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Published on: June 7, 2017
c-Myc inhibits CD11a and CD11c leukocyte integrin promoters
C López-Rodríguez1, M D Delgado, A Puig-Kröger
1Centro de Investigaciones Biológicas, CSIC, Madrid, Spain.
Abstract:
The c-Myc transcription factor is an important regulator of cell growth and differentiation, and its gene repression ability seems to play a key role in Myc-mediated cellular transformation. Since Myc overexpression has been associated with reduced expression of beta1 and beta2 integrins, we have investigated the role of c-Myc on CD11a and CD11c transcription. c-Myc inhibited CD11a and CD11c integrin promoter activity in co-transfection experiments, and similar repression was obtained in cells where c-Myc expression (KmycB) or activity (Rat-1 c-MycER) is inducible. The c-Myc repression on the CD11c promoter was independent of the USF-binding site (USF-150), other putative Myc-binding elements, or the integrity of the initiator (Inr)-like sequence present at the major transcriptional start site. Analysis of deletion and mutant promoter constructs revealed that, in the absence of additional upstream cisacting elements, an AP-1-binding site at -60 (AP1-60) is required for c-Myc repressor activity. The c-Myc repressor activity on both integrin promoters was abrogated by deletion of c-Myc residues 106-143, a domain involved in Inr-dependent transcriptional repression. These results demonstrate a direct effect of c-Myc on integrin gene transcription and suggest the existence of a c-Myc-dependent mechanism for coupling leukocyte integrin expression to the cell proliferative state.
Insights
The c-Myc transcription factor directly represses CD11a and CD11c integrin gene transcription. This suggests a mechanism linking leukocyte integrin expression to cell proliferation via c-Myc activity.
Area of Science:
- Molecular Biology
- Cell Biology
- Oncology
Background:
- c-Myc is a key regulator of cell growth and differentiation.
- Myc overexpression is linked to reduced beta1 and beta2 integrin expression.
- Integrins play crucial roles in cell adhesion and immune cell function.
Purpose of the Study:
- To investigate the role of c-Myc in regulating CD11a and CD11c integrin gene transcription.
- To elucidate the specific mechanisms by which c-Myc represses integrin promoters.
Main Methods:
- Co-transfection experiments using c-Myc and integrin promoter constructs.
- Analysis of inducible c-Myc expression systems (KmycB, Rat-1 c-MycER).
- Deletion and mutant promoter analyses to identify key regulatory elements (AP-1, Inr).
Main Results:
- c-Myc directly inhibited CD11a and CD11c integrin promoter activity.
- Repression was observed in inducible c-Myc expression systems.
- An AP-1 binding site (-60) was identified as crucial for c-Myc repression on the CD11c promoter.
- Deletion of c-Myc residues 106-143 abrogated repressor activity.
Conclusions:
- c-Myc directly impacts leukocyte integrin gene transcription.
- A novel c-Myc-dependent mechanism links integrin expression to cellular proliferation.
- Findings provide insights into Myc-mediated cellular transformation and immune cell regulation.
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