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Updated: Aug 7, 2026

Analysis of the c-KIT Ligand Promoter Using Chromatin Immunoprecipitation
Published on: June 27, 2017
CRE DNA binding proteins bind to the AP-1 target sequence and suppress AP-1 transcriptional activity in mouse
S E Rutberg1, T L Adams, M Olive
1Laboratory of Cellular Carcinogenesis and Tumor Promotion, Division of Basic Sciences, National Cancer Institute, National Institutes of Health, Bethesda, MD 20892, USA.
Abstract:
Previously, we have shown that nuclear extracts from cultured mouse keratinocytes induced to differentiate by increasing the levels of extra-cellular calcium contain Fra-1, Fra-2, Jun B, Jun D and c-Jun proteins that bind to the AP-1 DNA binding sequence. Despite this DNA binding activity, AP-1 reporter activity was suppressed in these cells. Here, we have detected the CREB family proteins CREB and CREMalpha as additional participants in the AP-1 DNA binding complex in differentiating keratinocytes. AP-1 and CRE DNA binding activity correlated with the induction of CREB, CREMalpha and ATF-1 and CREB phosphorylation at ser133 (ser133 phospho-CREB) in the transition from basal to differentiating keratinocytes, but the activity of a CRE reporter remained unchanged. In contrast, the CRE reporter was activated in the presence of the dominant-negative (DN) CREB mutants, KCREB and A-CREB, proteins that dimerize with CREB family members and block their ability to bind to DNA. The increase in CRE reporter activity in the presence of these mutants suggests that CRE-mediated transcriptional activity is suppressed in keratinocytes through protein-protein interactions involving a factor that dimerizes with the CREB leucine zipper. In experiments where the A-CREB mutant was co-transfected with an AP-1 reporter construct, transcriptional activity was also increased indicating that a CREB family member binds AP-1 sites and represses AP-1 transcriptional activity as well. Exogenous expression of the transcriptional repressor CREMalpha down-regulated both CRE and AP-1 reporters in keratinocytes suggesting that this factor may contribute to the suppression of AP-1 transcriptional activity observed in differentiating keratinocytes.
Insights
In differentiating keratinocytes, CREB and CREMalpha proteins bind AP-1 DNA sites, suppressing AP-1 activity. This CREB/CREMalpha interaction explains repressed AP-1 reporter activity during keratinocyte differentiation.
Area of Science:
- Cellular biology
- Molecular biology
- Biochemistry
Background:
- Nuclear extracts from differentiating mouse keratinocytes contain AP-1 proteins that bind DNA.
- Despite AP-1 DNA binding, AP-1 reporter activity is suppressed in these cells.
Purpose of the Study:
- To identify additional proteins in the AP-1 DNA binding complex in differentiating keratinocytes.
- To elucidate the mechanism of AP-1 transcriptional suppression during keratinocyte differentiation.
Main Methods:
- Detection of CREB family proteins (CREB, CREMalpha) in AP-1 DNA binding complexes.
- Analysis of AP-1 and CRE reporter gene activity.
- Use of dominant-negative CREB mutants (KCREB, A-CREB) to study transcriptional regulation.
- Co-transfection experiments with AP-1 reporter constructs.
- Assessment of CREMalpha's effect on CRE and AP-1 reporters.
Main Results:
- CREB and CREMalpha were identified as participants in the AP-1 DNA binding complex.
- AP-1 and CRE DNA binding activity correlated with CREB, CREMalpha, ATF-1 induction, and CREB phosphorylation.
- Dominant-negative CREB mutants activated CRE reporter activity, suggesting suppression via protein-protein interactions.
- A-CREB mutant increased AP-1 reporter activity, indicating CREB family members bind AP-1 sites and repress transcription.
- Exogenous CREMalpha downregulated both CRE and AP-1 reporters.
Conclusions:
- CREB and CREMalpha bind to AP-1 DNA sites in differentiating keratinocytes.
- CREB family members repress AP-1 transcriptional activity through protein-protein interactions.
- CREMalpha may contribute to the observed suppression of AP-1 transcriptional activity.
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