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Androgen and Glucocorticoid Receptor Heterodimer Formation

Journal of Biological ChemistryPublished 1 May 1997Open access
Sei-Yu Chen, Jian Wang, Gui-Qiu Yu, Weihong Liu, David Pearce
Citations199
SJR quartileQ1
SJR score1.71
SNIP1.00
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TL;DR

It is shown that coexpressed AR and GR indeed do interact at the transcriptional level and that this interaction is correlated with their ability to form heterodimers at a common DNA site, in vitro and in vivo.

Abstract

The androgen and glucocorticoid hormones elicit divergent and often opposing effects in cells, tissues, and animals. A wide range of physiological and molecular biological evidence suggests that the receptors that mediate these effects, the androgen and glucocorticoid receptors (AR and GR, respectively), influence each other's transcriptional activity. We now show that coexpressed AR and GR indeed do interact at the transcriptional level and that this interaction is correlated with their ability to form heterodimers at a common DNA site, in vitro and in vivo. Furthermore, mutants that cannot heterodimerize do not inhibit each other's activity. These observations provide the first evidence that the opposing physiological effects of the androgen and glucocorticoid hormones are due to the direct physical interaction between their receptors at the transcriptional level.

Keywords

MedicineBiochemistry, Genetics and Molecular Biology