Note to users. If you're seeing this message, it means that your browser cannot find this page's style/presentation instructions -- or possibly that you are using a browser that does not support current Web standards. Find out more about why this message is appearing, and what you can do to make your experience of our site the best it can be.


Science 24 November 1995:
Vol. 270. no. 5240, pp. 1354 - 1357
DOI: 10.1126/science.270.5240.1354

Reports

Sequence and Characterization of a Coactivator for the Steroid Hormone Receptor Superfamily

Sergio A. Oñate,  Sophia Y. Tsai,  Ming-Jer Tsai,  Bert W. O'Malley (1)

A yeast two-hybrid system was used to identify a protein that interacts with and enhances the human progesterone receptor (hPR) transcriptional activity without altering the basal activity of the promoter. Because the protein stimulated transactivation of all the steroid receptors tested, it has been termed steroid receptor coactivator-1 (SRC-1). Coexpression of SRC-1 reversed the ability of the estrogen receptor to squelch activation by hPR. Also, the amino terminal truncated form of SRC-1 acted as a dominant-negative repressor. Together, these results indicate that SRC-1 encodes a coactivator that is required for full transcriptional activity of the steroid receptor superfamily.


Department of Cell Biology, Baylor College of Medicine, Houston, TX 77030, USA.
(1) To whom correspondence should be addressed.


THIS ARTICLE HAS BEEN CITED BY OTHER ARTICLES:
Nuclear Receptor Coregulators in Cancer Biology.
B. W. O'Malley and R. Kumar (2009)
Cancer Res. 69, 8217-8222
   Abstract »    Full Text »    PDF »
Minireview: Role of Protein Methylation and Demethylation in Nuclear Hormone Signaling.
S. C. Wu and Y. Zhang (2009)
Mol. Endocrinol. 23, 1323-1334
   Abstract »    Full Text »    PDF »
The mineralocorticoid receptor and its coregulators.
J. Yang and M. J Young (2009)
J. Mol. Endocrinol. 43, 53-64
   Abstract »    Full Text »    PDF »
Histone H2A.Z is essential for estrogen receptor signaling.
N. Gevry, S. Hardy, P.-E. Jacques, L. Laflamme, A. Svotelis, F. Robert, and L. Gaudreau (2009)
Genes & Dev. 23, 1522-1533
   Abstract »    Full Text »    PDF »
Mig-6 modulates uterine steroid hormone responsiveness and exhibits altered expression in endometrial disease.
J.-W. Jeong, H. S. Lee, K. Y. Lee, L. D. White, R. R. Broaddus, Y.-W. Zhang, G. F. Vande Woude, L. C. Giudice, S. L. Young, B. A. Lessey, et al. (2009)
PNAS 106, 8677-8682
   Abstract »    Full Text »    PDF »
Steroid receptor coactivator-1 is necessary for regulation of corticotropin-releasing hormone by chronic stress and glucocorticoids.
S. Lachize, E. M. Apostolakis, S. van der Laan, A. M. I. Tijssen, J. Xu, E. R. de Kloet, and O. C. Meijer (2009)
PNAS 106, 8038-8042
   Abstract »    Full Text »    PDF »
CCDC62/ERAP75 functions as a coactivator to enhance estrogen receptor beta-mediated transactivation and target gene expression in prostate cancer cells.
M. Chen, J. Ni, H.-C. Chang, C.-Y. Lin, M. Muyan, and S. Yeh (2009)
Carcinogenesis 30, 841-850
   Abstract »    Full Text »    PDF »
The Cell Fate Determination Factor Dachshund Inhibits Androgen Receptor Signaling and Prostate Cancer Cellular Growth.
K. Wu, S. Katiyar, A. Witkiewicz, A. Li, P. McCue, L.-N. Song, L. Tian, M. Jin, and R. G. Pestell (2009)
Cancer Res. 69, 3347-3355
   Abstract »    Full Text »    PDF »
A Phosphomimetic Mutation at Threonine-57 Abolishes Transactivation Activity and Alters Nuclear Localization Pattern of Human Pregnane X Receptor.
S. R. Pondugula, C. Brimer-Cline, J. Wu, E. G. Schuetz, R. K. Tyagi, and T. Chen (2009)
Drug Metab. Dispos. 37, 719-730
   Abstract »    Full Text »    PDF »
Dax-1 and Steroid Receptor RNA Activator (SRA) Function as Transcriptional Coactivators for Steroidogenic Factor 1 in Steroidogenesis.
B. Xu, W.-H. Yang, I. Gerin, C.-D. Hu, G. D. Hammer, and R. J. Koenig (2009)
Mol. Cell. Biol. 29, 1719-1734
   Abstract »    Full Text »    PDF »
Up-regulation of Nuclear Receptor Corepressor (NCoR) in Progestin-induced Growth Suppression of Endometrial Hyperplasia and Carcinoma.
H. KASHIMA, A. HORIUCHI, J. UCHIKAWA, T. MIYAMOTO, A. SUZUKI, T. ASHIDA, I. KONISHI, and T. SHIOZAWA (2009)
Anticancer Res 29, 1023-1029
   Abstract »    Full Text »    PDF »
Deleted in Breast Cancer 1, a Novel Androgen Receptor (AR) Coactivator That Promotes AR DNA-binding Activity.
J. Fu, J. Jiang, J. Li, S. Wang, G. Shi, Q. Feng, E. White, J. Qin, and J. Wong (2009)
J. Biol. Chem. 284, 6832-6840
   Abstract »    Full Text »    PDF »
Corepressive Action of CBP on Androgen Receptor Transactivation in Pericentric Heterochromatin in a Drosophila Experimental Model System.
Y. Zhao, K.-i. Takeyama, S. Sawatsubashi, S. Ito, E. Suzuki, K. Yamagata, M. Tanabe, S. Kimura, S. Fujiyama, T. Ueda, et al. (2009)
Mol. Cell. Biol. 29, 1017-1034
   Abstract »    Full Text »    PDF »
A Century of Deciphering the Control Mechanisms of Sex Steroid Action in Breast and Prostate Cancer: The Origins of Targeted Therapy and Chemoprevention.
V. C. Jordan (2009)
Cancer Res. 69, 1243-1254
   Abstract »    Full Text »    PDF »
A Selective Peroxisome Proliferator-Activated Receptor-{gamma} Modulator, Telmisartan, Binds to the Receptor in a Different Fashion from Thiazolidinediones.
T. Tagami, H. Yamamoto, K. Moriyama, K. Sawai, T. Usui, A. Shimatsu, and M. Naruse (2009)
Endocrinology 150, 862-870
   Abstract »    Full Text »    PDF »
Directed evolution of estrogen receptor proteins with altered ligand-binding specificities.
K. M. D. Islam, M. Dilcher, C. Thurow, C. Vock, I. K. Krimmelbein, L. F. Tietze, V. Gonzalez, H. Zhao, and C. Gatz (2009)
Protein Eng. Des. Sel. 22, 45-52
   Abstract »    Full Text »    PDF »
Differential effects of vitamin D receptor activators on aortic calcification and pulse wave velocity in uraemic rats.
W. Noonan, K. Koch, M. Nakane, J. Ma, D. Dixon, A. Bolin, and G. Reinhart (2008)
Nephrol. Dial. Transplant. 23, 3824-3830
   Abstract »    Full Text »    PDF »
Molecular Cloning and Characterization of the Human PED/PEA-15 Gene Promoter Reveal Antagonistic Regulation by Hepatocyte Nuclear Factor 4{alpha} and Chicken Ovalbumin Upstream Promoter Transcription Factor II.
P. Ungaro, R. Teperino, P. Mirra, A. Cassese, F. Fiory, G. Perruolo, C. Miele, M. Laakso, P. Formisano, and F. Beguinot (2008)
J. Biol. Chem. 283, 30970-30979
   Abstract »    Full Text »    PDF »
The AIB1 Oncogene Promotes Breast Cancer Metastasis by Activation of PEA3-Mediated Matrix Metalloproteinase 2 (MMP2) and MMP9 Expression.
L. Qin, L. Liao, A. Redmond, L. Young, Y. Yuan, H. Chen, B. W. O'Malley, and J. Xu (2008)
Mol. Cell. Biol. 28, 5937-5950
   Abstract »    Full Text »    PDF »
Steroid Receptor Coactivator-1 from Brain Physically Interacts Differentially with Steroid Receptor Subtypes.
H. A. Molenda-Figueira, S. D. Murphy, K. L. Shea, N. K. Siegal, Y. Zhao, J. G. Chadwick Jr., L. A. Denner, and M. J. Tetel (2008)
Endocrinology 149, 5272-5279
   Abstract »    Full Text »    PDF »
Hepatic regulation of fatty acid synthase by insulin and T3: evidence for T3 genomic and nongenomic actions.
A. Radenne, M. Akpa, C. Martel, S. Sawadogo, D. Mauvoisin, and C. Mounier (2008)
Am J Physiol Endocrinol Metab 295, E884-E894
   Abstract »    Full Text »    PDF »
Triiodothyronine utilizes phosphatidylinositol 3-kinase pathway to activate anti-apoptotic myeloid cell leukemia-1.
M. Pietrzak and M. Puzianowska-Kuznicka (2008)
J. Mol. Endocrinol. 41, 177-186
   Abstract »    Full Text »    PDF »
Recruitment of Coactivator Glucocorticoid Receptor Interacting Protein 1 to an Estrogen Receptor Transcription Complex Is Regulated by the 3',5'-Cyclic Adenosine 5'-Monophosphate-Dependent Protein Kinase.
I. S. Fenne, T. Hoang, M. Hauglid, J. V. Sagen, E. A. Lien, and G. Mellgren (2008)
Endocrinology 149, 4336-4345
   Abstract »    Full Text »    PDF »
Interaction and Functional Interference of Glucocorticoid Receptor and SOCS1.
M. C. Haffner, A. Jurgeit, C. Berlato, S. Geley, N. Parajuli, A. Yoshimura, and W. Doppler (2008)
J. Biol. Chem. 283, 22089-22096
   Abstract »    Full Text »    PDF »
Review: PPARs as new therapeutic targets for the treatment of cerebral ischemia/reperfusion injury.
M. Collino, N. S.A. Patel, and C. Thiemermann (2008)
Therapeutic Advances in Cardiovascular Disease 2, 179-197
   Abstract »    PDF »
Components of the CCR4-NOT Complex Function as Nuclear Hormone Receptor Coactivators via Association with the NRC-interacting Factor NIF-1.
S. Garapaty, M. A. Mahajan, and H. H. Samuels (2008)
J. Biol. Chem. 283, 6806-6816
   Abstract »    Full Text »    PDF »
Phosphorylation of the Human Retinoid X Receptor {alpha} at Serine 260 Impairs Coactivator(s) Recruitment and Induces Hormone Resistance to Multiple Ligands.
M. Macoritto, L. Nguyen-Yamamoto, D. C. Huang, S. Samuel, X. F. Yang, T. T. Wang, J. H. White, and R. Kremer (2008)
J. Biol. Chem. 283, 4943-4956
   Abstract »    Full Text »    PDF »
Nuclear Receptors and Female Reproduction: A Tale of 3 Scientists, Jensen, Gustafsson, and O'Malley.
G. Chaudhuri (2008)
Reproductive Sciences 15, 110-120
   Abstract »    PDF »
Selective Estrogen-Receptor Modulators and Antihormonal Resistance in Breast Cancer.
V. C. Jordan and B. W. O'Malley (2007)
J. Clin. Oncol. 25, 5815-5824
   Abstract »    Full Text »    PDF »
Androgen Receptor (AR) Coregulators: A Diversity of Functions Converging on and Regulating the AR Transcriptional Complex.
H. V. Heemers and D. J. Tindall (2007)
Endocr. Rev. 28, 778-808
   Abstract »    Full Text »    PDF »
Structural Characterization of the Human Androgen Receptor Ligand-binding Domain Complexed with EM5744, a Rationally Designed Steroidal Ligand Bearing a Bulky Chain Directed toward Helix 12.
L. Cantin, F. Faucher, J.-F. Couture, K. P. de Jesus-Tran, P. Legrand, L. C. Ciobanu, Y. Frechette, R. Labrecque, S. M. Singh, F. Labrie, et al. (2007)
J. Biol. Chem. 282, 30910-30919
   Abstract »    Full Text »    PDF »
Regulation of SRC-3 Intercompartmental Dynamics by Estrogen Receptor and Phosphorylation.
L. Amazit, L. Pasini, A. T. Szafran, V. Berno, R.-C. Wu, M. Mielke, E. D. Jones, M. G. Mancini, C. A. Hinojos, B. W. O'Malley, et al. (2007)
Mol. Cell. Biol. 27, 6913-6932
   Abstract »    Full Text »    PDF »
The p160 Steroid Receptor Coactivator 2, SRC-2, Regulates Murine Endometrial Function and Regulates Progesterone-Independent and -Dependent Gene Expression.
J.-W. Jeong, K. Y. Lee, S. J. Han, B. J. Aronow, J. P. Lydon, B. W. O'Malley, and F. J. DeMayo (2007)
Endocrinology 148, 4238-4250
   Abstract »    Full Text »    PDF »
Nuclear Receptor Coregulators and Human Disease.
D. M. Lonard, R. B. Lanz, and B. W. O'Malley (2007)
Endocr. Rev. 28, 575-587
   Abstract »    Full Text »    PDF »
Sirtuin 1 Is Required for Antagonist-Induced Transcriptional Repression of Androgen-Responsive Genes by the Androgen Receptor.
Y. Dai, D. Ngo, L. W. Forman, D. C. Qin, J. Jacob, and D. V. Faller (2007)
Mol. Endocrinol. 21, 1807-1821
   Abstract »    Full Text »    PDF »
Nuclear Receptor Coregulator (NRC): Mapping of the Dimerization Domain, Activation of p53 and STAT-2, and Identification of the Activation Domain AD2 Necessary for Nuclear Receptor Signaling.
M. A. Mahajan, A. Murray, D. Levy, and H. H. Samuels (2007)
Mol. Endocrinol. 21, 1822-1834
   Abstract »    Full Text »    PDF »
Interaction of estrogen receptor {alpha} with proliferating cell nuclear antigen.
J. R. Schultz-Norton, V. A. Gabisi, Y. S. Ziegler, I. X. McLeod, J. R. Yates, and A. M. Nardulli (2007)
Nucleic Acids Res. 35, 5028-5038
   Abstract »    Full Text »    PDF »
Direct Regulation of Androgen Receptor-Associated Protein 70 by Thyroid Hormone and Its Receptors.
P.-J. Tai, Y.-H. Huang, C.-H. Shih, R.-N. Chen, C.-D. Chen, W.-J. Chen, C.-S. Wang, and K.-H. Lin (2007)
Endocrinology 148, 3485-3495
   Abstract »    Full Text »    PDF »
Loss-of-Function Deletion of the Steroid Receptor Coactivator-1 Gene in Mice Reduces Estrogen Effect on the Vascular Injury Response.
Y. Yuan and J. Xu (2007)
Arterioscler Thromb Vasc Biol 27, 1521-1527
   Abstract »    Full Text »    PDF »
Aberrant Association of Promyelocytic Leukemia Protein-Retinoic Acid Receptor-{alpha} with Coactivators Contributes to Its Ability to Regulate Gene Expression.
E. L. Reineke, H. Liu, M. Lam, Y. Liu, and H.-Y. Kao (2007)
J. Biol. Chem. 282, 18584-18596
   Abstract »    Full Text »    PDF »
Novel Perspectives for Progesterone in Hormone Replacement Therapy, with Special Reference to the Nervous System.
M. Schumacher, R. Guennoun, A. Ghoumari, C. Massaad, F. Robert, M. El-Etr, Y. Akwa, K. Rajkowski, and E.-E. Baulieu (2007)
Endocr. Rev. 28, 387-439
   Abstract »    Full Text »    PDF »
Coregulators: From Whence Came These "Master Genes".
B. W. O'Malley (2007)
Mol. Endocrinol. 21, 1009-1013
   Abstract »    Full Text »    PDF »
Contrasting Effects of Two Alternative Splicing Forms of Coactivator-Associated Arginine Methyltransferase 1 on Thyroid Hormone Receptor-Mediated Transcription in Xenopus laevis.
H. Matsuda, B. D. Paul, C. Y. Choi, and Y.-B. Shi (2007)
Mol. Endocrinol. 21, 1082-1094
   Abstract »    Full Text »    PDF »
Evidence for 1,25-Dihydroxyvitamin D3-independent Transactivation by the Vitamin D Receptor: UNCOUPLING THE RECEPTOR AND LIGAND IN KERATINOCYTES.
T. I. Ellison, R. L. Eckert, and P. N. MacDonald (2007)
J. Biol. Chem. 282, 10953-10962
   Abstract »    Full Text »    PDF »
Identification of Regions within the F Domain of the Human Estrogen Receptor {alpha} that Are Important for Modulating Transactivation and Protein-Protein Interactions.
A. Koide, C. Zhao, M. Naganuma, J. Abrams, S. Deighton-Collins, D. F. Skafar, and S. Koide (2007)
Mol. Endocrinol. 21, 829-842
   Abstract »    Full Text »    PDF »
SRC-p300 Coactivator Complex Is Required for Thyroid Hormone-induced Amphibian Metamorphosis.
B. D. Paul, D. R. Buchholz, L. Fu, and Y.-B. Shi (2007)
J. Biol. Chem. 282, 7472-7481
   Abstract »    Full Text »    PDF »
Antithyroid Drugs Inhibit Thyroid Hormone Receptor-Mediated Transcription.
K. Moriyama, T. Tagami, T. Usui, M. Naruse, T. Nambu, Y. Hataya, N. Kanamoto, Y.-s. Li, A. Yasoda, H. Arai, et al. (2007)
J. Clin. Endocrinol. Metab. 92, 1066-1072
   Abstract »    Full Text »    PDF »
Suppression of Androgen Receptor Transactivation and Prostate Cancer Cell Growth by Heterogeneous Nuclear Ribonucleoprotein A1 via Interaction with Androgen Receptor Coregulator ARA54.
Z. Yang, Y.-J. Chang, H. Miyamoto, S. Yeh, J. L. Yao, P. A. di Sant'Agnese, M.-Y. Tsai, and C. Chang (2007)
Endocrinology 148, 1340-1349
   Abstract »    Full Text »    PDF »
Determining the stoichiometry of protein heterocomplexes in living cells with fluorescence fluctuation spectroscopy.
Y. Chen and J. D. Muller (2007)
PNAS 104, 3147-3152
   Abstract »    Full Text »    PDF »
STAMP, a Novel Predicted Factor Assisting TIF2 Actions in Glucocorticoid Receptor-Mediated Induction and Repression.
Y. He and S. S. Simons Jr. (2007)
Mol. Cell. Biol. 27, 1467-1485
   Abstract »    Full Text »    PDF »
Specific Amino Acid Residues in the Basic Helix-Loop-Helix Domain of SRC-3 Are Essential for Its Nuclear Localization and Proteasome-Dependent Turnover.
C. Li, R.-C. Wu, L. Amazit, S. Y. Tsai, M.-J. Tsai, and B. W. O'Malley (2007)
Mol. Cell. Biol. 27, 1296-1308
   Abstract »    Full Text »    PDF »
Transgelin Functions as a Suppressor via Inhibition of ARA54-Enhanced Androgen Receptor Transactivation and Prostate Cancer Cell Growth.
Z. Yang, Y.-J. Chang, H. Miyamoto, J. Ni, Y. Niu, Z. Chen, Y.-L. Chen, J. L. Yao, P. A. di Sant'Agnese, and C. Chang (2007)
Mol. Endocrinol. 21, 343-358
   Abstract »    Full Text »    PDF »
Coactivation of the N-terminal Transactivation of Mineralocorticoid Receptor by Ubc9.
K. Yokota, H. Shibata, I. Kurihara, S. Kobayashi, N. Suda, A. Murai-Takeda, I. Saito, H. Kitagawa, S. Kato, T. Saruta, et al. (2007)
J. Biol. Chem. 282, 1998-2010
   Abstract »    Full Text »    PDF »
The Multiple Facets of Per2.
U. Albrecht, A. Bordon, I. Schmutz, and J. Ripperger (2007)
Cold Spring Harb Symp Quant Biol 72, 95-104
   Abstract »    PDF »
Focal Subnuclear Distribution of Progesterone Receptor Is Ligand Dependent and Associated with Transcriptional Activity.
R. L. Arnett-Mansfield, J. D. Graham, A. R. Hanson, P. A. Mote, A. Gompel, L. L. Scurr, N. Gava, A. de Fazio, and C. L. Clarke (2007)
Mol. Endocrinol. 21, 14-29
   Abstract »    Full Text »    PDF »
International Union of Pharmacology. LX. Retinoic Acid Receptors.
P. Germain, P. Chambon, G. Eichele, R. M. Evans, M. A. Lazar, M. Leid, A. R. De Lera, R. Lotan, D. J. Mangelsdorf, and H. Gronemeyer (2006)
Pharmacol. Rev. 58, 712-725
   Abstract »    Full Text »    PDF »
International Union of Pharmacology. LXIII. Retinoid X Receptors.
P. Germain, P. Chambon, G. Eichele, R. M. Evans, M. A. Lazar, M. Leid, A. R. De Lera, R. Lotan, D. J. Mangelsdorf, and H. Gronemeyer (2006)
Pharmacol. Rev. 58, 760-772
   Abstract »    Full Text »    PDF »
International Union of Pharmacology. LXV. The Pharmacology and Classification of the Nuclear Receptor Superfamily: Glucocorticoid, Mineralocorticoid, Progesterone, and Androgen Receptors.
N. Z. Lu, S. E. Wardell, K. L. Burnstein, D. Defranco, P. J. Fuller, V. Giguere, R. B. Hochberg, L. McKay, J.-M. Renoir, N. L. Weigel, et al. (2006)
Pharmacol. Rev. 58, 782-797
   Full Text »    PDF »
Signaling within a Coactivator Complex: Methylation of SRC-3/AIB1 Is a Molecular Switch for Complex Disassembly.
Q. Feng, P. Yi, J. Wong, and B. W. O'Malley (2006)
Mol. Cell. Biol. 26, 7846-7857
   Abstract »    Full Text »    PDF »
Turning Off Estrogen Receptor {beta}-Mediated Transcription Requires Estrogen-Dependent Receptor Proteolysis.
Y. Tateishi, R. Sonoo, Y.-i. Sekiya, N. Sunahara, M. Kawano, M. Wayama, R. Hirota, Y.-i. Kawabe, A. Murayama, S. Kato, et al. (2006)
Mol. Cell. Biol. 26, 7966-7976
   Abstract »    Full Text »    PDF »
Gene Control by Large Noncoding RNAs.
I. Shamovsky and E. Nudler (2006)
Sci. STKE 2006, pe40
   Abstract »    Full Text »    PDF »
WW Domain Binding Protein-2, an E6-Associated Protein Interacting Protein, Acts as a Coactivator of Estrogen and Progesterone Receptors.
S. C. Dhananjayan, S. Ramamoorthy, O. Y. Khan, A. Ismail, J. Sun, J. Slingerland, B. W. O'Malley, and Z. Nawaz (2006)
Mol. Endocrinol. 20, 2343-2354
   Abstract »    Full Text »    PDF »
Estrogen Receptor Isoform-specific Regulation of the Retinoblastoma-binding Protein 1 (RBBP1) Gene: ROLES OF AF1 AND ENHANCER ELEMENTS.
D. G. Monroe, F. J. Secreto, J. R. Hawse, M. Subramaniam, S. Khosla, and T. C. Spelsberg (2006)
J. Biol. Chem. 281, 28596-28604
   Abstract »    Full Text »    PDF »
Human PIRH2 Enhances Androgen Receptor Signaling through Inhibition of Histone Deacetylase 1 and Is Overexpressed in Prostate Cancer..
I. R. Logan, L. Gaughan, S. R. C. McCracken, V. Sapountzi, H. Y. Leung, and C. N. Robson (2006)
Mol. Cell. Biol. 26, 6502-6510
   Abstract »    Full Text »    PDF »
Male Germ Cell-Associated Kinase, a Male-Specific Kinase Regulated by Androgen, Is a Coactivator of Androgen Receptor in Prostate Cancer Cells..
A.-H. Ma, L. Xia, S. J. Desai, D. L. Boucher, Y. Guan, H.-M. Shih, X.-B. Shi, R. W. deVere White, H.-W. Chen, C. G. Tepper, et al. (2006)
Cancer Res. 66, 8439-8447
   Abstract »    Full Text »    PDF »
Ligand-Controlled Interaction of Histone Acetyltransferase Binding to ORC-1 (HBO1) with the N-Terminal Transactivating Domain of Progesterone Receptor Induces Steroid Receptor Coactivator 1-Dependent Coactivation of Transcription.
M. Georgiakaki, N. Chabbert-Buffet, B. Dasen, G. Meduri, S. Wenk, L. Rajhi, L. Amazit, A. Chauchereau, C. W. Burger, L. J. Blok, et al. (2006)
Mol. Endocrinol. 20, 2122-2140
   Abstract »    Full Text »    PDF »
The N-Terminal A/B Domain of the Thyroid Hormone Receptor-{beta}2 Isoform Influences Ligand-Dependent Recruitment of Coactivators to the Ligand-Binding Domain.
H. Tian, M. A. Mahajan, C. T. Wong, I. Habeos, and H. H. Samuels (2006)
Mol. Endocrinol. 20, 2036-2051
   Abstract »    Full Text »    PDF »
Protein Disulfide Isomerase Serves as a Molecular Chaperone to Maintain Estrogen Receptor {alpha} Structure and Function.
J. R. Schultz-Norton, W. H. McDonald, J. R. Yates, and A. M. Nardulli (2006)
Mol. Endocrinol. 20, 1982-1995
   Abstract »    Full Text »    PDF »
AIB1 Promotes DNA Replication by JNK Repression and AKT Activation during Cellular Stress.
K. Horiguchi, S. Arai, T. Nishihara, and J.-i. Nishikawa (2006)
J. Biochem. 140, 409-419
   Abstract »    Full Text »    PDF »
Coordinated Regulation of AIB1 Transcriptional Activity by Sumoylation and Phosphorylation.
H. Wu, L. Sun, Y. Zhang, Y. Chen, B. Shi, R. Li, Y. Wang, J. Liang, D. Fan, G. Wu, et al. (2006)
J. Biol. Chem. 281, 21848-21856
   Abstract »    Full Text »    PDF »
Thyroid hormone receptors TR{alpha}1 and TR{beta} differentially regulate gene expression of Kcnq4 and prestin during final differentiation of outer hair cells.
H. Winter, C. Braig, U. Zimmermann, H.-S. Geisler, J.-T. Franzer, T. Weber, M. Ley, J. Engel, M. Knirsch, K. Bauer, et al. (2006)
J. Cell Sci. 119, 2975-2984
   Abstract »    Full Text »    PDF »
Human papillomavirus e7 oncoprotein dysregulates steroid receptor coactivator 1 localization and function..
A. Baldwin, K.-W. Huh, and K. Munger (2006)
J. Virol. 80, 6669-6677
   Abstract »    Full Text »    PDF »
Multitasking C2H2 Zinc Fingers Link Zac DNA Binding to Coordinated Regulation of p300-Histone Acetyltransferase Activity..
A. Hoffmann, T. Barz, and D. Spengler (2006)
Mol. Cell. Biol. 26, 5544-5557
   Abstract »    Full Text »    PDF »
Induction of Type 1 Iodothyronine Deiodinase to Prevent the Nonthyroidal Illness Syndrome in Mice.
J. Yu and R. J. Koenig (2006)
Endocrinology 147, 3580-3585
   Abstract »    Full Text »    PDF »
p38 Mitogen-Activated Protein Kinase Stimulates Estrogen-Mediated Transcription and Proliferation through the Phosphorylation and Potentiation of the p160 Coactivator Glucocorticoid Receptor-Interacting Protein 1.
D. E. Frigo, A. Basu, E. N. Nierth-Simpson, C. B. Weldon, C. M. Dugan, S. Elliott, B. M. Collins-Burow, V. A. Salvo, Y. Zhu, L. I. Melnik, et al. (2006)
Mol. Endocrinol. 20, 971-983
   Abstract »    Full Text »    PDF »
Switching of NR5A Proteins Associated with the Inhibin {alpha}-Subunit Gene Promoter after Activation of the Gene in Granulosa Cells.
J. Weck and K. E. Mayo (2006)
Mol. Endocrinol. 20, 1090-1103
   Abstract »    Full Text »    PDF »
The Genomic Analysis of the Impact of Steroid Receptor Coactivators Ablation on Hepatic Metabolism.
J.-W. Jeong, I. Kwak, K. Y. Lee, L. D. White, X.-P. Wang, F. C. Brunicardi, B. W. O'Malley, and F. J. DeMayo (2006)
Mol. Endocrinol. 20, 1138-1152
   Abstract »    Full Text »    PDF »
Vitamin D Receptor Agonists Specifically Modulate the Volume of the Ligand-binding Pocket.
F. Molnar, M. Perakyla, and C. Carlberg (2006)
J. Biol. Chem. 281, 10516-10526
   Abstract »    Full Text »    PDF »
Identification and characterization of RanBPM, a novel coactivator of thyroid hormone receptors..
M.-B. Poirier, L. Laflamme, and M.-F. Langlois (2006)
J. Mol. Endocrinol. 36, 313-325
   Abstract »    Full Text »    PDF »
MED14 and MED1 Differentially Regulate Target-Specific Gene Activation by the Glucocorticoid Receptor.
W. Chen, I. Rogatsky, and M. J. Garabedian (2006)
Mol. Endocrinol. 20, 560-572
   Abstract »    Full Text »    PDF »
Thyroid Hormone-Regulated Target Genes Have Distinct Patterns of Coactivator Recruitment and Histone Acetylation.
Y. Liu, X. Xia, J. D. Fondell, and P. M. Yen (2006)
Mol. Endocrinol. 20, 483-490
   Abstract »    Full Text »    PDF »
The Interaction of TR{beta}1-N Terminus with Steroid Receptor Coactivator-1 (SRC-1) Serves a Full Transcriptional Activation Function of SRC-1.
T. Iwasaki, A. Takeshita, W. Miyazaki, W. W. Chin, and N. Koibuchi (2006)
Endocrinology 147, 1452-1457
   Abstract »    Full Text »    PDF »
Differential Recruitment of p160 Coactivators by Glucocorticoid Receptor between Schwann Cells and Astrocytes.
J. Grenier, A. Trousson, A. Chauchereau, J. Cartaud, M. Schumacher, and C. Massaad (2006)
Mol. Endocrinol. 20, 254-267
   Abstract »    Full Text »    PDF »
An hGCN5/TRRAP Histone Acetyltransferase Complex Co-activates BRCA1 Transactivation Function through Histone Modification.
H. Oishi, H. Kitagawa, O. Wada, S. Takezawa, L. Tora, M. Kouzu-Fujita, I. Takada, T. Yano, J. Yanagisawa, and S. Kato (2006)
J. Biol. Chem. 281, 20-26
   Abstract »    Full Text »    PDF »
Mechanism of Action of Hic-5/Androgen Receptor Activator 55, a LIM Domain-Containing Nuclear Receptor Coactivator.
M. D Heitzer and D. B. DeFranco (2006)
Mol. Endocrinol. 20, 56-64
   Abstract »    Full Text »    PDF »
Adrenocorticotropic Hormone-Mediated Signaling Cascades Coordinate a Cyclic Pattern of Steroidogenic Factor 1-Dependent Transcriptional Activation.
J. N. Winnay and G. D. Hammer (2006)
Mol. Endocrinol. 20, 147-166
   Abstract »    Full Text »    PDF »
Discovery of Small Molecule Inhibitors of the Interaction of the Thyroid Hormone Receptor with Transcriptional Coregulators.
L. A. Arnold, E. Estebanez-Perpina, M. Togashi, N. Jouravel, A. Shelat, A. C. McReynolds, E. Mar, P. Nguyen, J. D. Baxter, R. J. Fletterick, et al. (2005)
J. Biol. Chem. 280, 43048-43055
   Abstract »    Full Text »    PDF »
Role of aspartate 351 in transactivation and active conformation of estrogen receptor {alpha}.
J. H. Kim, M. H. Lee, B. J. Kim, J. H. Kim, S. J. Han, H. Y. Kim, and M. R Stallcup (2005)
J. Mol. Endocrinol. 35, 449-464
   Abstract »    Full Text »    PDF »
Coregulators in Nuclear Estrogen Receptor Action: From Concept to Therapeutic Targeting.
J. M. Hall and D. P. McDonnell (2005)
Mol. Interv. 5, 343-357
   Abstract »    Full Text »    PDF »
The Nuclear Xenobiotic Receptor Pregnane X Receptor: Recent Insights and New Challenges.
J. Orans, D. G. Teotico, and M. R. Redinbo (2005)
Mol. Endocrinol. 19, 2891-2900
   Abstract »    Full Text »    PDF »
Repressive domain of unliganded human estrogen receptor {alpha} associates with Hsc70.
S. Ogawa, H. Oishi, Y. Mezaki, M. Kouzu-Fujita, R. Matsuyama, M. Nakagomi, E. Mori, E. Murayama, H. Nagasawa, H. Kitagawa, et al. (2005)
Genes Cells 10, 1095-1102
   Abstract »    Full Text »    PDF »
Peptidyl-Prolyl Isomerase 1 (Pin1) Serves as a Coactivator of Steroid Receptor by Regulating the Activity of Phosphorylated Steroid Receptor Coactivator 3 (SRC-3/AIB1).
P. Yi, R.-C. Wu, J. Sandquist, J. Wong, S. Y. Tsai, M.-J. Tsai, A. R. Means, and B. W. O'Malley (2005)
Mol. Cell. Biol. 25, 9687-9699
   Abstract »    Full Text »    PDF »
Effects of 2,4-D and DCP on the DHT-Induced Androgenic Action in Human Prostate Cancer Cells.
H.-J. Kim, Y. I. Park, and M.-S. Dong (2005)
Toxicol. Sci. 88, 52-59
   Abstract »    Full Text »    PDF »
Suppression of Death Receptor-mediated Apoptosis by 1,25-Dihydroxyvitamin D3 Revealed by Microarray Analysis.
X. Zhang, P. Li, J. Bao, S. V. Nicosia, H. Wang, S. A. Enkemann, and W. Bai (2005)
J. Biol. Chem. 280, 35458-35468
   Abstract »    Full Text »    PDF »
Differential expression of p160 steroid receptor coactivators in the rat testis and epididymis.
J. Igarashi-Migitaka, A. Takeshita, N. Koibuchi, S. Yamada, R. Ohtani-Kaneko, and K. Hirata (2005)
Eur. J. Endocrinol. 153, 595-604
   Abstract »    Full Text »    PDF »
Development of Peptide Antagonists for the Androgen Receptor Using Combinatorial Peptide Phage Display.
C.-y. Chang, J. Abdo, T. Hartney, and D. P. McDonnell (2005)
Mol. Endocrinol. 19, 2478-2490
   Abstract »    Full Text »    PDF »
Proteomic Analysis of Steady-State Nuclear Hormone Receptor Coactivator Complexes.
S. Y. Jung, A. Malovannaya, J. Wei, B. W. O'Malley, and J. Qin (2005)
Mol. Endocrinol. 19, 2451-2465
   Abstract »    Full Text »    PDF »
Dynamic Cell Type Specificity of SRC-1 Coactivator in Modulating Uterine Progesterone Receptor Function in Mice.
S. J. Han, J. Jeong, F. J. DeMayo, J. Xu, S. Y. Tsai, M.-J. Tsai, and B. W. O'Malley (2005)
Mol. Cell. Biol. 25, 8150-8165
   Abstract »    Full Text »    PDF »



To Advertise     Find Products


Science. ISSN 0036-8075 (print), 1095-9203 (online)