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Updated: Aug 10, 2026

Static Adhesion Assay for the Study of Integrin Activation in T Lymphocytes
Published on: June 13, 2014
AP-1 regulates the basal and developmentally induced transcription of the CD11c leukocyte integrin gene
C López-Rodríguez1, H C Kluin-Nelemans, A L Corbí
1Hospital of the Princesa, Madrid, Spain.
Insights
The AP-1 transcription factor complex plays a key role in regulating the expression of the CD11c/CD18 integrin, crucial for leukocyte adhesion and inflammatory responses. This finding offers potential therapeutic targets for modulating immune cell interactions.
Area of Science:
- Immunology
- Molecular Biology
- Cell Biology
Background:
- The p150,95 integrin (CD11c/CD18) is vital for leukocyte adhesion, mediating interactions during inflammation and immune responses.
- CD11c/CD18 expression is characteristic of myeloid cells and activated B lymphocytes, serving as a diagnostic marker for hairy cell leukemia.
Purpose of the Study:
- To identify transcription factors and cis-acting elements regulating CD11c/CD18 gene expression during myeloid differentiation and B lymphocyte activation.
- To elucidate the role of the AP-1 transcription factor in CD11c/CD18 regulation.
Main Methods:
- Structural and functional analysis of the CD11c gene promoter.
- Electrophoretic mobility shift assays (EMSA) to identify transcription factor binding sites.
- In vivo footprinting experiments to confirm DNA-protein interactions.
- Site-directed mutagenesis to assess promoter functionality.
Main Results:
- An AP-1 binding site (AP1-60) was identified in the CD11c promoter, with differential Fos family member binding observed in myeloid and B cells.
- The AP1-60 element is crucial for DNA-protein interactions and CD11c promoter activity, confirmed by in vivo footprinting and mutagenesis.
- Mutations in AP1-60 significantly reduced basal and PMA-induced CD11c promoter activity in U937 cells, highlighting AP-1's role in developmental regulation.
Conclusions:
- The AP-1 transcription factor complex is essential for both basal and developmentally regulated expression of the CD11c/CD18 integrin.
- Understanding AP-1's role provides insights into intracellular signaling controlling leukocyte adhesion molecules and suggests potential pharmacologic intervention strategies.
Abstract:
The p150,95 integrin (CD11c/CD18) mediates leukocyte/endothelium interactions during inflammatory reactions and certain CTL-target interactions, and is also a receptor for fibrinogen, LPS, and the complement component iC3b. CD11c/CD18 is expressed primarily on cells of the myeloid lineage and activated B lymphocytes, and is an important diagnostic marker for hairy cell leukemia. To identify the transcription factors and cis-acting elements involved in the regulated expression of CD11c/CD18 during myeloid cell differentiation and B lymphocyte activation, we have performed structural and functional analysis on the CD11c gene promoter. Electrophoretic mobility shift assays identified an AP-1 binding site (AP1-60) within the proximal promoter region and evidenced differences in the pattern of the Fos family members bound to the AP1-60 element in undifferentiated and differentiated myeloid cells, as well as between B lineage-derived cells. The involvement of the AP1-60 element in DNA-protein interactions was confirmed by means of in vivo footprinting experiments, and its functionality was demonstrated by trans activation of the CD11c promoter by c-Jun. Site-directed mutagenesis of AP1-60 greatly reduced the basal CD11c promoter activity in myeloid and B cells. Furthermore, mutations at AP1-60 inhibited the induction of the CD11c promoter activity during the PMA-triggered U937 cell differentiation, pointing out a key role for the AP-1 transcription factor complex in both the basal and the developmentally regulated expression of the p150,95 leukocyte integrin. The involvement of AP-1 in the transcription of the CD11c gene raises the possibility of altering leukocyte integrin expression by pharmacologic means and will greatly contribute to the characterization of the intracellular signals controlling the expression of leukocyte adhesion molecules.
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