimulev, I.103
Coluzzi, M.104
della Torre, A.105
Roth, C.W.106
Louis, C.107
Kalush, F.108
Mural, R.J.109
Myers, E.W.110
Adams, M.D.111
Smith, H.O.112
Broder, S.113
Gardner, M.J.114
Fraser, C.M.115
Birney, E.116
Bork, P.117
Brey, P.T.118
Venter, J.C.119
Weissenbach, J.120
Kafatos, F.C.121
Collins, F.H.122
Hoffman, S.L.123
more..
-
14
-
-
0002971244
-
Mutations in the DHR39 orphan receptor gene have no effect on viability
-
Horner M., and Thummel C.S. Mutations in the DHR39 orphan receptor gene have no effect on viability. Dros. Info. Serv. 80 (1997) 35-37
-
(1997)
Dros. Info. Serv.
, vol.80
, pp. 35-37
-
-
Horner, M.1
Thummel, C.S.2
-
15
-
-
0028108926
-
Embryonic fat-cell lineage in Drosophila melanogaster
-
Hoshizaki D.K., Blackburn T., Price C., Ghosh M., Miles K., Ragucci M., and Sweis R. Embryonic fat-cell lineage in Drosophila melanogaster. Development 120 (1994) 2489-2499
-
(1994)
Development
, vol.120
, pp. 2489-2499
-
-
Hoshizaki, D.K.1
Blackburn, T.2
Price, C.3
Ghosh, M.4
Miles, K.5
Ragucci, M.6
Sweis, R.7
-
16
-
-
4944263717
-
Molecular mechanisms of DAX1 action
-
Iyer A.K., and McCabe E.R. Molecular mechanisms of DAX1 action. Mol. Genet. Metab. 83 (2004) 60-73
-
(2004)
Mol. Genet. Metab.
, vol.83
, pp. 60-73
-
-
Iyer, A.K.1
McCabe, E.R.2
-
17
-
-
0032525978
-
Seven-up, the Drosophila homolog of the COUP-TF orphan receptors, controls cell proliferation in the insect kidney
-
Kerber B., Fellert S., and Hoch M. Seven-up, the Drosophila homolog of the COUP-TF orphan receptors, controls cell proliferation in the insect kidney. Genes Dev. 12 (1998) 1781-1786
-
(1998)
Genes Dev.
, vol.12
, pp. 1781-1786
-
-
Kerber, B.1
Fellert, S.2
Hoch, M.3
-
18
-
-
15944408369
-
Nuclear receptors-a perspective from Drosophila
-
King-Jones K., and Thummel C.S. Nuclear receptors-a perspective from Drosophila. Nat. Rev. Genet. 6 (2005) 311-323
-
(2005)
Nat. Rev. Genet.
, vol.6
, pp. 311-323
-
-
King-Jones, K.1
Thummel, C.S.2
-
19
-
-
20444380725
-
The ecdysone-induced DHR4 orphan nuclear receptor coordinates growth and maturation in Drosophila
-
King-Jones K., Charles J.P., Lam G., and Thummel C.S. The ecdysone-induced DHR4 orphan nuclear receptor coordinates growth and maturation in Drosophila. Cell 121 (2005) 773-784
-
(2005)
Cell
, vol.121
, pp. 773-784
-
-
King-Jones, K.1
Charles, J.P.2
Lam, G.3
Thummel, C.S.4
-
20
-
-
33745357632
-
The DHR96 nuclear receptor regulates xenobiotic responses in Drosophila
-
King-Jones K., Horner M.A., Lam G., and Thummel C.S. The DHR96 nuclear receptor regulates xenobiotic responses in Drosophila. Cell Metab. 4 (2006) 37-48
-
(2006)
Cell Metab.
, vol.4
, pp. 37-48
-
-
King-Jones, K.1
Horner, M.A.2
Lam, G.3
Thummel, C.S.4
-
22
-
-
0031876590
-
Drosophila hormone receptor 38 functions in metamorphosis: a role in adult cuticle formation
-
Kozlova T., Pokholkova G.V., Tzertzinis G., Sutherland J.D., Zhimulev I.F., and Kafatos F.C. Drosophila hormone receptor 38 functions in metamorphosis: a role in adult cuticle formation. Genetics 149 (1998) 1465-1475
-
(1998)
Genetics
, vol.149
, pp. 1465-1475
-
-
Kozlova, T.1
Pokholkova, G.V.2
Tzertzinis, G.3
Sutherland, J.D.4
Zhimulev, I.F.5
Kafatos, F.C.6
-
23
-
-
0034967570
-
A role for the COUP-TF-related gene seven-up in the diversification of cardioblast identities in the dorsal vessel of Drosophila
-
Lo P.C.H., and Frasch M. A role for the COUP-TF-related gene seven-up in the diversification of cardioblast identities in the dorsal vessel of Drosophila. Mech. Dev. 104 (2001) 49-60
-
(2001)
Mech. Dev.
, vol.104
, pp. 49-60
-
-
Lo, P.C.H.1
Frasch, M.2
-
24
-
-
33751541647
-
International Union of Pharmacology. LXV. The pharmacology and classification of the nuclear receptor superfamily: glucocorticoid, mineralocorticoid, progesterone, and androgen receptors
-
Lu N.Z., Wardell S.E., Burnstein K.L., Defranco D., Fuller P.J., Giguere V., Hochberg R.B., McKay L., Renoir J.M., Weigel N.L., Wilson E.M., McDonnell D.P., and Cidlowski J.A. International Union of Pharmacology. LXV. The pharmacology and classification of the nuclear receptor superfamily: glucocorticoid, mineralocorticoid, progesterone, and androgen receptors. Pharmacol. Rev. 58 (2006) 782-797
-
(2006)
Pharmacol. Rev.
, vol.58
, pp. 782-797
-
-
Lu, N.Z.1
Wardell, S.E.2
Burnstein, K.L.3
Defranco, D.4
Fuller, P.J.5
Giguere, V.6
Hochberg, R.B.7
McKay, L.8
Renoir, J.M.9
Weigel, N.L.10
Wilson, E.M.11
McDonnell, D.P.12
Cidlowski, J.A.13
-
25
-
-
0035224757
-
Comparison of complete nuclear receptor sets from the human, Caenorhabditis elegans and Drosophila genomes
-
Maglich J.M., Sluder A., Guan X., Shi Y., McKee D.D., Carrick K., Kamdar K., Willson T.M., and Moore J.T. Comparison of complete nuclear receptor sets from the human, Caenorhabditis elegans and Drosophila genomes. Genome Biol. 2 RESEARCH0029 (2001)
-
(2001)
Genome Biol.
, vol.2
, Issue.RESEARCH0029
-
-
Maglich, J.M.1
Sluder, A.2
Guan, X.3
Shi, Y.4
McKee, D.D.5
Carrick, K.6
Kamdar, K.7
Willson, T.M.8
Moore, J.T.9
-
26
-
-
0025122035
-
The Drosophila 7-up gene, a member of the steroid-receptor gene superfamily, controls photoreceptor cell fates
-
Mlodzik M., Hiromi Y., Weber U., Goodman C.S., and Rubin G.M. The Drosophila 7-up gene, a member of the steroid-receptor gene superfamily, controls photoreceptor cell fates. Cell 60 (1990) 211-224
-
(1990)
Cell
, vol.60
, pp. 211-224
-
-
Mlodzik, M.1
Hiromi, Y.2
Weber, U.3
Goodman, C.S.4
Rubin, G.M.5
-
27
-
-
33750332589
-
Dynamic regulation of Drosophila nuclear receptor activity in vivo
-
Palanker L., Necakov A.S., Sampson H.M., Ni R., Hu C., Thummel C.S., and Krause H.M. Dynamic regulation of Drosophila nuclear receptor activity in vivo. Development 133 (2006) 3549-3562
-
(2006)
Development
, vol.133
, pp. 3549-3562
-
-
Palanker, L.1
Necakov, A.S.2
Sampson, H.M.3
Ni, R.4
Hu, C.5
Thummel, C.S.6
Krause, H.M.7
-
28
-
-
28244467108
-
Ecdysteroid receptors and their applications in agriculture and medicine
-
Palli S.R., Hormann R.E., Schlattner U., and Lezzi M. Ecdysteroid receptors and their applications in agriculture and medicine. Vitam. Horm. 73 (2005) 59-100
-
(2005)
Vitam. Horm.
, vol.73
, pp. 59-100
-
-
Palli, S.R.1
Hormann, R.E.2
Schlattner, U.3
Lezzi, M.4
-
29
-
-
28744457235
-
Nuclear hormone receptors, metabolism, and aging: what goes around comes around. Transcription factors link lipid metabolism and aging-related processes
-
Pardee K., Reinking J., and Krause H. Nuclear hormone receptors, metabolism, and aging: what goes around comes around. Transcription factors link lipid metabolism and aging-related processes. Sci. Aging Knowl. Environ. 47 (2004) re8
-
(2004)
Sci. Aging Knowl. Environ.
, vol.47
-
-
Pardee, K.1
Reinking, J.2
Krause, H.3
-
30
-
-
0030858661
-
Null mutation of mCOUP-TFI results in defects in morphogenesis of the glossopharyngeal ganglion, axonal projection, and arborization
-
Qiu Y.H., Pereira F.A., DeMayo F.J., Lydon J.P., Tsai S.Y., and Tsai M.J. Null mutation of mCOUP-TFI results in defects in morphogenesis of the glossopharyngeal ganglion, axonal projection, and arborization. Genes Dev. 11 (1997) 1925-1937
-
(1997)
Genes Dev.
, vol.11
, pp. 1925-1937
-
-
Qiu, Y.H.1
Pereira, F.A.2
DeMayo, F.J.3
Lydon, J.P.4
Tsai, S.Y.5
Tsai, M.J.6
-
31
-
-
0036784612
-
Molecular biology of mosquito vitellogenesis: from basic studies to genetic engineering of antipathogen immunity
-
Raikhel A.S., Kokoza V.A., Zhu J., Martin D., Wang S.F., Li C., Sun G., Ahmed A., Dittmer N., and Attardo G. Molecular biology of mosquito vitellogenesis: from basic studies to genetic engineering of antipathogen immunity. Insect Biochem. Mol. Biol. 32 (2002) 1275-1286
-
(2002)
Insect Biochem. Mol. Biol.
, vol.32
, pp. 1275-1286
-
-
Raikhel, A.S.1
Kokoza, V.A.2
Zhu, J.3
Martin, D.4
Wang, S.F.5
Li, C.6
Sun, G.7
Ahmed, A.8
Dittmer, N.9
Attardo, G.10
-
32
-
-
22744432559
-
The Drosophila nuclear receptor e75 contains heme and is gas responsive
-
Reinking J., Lam M.M., Pardee K., Sampson H.M., Liu S., Yang P., Williams S., White W., Lajoie G., Edwards A., and Krause H.M. The Drosophila nuclear receptor e75 contains heme and is gas responsive. Cell 122 (2005) 195-207
-
(2005)
Cell
, vol.122
, pp. 195-207
-
-
Reinking, J.1
Lam, M.M.2
Pardee, K.3
Sampson, H.M.4
Liu, S.5
Yang, P.6
Williams, S.7
White, W.8
Lajoie, G.9
Edwards, A.10
Krause, H.M.11
-
33
-
-
0025124572
-
The E75 ecdysone-inducible gene responsible for the 75B early puff in Drosophila encodes two new members of the steroid receptor superfamily
-
Segraves W.A., and Hogness D.S. The E75 ecdysone-inducible gene responsible for the 75B early puff in Drosophila encodes two new members of the steroid receptor superfamily. Genes Dev. 4 (1990) 204-219
-
(1990)
Genes Dev.
, vol.4
, pp. 204-219
-
-
Segraves, W.A.1
Hogness, D.S.2
-
34
-
-
0025986670
-
Dual role of the Drosophila pattern gene tailless in embryonic termini
-
Steingrimsson E., Pignoni F., Liaw G.J., and Lengyel J.A. Dual role of the Drosophila pattern gene tailless in embryonic termini. Science 254 (1991) 418-421
-
(1991)
Science
, vol.254
, pp. 418-421
-
-
Steingrimsson, E.1
Pignoni, F.2
Liaw, G.J.3
Lengyel, J.A.4
-
35
-
-
0242267067
-
Temporal profiles of nuclear receptor gene expression reveal coordinate transcriptional responses during Drosophila development
-
Sullivan A.A., and Thummel C.S. Temporal profiles of nuclear receptor gene expression reveal coordinate transcriptional responses during Drosophila development. Mol. Endocrinol. 17 (2003) 2125-2137
-
(2003)
Mol. Endocrinol.
, vol.17
, pp. 2125-2137
-
-
Sullivan, A.A.1
Thummel, C.S.2
-
36
-
-
0029150036
-
Drosophila hormone receptor 38: a second partner for Drosophila USP suggests an unexpected role for nuclear receptors of the nerve growth factor-induced protein B type
-
Sutherland J.D., Kozlova T., Tzertzinis G., and Kafatos F.C. Drosophila hormone receptor 38: a second partner for Drosophila USP suggests an unexpected role for nuclear receptors of the nerve growth factor-induced protein B type. PNAS 92 (1995) 7966-7970
-
(1995)
PNAS
, vol.92
, pp. 7966-7970
-
-
Sutherland, J.D.1
Kozlova, T.2
Tzertzinis, G.3
Kafatos, F.C.4
-
37
-
-
8544283793
-
Larval RNAi in Tribolium (Coleoptera) for analyzing adult development
-
Tomoyasu Y., and Denell R.E. Larval RNAi in Tribolium (Coleoptera) for analyzing adult development. Dev. Genes Evol. 214 (2004) 575-578
-
(2004)
Dev. Genes Evol.
, vol.214
, pp. 575-578
-
-
Tomoyasu, Y.1
Denell, R.E.2
-
38
-
-
33750459900
-
Nuclear receptors of the honey bee: annotation and expression in the adult brain
-
Velarde R.A., Robinson G.E., and Fahrbach S.E. Nuclear receptors of the honey bee: annotation and expression in the adult brain. Insect Mol. Biol. 15 (2006) 583-595
-
(2006)
Insect Mol. Biol.
, vol.15
, pp. 583-595
-
-
Velarde, R.A.1
Robinson, G.E.2
Fahrbach, S.E.3
-
40
-
-
0034528224
-
Temporally restricted expression of transcription factor betaFTZ-F1: significance for embryogenesis, molting and metamorphosis in Drosophila melanogaster
-
Yamada M., Murata T., Hirose S., Lavorgna G., Suzuki E., and Ueda H. Temporally restricted expression of transcription factor betaFTZ-F1: significance for embryogenesis, molting and metamorphosis in Drosophila melanogaster. Development 127 (2000) 5083-5092
-
(2000)
Development
, vol.127
, pp. 5083-5092
-
-
Yamada, M.1
Murata, T.2
Hirose, S.3
Lavorgna, G.4
Suzuki, E.5
Ueda, H.6
-
41
-
-
0028972711
-
Seven-up inhibits ultraspiracle-based signaling pathways in vitro and in vivo
-
Zelhof A.C., Yao T.P., Chen J.D., Evans R.M., and McKeown M. Seven-up inhibits ultraspiracle-based signaling pathways in vitro and in vivo. Mol. Cell. Biol. 15 (1995) 6736-6745
-
(1995)
Mol. Cell. Biol.
, vol.15
, pp. 6736-6745
-
-
Zelhof, A.C.1
Yao, T.P.2
Chen, J.D.3
Evans, R.M.4
McKeown, M.5
|