ArticleMolecular and cellular biology1997
Regulation of K3 keratin gene transcription by Sp1 and AP-2 in differentiating rabbit corneal epithelial cells.
Article in Molecular and cellular biology, 1997. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 30 papers.
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Who cites it
30 citing papers in PubMed, 113 citations in OpenAlex.
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- Krüppel-like Factor 4 Promotes Esophageal Squamous Cell Carcinoma Differentiation by Up-regulating Keratin 13 Expression.The Journal of biological chemistry · 2015Article
- Transcriptional regulation analysis and the potential transcription regulator site in the extended KAP6.1 promoter in sheep.Molecular biology reports · 2014Article
- LGR4/GPR48 inactivation leads to aniridia-genitourinary anomalies-mental retardation syndrome defects.The Journal of biological chemistry · 2014Article
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- Ocular surface development and gene expression.Journal of ophthalmology · 2013Article
- Two regions within the proximal steroidogenic factor 1 promoter drive somatic cell-specific activity in developing gonads of the female mouse.Biology of reproduction · 2011Article
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- Chromatin immunoprecipitation on microarray analysis of Smad2/3 binding sites reveals roles of ETS1 and TFAP2A in transforming growth factor beta signaling.Molecular and cellular biology · 2009Article
- Mutations in the SOD2 promoter reveal a molecular basis for an activating protein 2-dependent dysregulation of manganese superoxide dismutase expression in cancer cells.Molecular cancer research : MCR · 2008Article
- Targeted deletion of AP-2alpha leads to disruption in corneal epithelial cell integrity and defects in the corneal stroma.Investigative ophthalmology & visual science · 2005Article
- A retroviral promoter and a cellular enhancer define a bipartite element which controls env ERVWE1 placental expression.Journal of virology · 2004Article
- A distal region of the human TGM1 promoter is required for expression in transgenic mice and cultured keratinocytes.BMC dermatology · 2004Article
- Transcription Factors Pax6 and AP-2alpha Interact To Coordinate Corneal Epithelial Repair by Controlling Expression of Matrix Metalloproteinase Gelatinase B.Molecular and cellular biology · 2004Article
- Positive influence of AP-2alpha transcription factor on cadherin gene expression and differentiation of the ocular surface.Differentiation; research in biological diversity · 2003Article
- Sp1 and AP2 regulate but do not constitute TATA-less human TAF(II)55 core promoter activity.Nucleic acids research · 2002Article
- Transcriptional regulation of the human manganese superoxide dismutase gene: the role of specificity protein 1 (Sp1) and activating protein-2 (AP-2).The Biochemical journal · 2002Article
- Differential expression of cytokeratin after orthotopic implantation of newly established human tongue cancer cell lines of defined metastatic ability.The American journal of pathology · 2000Article
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Authors and funding
4 authors at 2 institutions in 3 countries.
Funding
Abstract
Rabbit corneal epithelial cells cultured in the presence of 3T3 feeder cells undergo biochemical differentiation, as evidenced by their initial expression of K5 and K14 keratins characteristic of basal keratinocytes, followed by the subsequent expression of K3 and K12 keratin markers of corneal epithelial differentiation. Previous data established that mutations of an Sp1 site in a DNA element, E, that contains overlapping Sp1 and AP-2 motifs reduce K3 gene promoter activity by 70% in transfection assays. We show here that Sp1 activates while AP-2 represses the K3 promoter. Although undifferentiated corneal epithelial basal cells express equal amounts of Sp1 and AP-2 DNA-binding activities, the differentiated cells down-regulate their Sp1 activity slightly but their AP-2 activity drastically, thus resulting in a six- to sevenfold increase in the Sp1/AP-2 ratio. This change coincides with the activation and suppression of the differentiation-related K3 gene and the basal cell-related K14 keratin gene, respectively. In addition, we show that polyamines, which are present in a high concentration in proliferating basal keratinocytes, can inhibit the binding of Sp1 to its cognate binding motif but not that of AP-2. These results suggest that the relatively low Sp1/AP-2 ratio as well as the polyamine-mediated inhibition of Sp1 binding to the E motif may account, in part, for the suppression of the K3 gene in corneal epithelial basal cells, while the elevated Sp1/AP-2 ratio may be involved in activating the K3 gene in differentiated corneal epithelial cells. Coupled with the previous demonstration that AP-2 activates the K14 gene in basal cells, the switch of the Sp1/AP-2 ratio during corneal epithelial differentiation may play a role in the reciprocal expression of the K3 and K14 genes in the basal and suprabasal cell layers.
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