ArticleMolecular and cellular biology1995
A dynamic balance between ARP-1/COUP-TFII, EAR-3/COUP-TFI, and retinoic acid receptor:retinoid X receptor heterodimers regulates Oct-3/4 expression in embryonal carcinoma cells.
Article in Molecular and cellular biology, 1995. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 57 papers.
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Who cites it
57 citing papers in PubMed, 153 citations in OpenAlex.
- Dissecting Oct4 enhancer function in pluripotent stem cells and mouse embryogenesis.Stem cell reports · 2025Article
- Endometrial stem/progenitor cells: Properties, origins, and functions.Genes & diseases · 2023Review
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- A Review of OCT4 Functions and Applications to Equine Embryos.Journal of equine veterinary science · 2021Review
- Article
- CARM1 (PRMT4) Acts as a Transcriptional Coactivator during Retinoic Acid-Induced Embryonic Stem Cell Differentiation.Journal of molecular biology · 2018Article
- Combinatorial knockout of RARα, RARβ, and RARγ completely abrogates transcriptional responses to retinoic acid in murine embryonic stem cells.The Journal of biological chemistry · 2018Article
- Repression of COUP-TFI Improves Bone Marrow-Derived Mesenchymal Stem Cell Differentiation into Insulin-Producing Cells.Molecular therapy. Nucleic acids · 2017Article
- Mechanisms Regulating Stemness and Differentiation in Embryonal Carcinoma Cells.Stem cells international · 2017Review
- RAR/RXR binding dynamics distinguish pluripotency from differentiation associated cis-regulatory elements.Nucleic acids research · 2015Article
- Signalling Through Retinoic Acid Receptors is Required for Reprogramming of Both Mouse Embryonic Fibroblast Cells and Epiblast Stem Cells to Induced Pluripotent Stem Cells.Stem cells (Dayton, Ohio) · 2015Article
- COUP-TFs and eye development.Biochimica et biophysica acta · 2015Review
- Genes and Conditions Controlling Mammalian Pre- and Post-implantation Embryo Development.Current genomics · 2015Article
- Activation of Six1 Expression in Vertebrate Sensory Neurons.PloS one · 2015Article
- Role of Oct4 in the early embryo development.Cell regeneration (London, England) · 2014Review
- Regulatory potential of COUP-TFs in development: stem/progenitor cells.Seminars in cell & developmental biology · 2013Review
- Polycomb recruitment attenuates retinoic acid-induced transcription of the bivalent NR2F1 gene.Nucleic acids research · 2013Article
- Minireview: the diverse roles of nuclear receptors in the regulation of embryonic stem cell pluripotency.Molecular endocrinology (Baltimore, Md.) · 2013Review
- Role of COUP-TFI during retinoic acid-induced differentiation of P19 cells to endodermal cells.Journal of cellular physiology · 2013Article
- MicroRNA-302 increases reprogramming efficiency via repression of NR2F2.Stem cells (Dayton, Ohio) · 2013Article
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Authors and funding
4 authors at 1 institution in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
The Oct-3/4 transcription factor is a member of the POU family of transcription factors and, as such, probably plays a crucial role in mammalian embryogenesis and differentiation. It is expressed in the earliest stages of embryogenesis and repressed in subsequent stages. Similarly, Oct-3/4 is expressed in embryonal carcinoma (EC) cells and is repressed in retinoic acid (RA)-differentiated EC cells. Previously we have shown that the Oct-3/4 promoter harbors an RA-responsive element, RAREoct, which functions in EC cells as a binding site for positive regulators of transcription and in RA-differentiated EC cells as a binding site for positive regulators of transcription and in RA-differentiated EC cells as a binding site for negative regulators. Our present results demonstrate that in P19 and RA-treated P19 cells, the orphan receptors ARP-1/COUP-TFII and EAR-3/COUP-TFI repress Oct-3/4 promoter activity through the RAREoct site in a dose-dependent manner. While the N-terminal region of the ARP-1/COUP-TFII receptor is dispensable for this repression, the C-terminal domain harbors the silencing region. Interestingly, three different RA receptor:retinoid X receptor (RAR:RXR) heterodimers, RAR alpha:RXR alpha, RAR beta:RXR alpha, and RAR beta:RXR beta, specifically bind and activate Oct-3/4 promoter through the RAREoct site in a ligand-dependent manner. We have shown that antagonism between ARP-1/COUP-TFII or EAR-3/COUP-TFI and the RAR:RXR heterodimers and their intracellular balance modulate Oct-3/4 expression. Oct-3/4 transcriptional repression by the orphan receptors can be overcome by increasing amounts of RAR:RXR heterodimers. Conversely, activation of Oct-3/4 promoter by RAR:RXR heterodimers was completely abolished by EAR-3/COUP-TFI and by ARP-1/COUP-TFII. The orphan receptors bind the RAREoct site with a much higher affinity than the RAR:RXR heterodimers. This high binding affinity provides ARP-1/COUP-TFII and EAR-3/COUP-TFI with the ability to compete with and even displace RAR:RXR from the RAREoct site and subsequently to actively silence the Oct-3/4 promoter. We have shown that RA treatment of EC cells results in up-regulation of ARP-1/COUP-TFII and EAR-3/COUP-TFI expression. Most interestingly, in RA-treated EC cells, the kinetics of Oct-3/4 repression inversely correlates with the kinetics of ARP-1/COUP-TFII and EAR-3/COUP-TFI activation. These findings are in accordance with the suggestion that these orphan receptors participate in controlling a network of transcription factors, among which Oct-3/4 is included, which may establish the pattern of normal gene expression during development.
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