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Describing a Transcription Factor Dependent Regulation of the MicroRNA Transcriptome
Published on: June 15, 2016
Rac1 signalling modulates a STAT5/BCL-6 transcriptional switch on cell-cycle-associated target gene promoters
Patrícia Barros1, Eric W-F Lam, Peter Jordan
1Department of Genetics, National Health Institute Dr. Ricardo Jorge, Avenida Padre Cruz, 1649-016 Lisbon, Portugal.
Abstract:
Gene expression depends on binding of transcriptional regulators to gene promoters, a process controlled by signalling pathways. The transcriptional repressor B-cell lymphoma (BCL)-6 downregulates genes involved in cell-cycle progression and becomes inactivated following phosphorylation by the Rac1 GTPase-activated protein kinase PAK1. Interestingly, the DNA motifs recognized by BCL-6 and signal transducers and activators of transcription 5 (STAT5) are similar. Because STAT5 stimulation in epithelial cells can also be triggered by Rac1 signalling, we asked whether both factors have opposing roles in transcriptional regulation and whether Rac1 signalling may coordinate a transcription factor switch. We used chromatin immunoprecipitation to show that active Rac1 promotes release of the repressor BCL-6 while increasing binding of STAT5A to a BCL-6-regulated reporter gene. We further show in colorectal cell lines that the endogenous activation status of the Rac1/PAK1 pathway correlated with the phosphorylation status of BCL-6 and STAT5A. Three cellular genes (cyclin D2, p15(INK4B), small ubiquitin-like modifier 1) were identified to be inversely regulated by BCL-6 and STAT5A and responded to Rac1 signalling with increased expression and corresponding changes in promoter occupancy. Together, our data show that Rac1 signalling controls a group of target genes that are repressed by BCL-6 and activated by STAT5A, providing novel insights into the modulation of gene transcription by GTPase signalling.
Insights
Rac1 signaling inactivates the BCL-6 repressor and activates STAT5A, switching gene transcription. This Rac1-controlled pathway impacts genes like cyclin D2, p15INK4B, and SUMO1 in colorectal cells.
Area of Science:
- Molecular Biology
- Cell Signaling
- Gene Regulation
Background:
- Gene expression is regulated by transcription factors binding to promoters, influenced by signaling pathways.
- B-cell lymphoma (BCL)-6 represses cell-cycle genes and is inactivated by PAK1 kinase.
- Signal transducers and activators of transcription 5 (STAT5) share DNA motifs with BCL-6 and are activated by Rac1 signaling.
Purpose of the Study:
- To investigate if Rac1 signaling coordinates a switch between BCL-6 and STAT5A transcriptional activity.
- To determine if BCL-6 and STAT5A have opposing roles in gene regulation.
- To elucidate the role of Rac1 signaling in modulating gene transcription.
Main Methods:
- Chromatin immunoprecipitation (ChIP) to assess protein binding to DNA.
- Analysis of gene expression and protein phosphorylation in colorectal cell lines.
- Identification of target genes regulated by BCL-6 and STAT5A.
Main Results:
- Active Rac1 promotes BCL-6 release and STAT5A binding to a BCL-6-regulated reporter gene.
- Rac1/PAK1 pathway activation correlates with BCL-6 and STAT5A phosphorylation status in colorectal cells.
- Three genes (cyclin D2, p15INK4B, SUMO1) showed inverse regulation by BCL-6/STAT5A and responded to Rac1 signaling.
Conclusions:
- Rac1 signaling controls a switch between BCL-6 repression and STAT5A activation.
- This mechanism modulates the expression of specific target genes, including cell-cycle regulators.
- Provides new insights into GTPase signaling in gene transcription control.
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