Abstract
Retinoic acid receptors are ligand-dependent transcription factors that stimulate gene transcription from promoters containing retinoic acid or thyroid hormone response elements. We describe a high-affinity binding site from the rat oxytocin promoter that mediates negative transcriptional regulation by the retinoic acid receptor. To examine whether strong, constitutive transactivation domains would be capable of stimulating gene transcription when bound to this DNA binding site that normally mediates transcriptional repression, we fused the transactivation domain of the herpes simplex viral protein VP16 to the amino terminus of the retinoic acid receptor and tested the activity of the chimeric protein on the negative retinoic acid response element. This chimeric retinoic acid receptor acted as a strong, constitutive transactivator when bound to promoters containing palindromic thyroid hormone/retinoic acid response elements but surprisingly it still repressed gene transcription when bound to promoters containing the oxytocin-negative retinoic acid response element. These results suggest that a negative DNA binding site itself can inhibit the function of even potent constitutive transactivation domains, and provide evidence that tethering of a constitutive transactivation domain to DNA is insufficient to activate gene transcription.
MeSH Terms
Animals
Base Sequence
Carrier Proteins/metabolism
Cells, Cultured
Chlorocebus aethiops
DNA-Binding Proteins/metabolism
Gene Expression Regulation
Molecular Sequence Data
Nuclear Proteins/metabolism
Oligodeoxyribonucleotides/chemistry
Oxytocin/genetics
Promoter Regions, Genetic
Rats
Receptors, Retinoic Acid
Regulatory Sequences, Nucleic Acid
Transcription, Genetic
Transcriptional Activation
Tretinoin/metabolism
Chemicals
Carrier Proteins
DNA-Binding Proteins
Nuclear Proteins
Oligodeoxyribonucleotides
Receptors, Retinoic Acid
Oxytocin
Tretinoin
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Lipkin S M
Eukaryotic Regulatory Biology Program, School of Medicine, University of California, San Diego, La Jolla 92093-0648.
Nelson C A
Glass C K
Rosenfeld M G
References (25)
25 references, click to expand
-
Helix-turn-helix, zinc-finger, and leucine-zipper motifs for eukaryotic transcriptional regulatory proteins.
Trends Biochem Sci. 1989 Apr;14(4):137-40
PMID: 2499084
-
Transcriptional interference between c-Jun and the glucocorticoid receptor: mutual inhibition of DNA binding due to direct protein-protein interaction.
Cell. 1990 Sep 21;62(6):1205-15
PMID: 2169352
-
A human retinoic acid receptor which belongs to the family of nuclear receptors.
Nature. 1987 Dec 3-9;330(6147):444-50
PMID: 2825025
-
A new retinoic acid receptor identified from a hepatocellular carcinoma.
Nature. 1988 Jun 16;333(6174):669-72
PMID: 2836738
-
Retinoic acid and thyroid hormone induce gene expression through a common responsive element.
Nature. 1988 Nov 17;336(6196):262-5
PMID: 2848197
-
Activation and repression of transcription by homoeodomain-containing proteins that bind a common site.
Nature. 1988 Dec 22-29;336(6201):744-9
PMID: 2905023
-
Glucocorticoid inhibition of transcription from episomal proopiomelanocortin gene promoter.
Proc Natl Acad Sci U S A. 1986 Dec;83(23):8903-7
PMID: 3024155
-
GAL4-VP16 is an unusually potent transcriptional activator.
Nature. 1988 Oct 6;335(6190):563-4
PMID: 3047590
-
The thyroid hormone receptor binds with opposite transcriptional effects to a common sequence motif in thyroid hormone and estrogen response elements.
Cell. 1988 Jul 29;54(3):313-23
PMID: 3396073
-
A eukaryotic transcriptional activator bearing the DNA specificity of a prokaryotic repressor.
Cell. 1985 Dec;43(3 Pt 2):729-36
PMID: 3907859
-
Retinoic acid is a negative regulator of AP-1-responsive genes.
Proc Natl Acad Sci U S A. 1991 Jul 15;88(14):6092-6
PMID: 1648728
-
Transcription factor interactions: selectors of positive or negative regulation from a single DNA element.
Science. 1990 Sep 14;249(4974):1266-72
PMID: 2119054
-
Antitumor promotion and antiinflammation: down-modulation of AP-1 (Fos/Jun) activity by glucocorticoid hormone.
Cell. 1990 Sep 21;62(6):1189-204
PMID: 2169351
-
Functional antagonism between oncoprotein c-Jun and the glucocorticoid receptor.
Cell. 1990 Sep 21;62(6):1217-26
PMID: 2169353
-
Positive and negative regulation of gene transcription by a retinoic acid-thyroid hormone receptor heterodimer.
Cell. 1989 Nov 17;59(4):697-708
PMID: 2555064
-
Identification of a receptor for the morphogen retinoic acid.
Nature. 1987 Dec 17-23;330(6149):624-9
PMID: 2825036
-
Negative regulation by glucocorticoids through interference with a cAMP responsive enhancer.
Science. 1988 Jul 15;241(4863):350-3
PMID: 2838908
-
Nucleotide sequence and predicted amino acid sequence of a protein encoded in a small herpes simplex virus DNA fragment capable of trans-inducing alpha genes.
Proc Natl Acad Sci U S A. 1985 Sep;82(17):5870-4
PMID: 2994050
-
Signal transduction and transcriptional regulation by glucocorticoid receptor-LexA fusion proteins.
Science. 1988 Aug 12;241(4867):812-6
PMID: 3043662
-
How eukaryotic transcriptional activators work.
Nature. 1988 Oct 20;335(6192):683-9
PMID: 3050531
-
Critical structural elements of the VP16 transcriptional activation domain.
Science. 1991 Jan 4;251(4989):87-90
PMID: 1846049
-
The human oxytocin gene promoter is regulated by estrogens.
J Biol Chem. 1990 Apr 15;265(11):6098-103
PMID: 2108152
-
Identification of a retinoic acid responsive element in the retinoic acid receptor beta gene.
Nature. 1990 Jan 11;343(6254):177-80
PMID: 2153268
-
DNA binding-induced conformational change of the yeast transcriptional activator PRTF.
Cell. 1990 Jul 27;62(2):367-77
PMID: 2164891
-
A retinoic acid-responsive element is present in the 5' flanking region of the laminin B1 gene.
Proc Natl Acad Sci U S A. 1989 Dec;86(23):9099-103
PMID: 2556699