Differential hormone-dependent transcriptional activation and -repression by naturally occurring human glucocorticoid receptor variants

被引:93
作者
deLange, P
Koper, JW
Huizenga, NATM
Brinkmann, AO
deJong, FH
Karl, M
Chrousos, GP
Lamberts, SWJ
机构
[1] ERASMUS UNIV ROTTERDAM, DEPT INTERNAL MED 3, NL-3015 GD ROTTERDAM, NETHERLANDS
[2] ERASMUS UNIV ROTTERDAM, DEPT ENDOCRINOL & REPROD, NL-3015 GD ROTTERDAM, NETHERLANDS
[3] NICHHD, DEV ENDOCRINOL BRANCH, NIH, BETHESDA, MD 20892 USA
关键词
D O I
10.1210/me.11.8.1156
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The molecular mechanisms underlying primary glucocorticoid resistance or hypersensitivity are not well understood. Using transfected COS-1 cells as a model system, we studied gene regulation by naturally occurring mutants of the glucocorticoid receptor (GR) with single-point mutations in the regions encoding the ligand-binding domain or the N-terminal domain reflecting different phenotypic expression. We analyzed the capacity of these GR variants to regulate transcription from different promoters, either by binding directly to positive or negative glucocorticoid-response elements on the DNA or by interfering with protein-protein interactions. Decreased dexamethasone (DEX) binding to GR variants carrying mutations in the ligand-binding domain correlated well with decreased capacity to activate transcription from the mouse mammary tumor virus (MMTV) promoter. One variant, D641V, which suboptimally activated MMTV promoter-mediated transcription, repressed a PRL promoter element containing a negative glucocorticoid-response element with wild type activity. DEX-induced repression of transcription from elements of the intercellular adhesion molecule-1 promoter via nuclear factor-KB by the D641V variant was even more efficient compared with the wild type GR. We observed a general DEX-responsive AP-1-mediated transcriptional repression of the collagenase-1 promoter, even when receptor variants did not activate transcription from the MMTV promoter. Our findings indicate that different point mutations in the GR can affect separate pathways of gene regulation in a differential fashion, which can explain the various phenotypes observed.
引用
收藏
页码:1156 / 1164
页数:9
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