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The Retinoblastoma Tumor Suppressor Transcriptionally Represses Pak1 in Osteoblasts
Bernadette Sosa-García1, Viviana Vázquez-Rivera1, Jonathan N González-Flores1
1Department of Basic Sciences, Biochemistry Division, Ponce Health Science University, Ponce, Puerto Rico.
Abstract:
We previously characterized the retinoblastoma tumor suppressor protein (Rb) as a regulator of adherens junction assembly and cell-to-cell adhesion in osteoblasts. This is a novel function since Rb is predominantly known as a cell cycle repressor. Herein, we characterized the molecular mechanisms by which Rb performs this function, hypothesizing that Rb controls the activity of known regulators of adherens junction assembly. We found that Rb represses the expression of the p21-activated protein kinase (Pak1), an effector of the small Rho GTPase Rac1. Rac1 is a well-known regulator of adherens junction assembly whose increased activity in cancer is linked to perturbations of intercellular adhesion. Using nuclear run-on and luciferase reporter transcription assays, we found that Pak1 repression by Rb is transcriptional, without affecting Pak1 mRNA and protein stability. Pak1 promoter bioinformatics showed multiple E2F1 binding sites within 155 base pairs of the transcriptional start site, and a Pak1-promoter region containing these E2F sites is susceptible to transcriptional inhibition by Rb. Chromatin immunoprecipitations showed that an Rb-E2F complex binds to the region of the Pak1 promoter containing the E2F1 binding sites, suggesting that Pak1 is an E2F target and that the repressive effect of Rb on Pak1 involves blocking the trans-activating capacity of E2F. A bioinformatics analysis showed elevated Pak1 expression in several solid tumors relative to adjacent normal tissue, with both Pak1 and E2F increased relative to normal tissue in breast cancer, supporting a cancer etiology for Pak1 up-regulation. Therefore, we propose that by repressing Pak1 expression, Rb prevents Rac1 hyperactivity usually associated with cancer and related to cytoskeletal derangements that disrupt cell adhesion, consequently enhancing cancer cell migratory capacity. This de-regulation of cell adhesion due to Rb loss could be part of the molecular events associated with cancer progression and metastasis.
Insights
The retinoblastoma protein (Rb) suppresses tumor growth by repressing Pak1 expression, a key factor in cell adhesion and migration. Rb loss disrupts cell adhesion, promoting cancer progression and metastasis.
Area of Science:
- Molecular Biology
- Cancer Biology
- Cell Adhesion
Background:
- The retinoblastoma tumor suppressor protein (Rb) is primarily known for its role in cell cycle regulation.
- Rb has a newly identified function in regulating adherens junction assembly and cell-to-cell adhesion in osteoblasts.
- Dysregulation of cell adhesion is implicated in cancer progression and metastasis.
Purpose of the Study:
- To elucidate the molecular mechanisms by which Rb regulates cell-to-cell adhesion.
- To investigate whether Rb controls known regulators of adherens junction assembly.
- To determine Rb's role in Pak1 expression and its implications in cancer.
Main Methods:
- Nuclear run-on and luciferase reporter transcription assays to assess Pak1 transcriptional regulation.
- Bioinformatics analysis of the Pak1 promoter for E2F1 binding sites.
- Chromatin immunoprecipitation assays to detect Rb-E2F complex binding to the Pak1 promoter.
- Bioinformatic analysis of tumor databases for Pak1 and E2F expression levels.
Main Results:
- Rb transcriptionally represses the expression of p21-activated kinase 1 (Pak1).
- Rb-E2F complex binds to E2F1 sites on the Pak1 promoter, inhibiting its transcription.
- Pak1 is upregulated in several solid tumors, including breast cancer, along with E2F.
- Rb's repression of Pak1 prevents Rac1 hyperactivity, maintaining cell adhesion.
Conclusions:
- Rb acts as a transcriptional repressor of Pak1, thereby regulating cell adhesion.
- Loss of Rb function leads to Pak1 upregulation, increased Rac1 activity, and disrupted cell adhesion, promoting cancer cell migration and metastasis.
- Rb's role in maintaining cell adhesion through Pak1 repression is a critical mechanism in preventing cancer progression.
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