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Ashburner, M (1974). Sequential gene activation by ecdysone in polytene chromosomes of Drosophila melanogaster . II. The effects of inhibitors of protein synthesis. Dev. Biol 39, 141-157.[Medline]

Ashburner, M., Chihara, C., Meltzer, P. and Richards, G (1974). Temporal control of puffing activity in polytene chromosomes. Cold Spring Harbor Symp. Quant. Biol 38, 655-662.[Abstract/Free Full Text]

Ayer, S., Walker, N., Mosammaparast, M., Nelson, J. P., Shilo, B. and Benyajati, C (1993). Activation and repression of Drosophila alcohol dehydrogenase distal transcription by two steroid hormone receptor superfamily members binding to a common response element. Nucl. Acids Res 21, 1619-1627.[Abstract/Free Full Text]

Baehrecke, E. H. and Thummel, C. S (1995). The Drosophila E93 gene fromthe 93F early puff displays stage-and tissue-specific regulation by 20-hydroxyecdysone. Dev. Biol 171, 85-97.[Medline]

Boyd, L., O'Toole, E. and Thummel, C. S (1991). Patterns of E74A RNA and protein expression at the onset of metamorphosis in Drosophila. Development 112, 981-995.[Abstract]

Burtis, K. C., Thummel, C. S., Jones, C. W., Karim, F. D. and Hogness, D. S (1990). The Drosophila 74EF early puff contains E74 , a complex ecdysone-inducible gene that encodes two ets -related proteins. Cell 61, 85-99.[Medline]

Clever, U (1964). Actinomycin and puromycin: effects on sequential gene activation by ecdysone. Science 146, 794-795.[Abstract/Free Full Text]

DiBello, P. R., Withers, D. A., Bayer, C. A., Fristrom, J. W. and Guild, G. M (1991). The Drosophila Broad-Complex encodes a family of related proteins containing zinc fingers. Genetics 129, 385-397.[Abstract]

Emery, I. F., Bedian, V. and Guild, G. M (1994). Differential expression of Broad-Complex transcription factors may forecast tissue-specific developmental fates during Drosophila metamorphosis. Development 120, 3275-3287.[Abstract]

Fletcher, J. C., Burtis, K. B., Hogness, D. S. and Thummel, C. S (1995). The Drosophila E74 gene is required for metamorphosis and plays a role in the polytene chromosome puffing response to ecdysone. Development 121, 1455-1465.[Abstract]

Fletcher, J. C. and Thummel, C. S (1995). The Drosophila E74 gene is required for the proper stage-and tissue-specific transcription of ecdysone-regulated genes at the onset of metamorphosis. Development 121, 1411-1421.[Abstract]

Forman, B. M., Chen, J., Blumberg, B., Kliewer, S. A., Henshaw, R., Ong, E. S. and Evans, R. M (1994). Cross-talk among ROR1 and the Rev-erb family of orphan nuclear receptors. Mol. Endo 8, 1253-1261.[Abstract]

Giguere, V., McBroom, L. D. B. and Flock, G (1995). Determinants of target gene specificity for ROR1: monomeric DNA binding by an orphan nuclear receptor. Mol. Cell. Biol 15, 2517-2526.[Abstract]

Giguere, V., Tini, M., Flock, G., Ong, E., Evans, R. M. and Otulakowski, G (1994). Isoform-specific amino-terminal domains dictate DNA-binding properties of ROR, a novel family of orphan hormone nuclear receptors. Genes Dev 8, 538-553.[Abstract/Free Full Text]

Guay, P. S. and Guild, G. M (1991). The ecdysone-induced puffing cascade in Drosophila salivary glands: a Broad-Complex early gene regulates intermolt and late gene transcription. Genetics 129, 169-175.[Abstract]

Guo, L. H., Stepien, P. P., Tso, J. Y., Brousseau, R., Narang, S., Thomas, D. Y. and Wu, R (1984). Synthesis of human insulin gene VIII. Construction of expression vectors for fused proinsulin production in Escherichia coli. Gene 29, 251-254.[Medline]

Harding, H. P. and Lazar, M. A (1993). The orphan receptor Rev-ErbAactivates transcription via a novel response element. Mol. Cell. Biol 13, 3113-3121.[Abstract/Free Full Text]

Harding, H. P. and Lazar, M. A (1995). The monomer-binding orphan receptor Rev-erb represses transcription as a dimer on a novel direct repeat. Mol. Cell. Biol 15, 4791-4802.[Abstract]

Hope, I. A. and Struhl, K (1985). GCN4 protein, synthesized in vitro , binds HIS3 regulatory sequences: implications for general control of amino acid biosynthetic genes in yeast. Cell 43, 177-188.[Medline]

Horner, M., Chen, T. and Thummel, C. S (1995). Ecdysone regulation and DNA binding properties of Drosophila nuclear hormone receptor superfamily members. Dev. Biol 168, 490-502.[Medline]

Huet, F., Ruiz, C. and Richards, G (1993). Puffs and PCR: the in vivo dynamics of early gene expression during ecdysone responses in Drosophila. Development 118, 613-627.[Abstract]

Huet, F., Ruiz, C. and Richards, G (1995). Sequential gene activation by ecdysone in Drosophila melanogaster : the hierarchical equivalence of early and early late genes. Development 121, 1195-1204.[Abstract]

Karim, F. D., Guild, G. M. and Thummel, C. S (1993). The DrosophilaBroad-Complex plays a key role in controlling ecdysone-regulated gene expression at the onset of metamorphosis. Development 118, 977-988.[Abstract]

Karim, F. D. and Thummel, C. S (1991). Ecdysone coordinates the timing and amounts of E74A and E74B transcription in Drosophila. Genes Dev 5, 1067-1079.[Abstract/Free Full Text]

Karim, F. D. and Thummel, C. S (1992). Temporal coordination of regulatory gene expression by the steroid hormone ecdysone. EMBO J 11, 4083-4093.[Medline]

Kiss, I., Beaton, A. H., Tardiff, J., Fristrom, D. and Fristrom, J. W (1988). Interactions and developmental effects of mutations in the Broad-Complex of Drosophila melanogaster. Genetics 118, 247-259.[Abstract/Free Full Text]

Koelle, M. R., Segraves, W. A. and Hogness, D. S (1992). DHR3: a Drosophila steroid receptor homolog. Proc. Natl. Acad. Sci. USA 89, 6167-6171.[Abstract/Free Full Text]

Koelle, M. R., Talbot, W. S., Segraves, W. A., Bender, M. T., Cherbas, P. and Hogness, D. S (1991). The Drosophila EcR gene encodes an ecdysone receptor, a new member of the steroid receptor superfamily. Cell 67, 59-77.[Medline]

Lavorgna, G., Karim, F. D., Thummel, C. S. and Wu, C (1993). Potential role for a FTZ-F1 steroid receptor superfamily member in the control of Drosophila metamorphosis. Proc. Natl. Acad. Sci. USA 90, 3004-3008.[Abstract/Free Full Text]

Mangelsdorf, D. J. and Evans, R. M (1995). The RXR heterodimers and orphan receptors. Cell 83, 841-850.[Medline]

Mangelsdorf, D. J., Thummel, C., Beato, M., Herrlich, P., Schutz, G., Umesono, K., Blumberg, B., Kastner, P., Mark, M., Chambon, P. and Evans, R. M (1995). The nuclear receptor superfamily: The second decade. Cell 83, 835-839.[Medline]

Maroni, G. and Stamey, S. C (1983). Use of blue food to select synchoronous, late third instar larvae. Dros. Inf. Serv 59, 142-143.

Ohno, C. K. and Petkovich, M (1992). FTZ-F1 , a novel member of the Drosophila nuclear receptor family. Mech. Dev 40, 13-24.

Palli, S. R., Hiruma, K. and Riddiford, L. M (1992). An ecdysteroid-inducible Manduca gene similar to the Drosophila DHR3 gene, a member of the steroid hormone receptor superfamily. Dev. Biol 150, 306-318.[Medline]

Reuter, R. and Scott, M. P (1990). Expression and function of the homeotic genes Antennapedia and Sex combs reduced in the embryonic midgut of Drosophila. Development 109, 289-303.[Abstract]

Richards, G (1976). Sequential gene activation by ecdysone in polytene chromosomes of Drosophila melanogaster : V. The late prepupal puffs. Dev. Biol 54, 264-275.[Medline]

Robertson, C. W (1936). The metamorphosis of Drosophila melanogaster , including an accurately timed account of the principle morphological changes. J. Morphol 59, 351-399.

Rubin, G. M. and Spradling, A. C (1982). Genetic transformation of Drosophila with transposable element vectors. Science 218, 348-353.[Abstract/Free Full Text]

Russell, S. R. H., Heimbeck, G., Goddard, C. M., Carpenter, A. T. C. and Ashburner, M (1996). The Drosophila Eip78C gene is not vital but has a role in regulating chromosome puffs. Genetics 144, 159-170.[Abstract]

Segraves, W. A. and Hogness, D. S (1990). The E75 ecdysone-inducible generesponsible for the 75B early puff in Drosophila encodes two new members of the steroid receptor superfamily. Genes Dev 4, 204-219.[Abstract/Free Full Text]

Seol, W., Choi, H.-S. and Moore, D. D (1996). An orphan nuclear hormone receptor that lacks a DNA binding domain and heterodimerizes with other receptors. Science 272, 1336-1339.[Abstract]

Sliter, T. J. and Gilbert, L. I (1992). Developmental arrest and ecdysteroid deficiency resulting from mutations at the dre4 locus of Drosophila. Genetics 130, 555-568.[Abstract]

Stone, B. L. and Thummel, C. S (1993). The Drosophila 78C early late puff contains E78 , an ecdysone-inducible gene that encodes a novel member of the nuclear hormone receptor superfamily. Cell 75, 307-320.[Medline]

Talbot, W. S., Swyryd, E. A. and Hogness, D. S (1993). Drosophila tissues with different metamorphic responses to ecdysone express different ecdysone receptor isoforms. Cell 73, 1323-1337.[Medline]

Thomas, H. E., Stunnenberg, H. G. and Stewart, A. F (1993). Heterodimerization of the Drosophila ecdysone receptor with retinoid X receptor and ultraspiracle. Nature 362, 471-475.[Medline]

Thummel, C. S (1995). From embryogenesis to metamorphosis: The regulation and function of Drosophila nuclear receptor superfamily members. Cell 83, 871-877.[Medline]

Thummel, C. S (1996). Flies on steroids: Drosophila metamorphosis and the mechanisms of steroid hormone action. Trends Genet 12, 306-310.[Medline]

Thummel, C. S., Burtis, K. C. and Hogness, D. S (1990). Spatial and temporal patterns of E74 transcription during Drosophila development. Cell 61, 101-111.[Medline]

Thummel, C. S. and Pirrotta, V (1992). New pCaSpeR P element vectors. Dros. Info. Serv 71, 150-.

Tini, M., Fraser, R. A. and Giguere, V (1995). Functional interactions between retinoic acid receptor-related orphan nuclear receptor (ROR) and the retinoic acid receptors in the regulation of the F-crystallin promoter. J. Biol. Chem 270, 20156-20161.[Abstract/Free Full Text]

Tsai, M.-J. and O'Malley, B. W (1994). Molecular mechanisms of action of steroid/thyroid receptor superfamily members. Annu. Rev. Biochem 63, 451-486.[Medline]

Urness, L. D. and Thummel, C. S (1990). Molecular interactions within the ecdysone regulatory hierarchy: DNA binding properties of the Drosophila ecdysone-inducible E74A protein. Cell 63, 47-61.[Medline]

Weber, U., Siegel, V. and Mlodzik, M (1995). pipsqueak encodes a novel nuclear protein required downstream of seven-up for the development of photoreceptors R3 and R4. EMBO J 14, 6247-6257.[Medline]

Woodard, C. T., Baehrecke, E. H. and Thummel, C. S (1994). A molecular mechanism for the stage specificity of the Drosophila prepupal genetic response to ecdysone. Cell 79, 607-615.[Medline]

Yao, T., Forman, B. M., Jiang, Z., Cherbas, L., Chen, J. D., McKeown, M., Cherbas, P. and Evans, R. M (1993). Functional ecdysone receptor is the product of EcR and Ultraspiracle genes. Nature 366, 476-479.[Medline]

Yao, T., Segraves, W. A., Oro, A. E., McKeown, M. and Evans, R. M (1992). Drosophila ultraspiracle modulates ecdysone receptor function via heterodimer formation. Cell 71, 63-72.[Medline]

Zink, B. and Paro, R (1989). In vivo binding pattern of a transregulator of homeotic genes in Drosophila melanogaster. Nature 337, 468-471.[Medline]




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