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.

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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