Molecular Chaperones Activate the Drosophila Ecdysone Receptor, an RXR Heterodimer
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[1] S. Artavanis-Tsakonas,et al. Mutations in the heatshock cognate 70 protein (hsc4) modulate Notch signaling. , 1999, European journal of cell biology.
[2] M. Mckeown,et al. SMRTER, a Drosophila nuclear receptor coregulator, reveals that EcR-mediated repression is critical for development. , 1999, Molecular cell.
[3] T. Craig,et al. Association of prokaryotic and eukaryotic chaperone proteins with the human 1alpha,25-dihydroxyvitamin D(3) receptor. , 1999, Biochemical and biophysical research communications.
[4] C. Glass,et al. Coactivator and corepressor complexes in nuclear receptor function. , 1999, Current opinion in genetics & development.
[5] D. DeFranco,et al. Molecular chaperones and subcellular trafficking of steroid receptors 1 1 Proceedings of the 13th International Symposium of the Journal of Steroid Biochemistry & Molecular Biology “Recent Advances in Steroid Biochemistry & Molecular Biology” Monaco 25–28 May 1997. , 1998, The Journal of Steroid Biochemistry and Molecular Biology.
[6] H. Gronemeyer,et al. Reappraisal of the role of heat shock proteins as regulators of steroid receptor activity. , 1998, Critical reviews in biochemistry and molecular biology.
[7] W. Talbot,et al. Drosophila Ecdysone Receptor Mutations Reveal Functional Differences among Receptor Isoforms , 1997, Cell.
[8] L. Pearl,et al. Identification and Structural Characterization of the ATP/ADP-Binding Site in the Hsp90 Molecular Chaperone , 1997, Cell.
[9] W. Pratt,et al. Steroid receptor interactions with heat shock protein and immunophilin chaperones. , 1997, Endocrine reviews.
[10] Neal Rosen,et al. Crystal Structure of an Hsp90–Geldanamycin Complex: Targeting of a Protein Chaperone by an Antitumor Agent , 1997, Cell.
[11] K. White,et al. Coordination of Drosophila Metamorphosis by Two Ecdysone-Induced Nuclear Receptors , 1997, Science.
[12] R. Evans,et al. Coexpression of nuclear receptor partners increases their solubility and biological activities. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[13] J. Buchner,et al. Chaperone Function of Hsp90-Associated Proteins , 1996, Science.
[14] R. Morimoto,et al. Molecular Chaperone Machines: Chaperone Activities of the Cyclophilin Cyp-40 and the Steroid Aporeceptor-Associated Protein p23 , 1996, Science.
[15] R. Evans,et al. The RXR heterodimers and orphan receptors , 1995, Cell.
[16] K. Umesono,et al. The nuclear receptor superfamily: The second decade , 1995, Cell.
[17] Miguel Beato,et al. Steroid hormone receptors: Many Actors in search of a plot , 1995, Cell.
[18] K. Yamamoto,et al. A role for Hsp90 in retinoid receptor signal transduction. , 1995, Molecular biology of the cell.
[19] J. Johnson,et al. A novel chaperone complex for steroid receptors involving heat shock proteins, immunophilins, and p23. , 1994, The Journal of biological chemistry.
[20] L. Gilbert,et al. Expression and function of the ultraspiracle (usp) gene during development of Drosophila melanogaster. , 1994, Developmental biology.
[21] M. Mckeown,et al. Functional ecdysone receptor is the product of EcR and Ultraspiracle genes , 1993, Nature.
[22] W. Talbot,et al. Drosophila tissues with different metamorphic responses to ecdysone express different ecdysone receptor isoforms , 1993, Cell.
[23] S. Parkhurst,et al. Dynamic Hsp83 RNA localization during Drosophila oogenesis and embryogenesis , 1993, Molecular and cellular biology.
[24] H. Stunnenberg,et al. Heterodimerization of the Drosophila ecdysone receptor with retinoid X receptor and ultraspiracle , 1993, Nature.
[25] F. Kafatos,et al. DNA binding and heteromerization of the Drosophila transcription factor chorion factor 1/ultraspiracle. , 1992, Proceedings of the National Academy of Sciences of the United States of America.
[26] M. Mckeown,et al. Drosophila ultraspiracle modulates ecdysone receptor function via heterodimer formation , 1992, Cell.
[27] W. Talbot,et al. The drosophila EcR gene encodes an ecdysone receptor, a new member of the steroid receptor superfamily , 1991, Cell.
[28] P. Chambon,et al. Retinoic acid receptor belongs to a subclass of nuclear receptors that do not form "docking" complexes with hsp90. , 1991, Biochemistry.
[29] M. Mckeown,et al. Relationship between the product of the Drosophila ultraspiracle locus and the vertebrate retinoid X receptor , 1990, Nature.
[30] W. Pratt,et al. In contrast to the glucocorticoid receptor, the thyroid hormone receptor is translated in the DNA binding state and is not associated with hsp90. , 1990, The Journal of biological chemistry.
[31] A. Beaton,et al. Interactions and developmental effects of mutations in the Broad-Complex of Drosophila melanogaster. , 1988, Genetics.
[32] A. Mahowald,et al. Expression and localization of Drosophila melanogaster hsp70 cognate proteins , 1986, Molecular and cellular biology.
[33] N. Perrimon,et al. Developmental genetics of the 2C-D region of the Drosophila X chromosome. , 1985, Genetics.
[34] R. Dennis,et al. Demonstration of an ecdysteroid receptor in a cultured cell line of Drosophila melanogaster. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[35] J. Fristrom,et al. Ecdysteroid receptors in imaginal discs of Drosophila melanogaster. , 1978, Proceedings of the National Academy of Sciences of the United States of America.
[36] E. Baulieu,et al. Steroid hormone receptors. , 1975, Vitamins and hormones.