Androgen receptor coregulators: recruitment via the coactivator binding groove.
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Androgen Receptor Structure, Function and Biology: From Bench to BedsideBiologic and clinical significance of androgen receptor variants in castration resistant prostate cancerPCA3 noncoding RNA is involved in the control of prostate-cancer cell survival and modulates androgen receptor signaling.Transcription of Nrdp1 by the androgen receptor is regulated by nuclear filamin A in prostate cancerIdentification of novel genes that regulate androgen receptor signaling and growth of androgen-deprived prostate cancer cells.Evidence for DNA-binding domain--ligand-binding domain communications in the androgen receptor.GSK-3β/NFAT Signaling Is Involved in Testosterone-Induced Cardiac Myocyte Hypertrophy.Physical association of the WC-1 photoreceptor and the histone acetyltransferase NGF-1 is required for blue light signal transduction in Neurospora crassaIn vitro androgen bioassays as a detection method for designer androgens.The role of androgen and androgen receptor in skin-related disorders.Identification of an AR Mutation-Negative Class of Androgen Insensitivity by Determining Endogenous AR Activity.Unexpected central role of the androgen receptor in the spontaneous regeneration of myelin.Androgen Receptor (AR) Gene (CAG)n and (GGN)n Length Polymorphisms and Symptoms in Young Males With Long-Lasting Adverse Effects After Finasteride Use Against Androgenic Alopecia.Food components and contaminants as (anti)androgenic molecules.Targeting transcription factor corepressors in tumor cells.Beyond the ligand-binding pocket: targeting alternate sites in nuclear receptors.Targeting alternative sites on the androgen receptor to treat castration-resistant prostate cancer.The hurdle of antiandrogen drug resistance: drug design strategies.Targeting the androgen receptor pathway in castration-resistant prostate cancer: progresses and prospectsBinding of bisphenol A, bisphenol AF, and bisphenol S on the androgen receptor: Coregulator recruitment and stimulation of potential interaction sites.Antiandrogens act as selective androgen receptor modulators at the proteome level in prostate cancer cells.SUMO ligase PIAS1 functions as a target gene selective androgen receptor coregulator on prostate cancer cell chromatin.Dissecting the roles of the androgen receptor in prostate cancer from molecular perspectives.Transcriptional mechanisms coordinating tight junction assembly during epithelial differentiation.Small-molecule hormones: molecular mechanisms of actionThe interaction between androgen receptor and semenogelin I: a synthetic LxxLL peptide antagonist inhibits the growth of prostate cancer cells.The BMP4-Smad signaling pathway regulates hyperandrogenism development in a female mouse model.DBC1 promotes castration-resistant prostate cancer by positively regulating DNA binding and stability of AR-V7.Immunolocalization of androgen receptor and estrogen receptors in skin tags.
P2860
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P2860
Androgen receptor coregulators: recruitment via the coactivator binding groove.
description
article científic
@ca
article scientifique
@fr
articol științific
@ro
articolo scientifico
@it
artigo científico
@gl
artigo científico
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artigo científico
@pt-br
artikel ilmiah
@id
artikull shkencor
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artículo científico
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name
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@en
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@nl
type
label
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@en
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@nl
prefLabel
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@en
Androgen receptor coregulators: recruitment via the coactivator binding groove.
@nl
P2093
P1476
Androgen receptor coregulators: recruitment via the coactivator binding groove
@en
P2093
Dennis J van de Wijngaart
Guido Jenster
Hendrikus Jan Dubbink
Jan Trapman
P356
10.1016/J.MCE.2011.08.007
P577
2011-08-17T00:00:00Z