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Molecular Endocrinology (Baltimore, Md.)|April 2, 2005
Cell cycle progression stimulated by tamoxifen-bound estrogen receptor-alpha and promoter-specific effects in breast cancer cells deficient in N-CoR and SMRTErika Krasnickas Keeton, Myles BrownMolecular Endocrinology (Baltimore, Md.)|April 1, 1992
The estrogenic and antiestrogenic properties of tamoxifen in GH4C1 pituitary tumor cells are gene specificJ D Shull, F E Beams, T M Baldwin, et al.Molecular Endocrinology (Baltimore, Md.)|April 1, 1992
Analysis of functional cooperativity between individual transcription-stimulating elements in the proximal region of the rat prolactin geneM C d'Emden, Y Okimura, R A MaurerMolecular Endocrinology (Baltimore, Md.)|April 16, 2005
Multiple signaling pathways regulating steroidogenesis and steroidogenic acute regulatory protein expression: more complicated than we thoughtDouglas M Stocco, XingJia Wang, Youngah Jo, et al.Molecular Endocrinology (Baltimore, Md.)|March 12, 2005
Cytochrome P450 17alpha hydroxylase/17,20 lyase (CYP17) function in cholesterol biosynthesis: identification of squalene monooxygenase (epoxidase) activity associated with CYP17 in Leydig cellsYing Liu, Zhi-Xing Yao, Vassilios PapadopoulosMolecular Endocrinology (Baltimore, Md.)|March 19, 2005
Golgi-localized, gamma-ear-containing, Arf-binding protein adaptors mediate insulin-responsive trafficking of glucose transporter 4 in 3T3-L1 adipocytesLin V Li, Konstantin V KandrorMolecular Endocrinology (Baltimore, Md.)|April 16, 2005
The modulator of nongenomic actions of the estrogen receptor (MNAR) regulates transcription-independent androgen receptor-mediated signaling: evidence that MNAR participates in G protein-regulated meiosis in Xenopus laevis oocytesDerek Haas, Stacy N White, Lindsey B Lutz, et al.Molecular Endocrinology (Baltimore, Md.)|April 16, 2005
Physiological role for the cochaperone FKBP52 in androgen receptor signalingJoyce Cheung-Flynn, Viravan Prapapanich, Marc B Cox, et al.Molecular Endocrinology (Baltimore, Md.)|February 26, 2005
The androgen receptor directly targets the cellular Fas/FasL-associated death domain protein-like inhibitory protein gene to promote the androgen-independent growth of prostate cancer cellsShen Gao, Peng Lee, Hua Wang, et al.Molecular Endocrinology (Baltimore, Md.)|July 31, 2004
Key amino acids located within the transmembrane domains 5 and 7 account for the pharmacological specificity of the human V1b vasopressin receptorS Derick, A Pena, T Durroux, et al.Pageof 558