Androgen-insensitivity syndromes in 46,XY fetuses result invarious degrees of impairment in genital virilization.1 Thesesyndromes are caused by mutations in the androgen receptor genethat result in decreased binding of androgen to the receptor.2,3,4,5,6,7,8,9As a consequence, the transcriptional activity of the androgenandrogen-receptorcomplex is reduced, and therefore, genital virilization is reduced.The androgen receptor, like other steroid hormone receptors,has two major transactivation domains10 activation function1 (AF-1) in the N-terminal region11,12,13 and activation function2 (AF-2) in the C-terminal ligand-binding domain14 thatinteract with the target genes directly as well as indirectlyby means of . . . [Full Text of this Article]
Case Report
Methods
Analysis of the Androgen Receptor
Plasmid Construction and Reporter Assay
Glutathione S-Transferase Assay
Results
Characterization of the Androgen Receptor
Activation of Transcription by the Androgen Receptor, the Glucocorticoid Receptor, Their Chimeras, and the Truncated Mutants
Electrophoretic Analysis of the Molecules Interacting with the AF-1 Region of the Androgen Receptor
Discussion
Source Information
From the Department of Medicine and Bioregulatory Science, Graduate School of Medical Sciences, Kyushu University, Fukuoka (M.A., R.T., A.T., K.I., K.G., T.Y., S.I., H.N.); Core Research for Evolutional Science and Technology, Japan Science and Technology, Tokyo (R.T., K.G., T.Y., H.N.); and the Institute of Molecular and Cellular Biosciences, University of Tokyo, Tokyo (S.K.) all in Japan.
Address reprint requests to Dr. Nawata at the Department of Medicine and Bioregulatory Science, Graduate School of Medical Sciences, Kyushu University, Maidashi 3-1-1, Higashi-ku, Fukuoka 812-8582, Japan, or at nawata@intmed3.med.kyushu-u.ac.jp.
References
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Heemers, H. V., Tindall, D. J.
(2007). Androgen Receptor (AR) Coregulators: A Diversity of Functions Converging on and Regulating the AR Transcriptional Complex. Endocr. Rev.
28: 778-808
[Abstract][Full Text]
Lonard, D. M., Lanz, R. B., O'Malley, B. W.
(2007). Nuclear Receptor Coregulators and Human Disease. Endocr. Rev.
28: 575-587
[Abstract][Full Text]
Kohler, B., Delezoide, A.-L., Boizet-Bonhoure, B., McPhaul, M. J, Sultan, C., Lumbroso, S.
(2007). Coexpression of Wilms' tumor suppressor 1 (WT1) and androgen receptor (AR) in the genital tract of human male embryos and regulation of AR promoter activity by WT1. J Mol Endocrinol
38: 547-554
[Abstract][Full Text]
Kawate, H., Wu, Y., Ohnaka, K., Tao, R.-H., Nakamura, K.-i., Okabe, T., Yanase, T., Nawata, H., Takayanagi, R.
(2005). Impaired Nuclear Translocation, Nuclear Matrix Targeting, and Intranuclear Mobility of Mutant Androgen Receptors Carrying Amino Acid Substitutions in the Deoxyribonucleic Acid-Binding Domain Derived from Androgen Insensitivity Syndrome Patients. J. Clin. Endocrinol. Metab.
90: 6162-6169
[Abstract][Full Text]
Chen, G., Nomura, M., Morinaga, H., Matsubara, E., Okabe, T., Goto, K., Yanase, T., Zheng, H., Lu, J., Nawata, H.
(2005). Modulation of Androgen Receptor Transactivation by FoxH1: A NEWLY IDENTIFIED ANDROGEN RECEPTOR COREPRESSOR. J. Biol. Chem.
280: 36355-36363
[Abstract][Full Text]
Li, W., Cavasotto, C. N., Cardozo, T., Ha, S., Dang, T., Taneja, S. S., Logan, S. K., Garabedian, M. J.
(2005). Androgen Receptor Mutations Identified in Prostate Cancer and Androgen Insensitivity Syndrome Display Aberrant ART-27 Coactivator Function. Mol. Endocrinol.
19: 2273-2282
[Abstract][Full Text]
Umar, A., Berrevoets, C. A., Van, N. M., van Leeuwen, M., Verbiest, M., Kleijer, W. J., Dooijes, D., Grootegoed, J. A., Drop, S. L. S., Brinkmann, A. O.
(2005). Functional Analysis of a Novel Androgen Receptor Mutation, Q902K, in an Individual with Partial Androgen Insensitivity. J. Clin. Endocrinol. Metab.
90: 507-515
[Abstract][Full Text]
Taneja, S. S., Ha, S., Swenson, N. K., Torra, I. P., Rome, S., Walden, P. D., Huang, H. Y., Shapiro, E., Garabedian, M. J., Logan, S. K.
(2004). ART-27, an Androgen Receptor Coactivator Regulated in Prostate Development and Cancer. J. Biol. Chem.
279: 13944-13952
[Abstract][Full Text]
Chen, H., Hewison, M., Hu, B., Adams, J. S.
(2003). Heterogeneous nuclear ribonucleoprotein (hnRNP) binding to hormone response elements: A cause of vitamin D resistance. Proc. Natl. Acad. Sci. USA
100: 6109-6114
[Abstract][Full Text]
Bakin, R. E., Gioeli, D., Sikes, R. A., Bissonette, E. A., Weber, M. J.
(2003). Constitutive Activation of the Ras/Mitogen-activated Protein Kinase Signaling Pathway Promotes Androgen Hypersensitivity in LNCaP Prostate Cancer Cells. Cancer Res.
63: 1981-1989
[Abstract][Full Text]
Song, L.-N., Herrell, R., Byers, S., Shah, S., Wilson, E. M., Gelmann, E. P.
(2003). {beta}-Catenin Binds to the Activation Function 2 Region of the Androgen Receptor and Modulates the Effects of the N-Terminal Domain and TIF2 on Ligand-Dependent Transcription. Mol. Cell. Biol.
23: 1674-1687
[Abstract][Full Text]
Thangaraj, K., Joshi, M. B., Reddy, A. G., Gupta, N. J., Chakravarty, B., Singh, L.
(2002). CAG Repeat Expansion in the Androgen Receptor Gene Is Not Associated With Male Infertility in Indian Populations. J Androl
23: 815-818
[Abstract][Full Text]
Thin, T. H., Kim, E., Yeh, S., Sampson, E. R., Chen, Y.-T., Collins, L. L., Basavappa, R., Chang, C.
(2002). Mutations in the Helix 3 Region of the Androgen Receptor Abrogate ARA70 Promotion of 17beta -Estradiol-induced Androgen Receptor Transactivation. J. Biol. Chem.
277: 36499-36508
[Abstract][Full Text]
Zhao, Y., Goto, K., Saitoh, M., Yanase, T., Nomura, M., Okabe, T., Takayanagi, R., Nawata, H.
(2002). Activation Function-1 Domain of Androgen Receptor Contributes to the Interaction between Subnuclear Splicing Factor Compartment and Nuclear Receptor Compartment. IDENTIFICATION OF THE p102 U5 SMALL NUCLEAR RIBONUCLEOPROTEIN PARTICLE-BINDING PROTEIN AS A COACTIVATOR FOR THE RECEPTOR. J. Biol. Chem.
277: 30031-30039
[Abstract][Full Text]
Gelmann, E. P.
(2002). Molecular Biology of the Androgen Receptor. JCO
20: 3001-3015
[Abstract][Full Text]
Achermann, J. C., Ozisik, G., Meeks, J. J., Jameson, J. L.
(2002). Genetic Causes of Human Reproductive Disease. J. Clin. Endocrinol. Metab.
87: 2447-2454
[Full Text]
Takahashi, N., Kawada, T., Yamamoto, T., Goto, T., Taimatsu, A., Aoki, N., Kawasaki, H., Taira, K., Yokoyama, K. K., Kamei, Y., Fushiki, T.
(2002). Overexpression and Ribozyme-mediated Targeting of Transcriptional Coactivators CREB-binding Protein and p300 Revealed Their Indispensable Roles in Adipocyte Differentiation through the Regulation of Peroxisome Proliferator-activated Receptor gamma. J. Biol. Chem.
277: 16906-16912
[Abstract][Full Text]
Saitoh, M., Takayanagi, R., Goto, K., Fukamizu, A., Tomura, A., Yanase, T., Nawata, H.
(2002). The Presence of Both the Amino- and Carboxyl-Terminal Domains in the AR Is Essential for the Completion of a Transcriptionally Active Form with Coactivators and Intranuclear Compartmentalization Common to the Steroid Hormone Receptors: A Three-Dimensional Imaging Study. Mol. Endocrinol.
16: 694-706
[Abstract][Full Text]
Miyamoto, H., Rahman, M., Takatera, H., Kang, H.-Y., Yeh, S., Chang, H.-C., Nishimura, K., Fujimoto, N., Chang, C.
(2002). A Dominant-negative Mutant of Androgen Receptor Coregulator ARA54 Inhibits Androgen Receptor-mediated Prostate Cancer Growth. J. Biol. Chem.
277: 4609-4617
[Abstract][Full Text]
Markus, S. M., Taneja, S. S., Logan, S. K., Li, W., Ha, S., Hittelman, A. B., Rogatsky, I., Garabedian, M. J.
(2002). Identification and Characterization of ART-27, a Novel Coactivator for the Androgen Receptor N Terminus. Mol. Biol. Cell
13: 670-682
[Abstract][Full Text]
Hughes, I. A.
(2001). Minireview: Sex Differentiation. Endocrinology
142: 3281-3287
[Abstract][Full Text]
Thompson, J., Saatcioglu, F., Janne, O. A., Palvimo, J. J.
(2001). Disrupted Amino- and Carboxyl-Terminal Interactions of the Androgen Receptor Are Linked to Androgen Insensitivity. Mol. Endocrinol.
15: 923-935
[Abstract][Full Text]
Hughes, I. A.
(2000). A Novel Explanation for Resistance to Androgens. NEJM
343: 880-882
[Full Text]
Tomura, A., Goto, K., Morinaga, H., Nomura, M., Okabe, T., Yanase, T., Takayanagi, R., Nawata, H.
(2001). The Subnuclear Three-dimensional Image Analysis of Androgen Receptor Fused to Green Fluorescence Protein. J. Biol. Chem.
276: 28395-28401
[Abstract][Full Text]