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Studying Cell Cycle-regulated Gene Expression by Two Complementary Cell Synchronization Protocols
Published on: June 6, 2017
Regulation of Sp1 by cell cycle related proteins
Alicia Tapias1, Carlos J Ciudad, Igor B Roninson
1Department of Biochemistry and Molecular Biology, School of Pharmacy, IBUB, University of Barcelona, Barcelona, Spain.
Abstract:
Sp1 transcription factor regulates the expression of multiple genes, including the Sp1 gene itself. We analyzed the ability of different cell cycle regulatory proteins to interact with Sp1 and to affect Sp1 promoter activity. Using an antibody array, we observed that CDK4, SKP2, Rad51, BRCA2 and p21 could interact with Sp1 and we confirmed these interactions by co-immunoprecipitation. CDK4, SKP2, Rad51, BRCA2 and p21 also activated the Sp1 promoter. Among the known Sp1-interacting proteins, E2F-DP1, Cyclin D1, Stat3 and Rb activated the Sp1 promoter, whereas p53 and NF kappaB inhibited it. The proteins that regulated Sp1 gene expression were shown by positive chromatin immunoprecipitation to be bound to the Sp1 promoter. Moreover, SKP2, BRCA2, p21, E2F-DP1, Stat3, Rb, p53 and NF kappaB had similar effects on an artificial promoter containing only Sp1 binding sites. Transient transfections of CDK4, Rad51, E2F-DP1, p21 and Stat3 increased mRNA expression from the endogenous Sp1 gene in HeLa cells whereas overexpression of NF kappaB, and p53 decreased Sp1 mRNA levels. p21 expression from a stably integrated inducible promoter in HT1080 cells activated Sp1 expression at the promoter and mRNA levels, but at the same time it decreased Sp1 protein levels due to the activation of Sp1 degradation. The observed multiple effects of cell cycle regulators on Sp1 suggest that Sp1 may be a key mediator of cell cycle associated changes in gene expression.
Insights
Cell cycle regulators like CDK4 and p21 interact with and modulate Sp1 transcription factor activity. These interactions influence Sp1 gene expression, suggesting Sp1
Area of Science:
- Molecular Biology
- Gene Regulation
- Cell Cycle Control
Background:
- Sp1 transcription factor is crucial for regulating numerous genes, including its own.
- Understanding how cell cycle proteins interact with Sp1 is key to deciphering gene expression dynamics.
Purpose of the Study:
- To investigate the interactions between cell cycle regulatory proteins and the Sp1 transcription factor.
- To determine the effects of these interactions on Sp1 gene promoter activity and expression.
Main Methods:
- Antibody array analysis to identify Sp1-interacting proteins.
- Co-immunoprecipitation to confirm protein interactions.
- Chromatin immunoprecipitation to assess promoter binding.
- Transient and stable transfections to evaluate effects on Sp1 mRNA and protein levels.
Main Results:
- CDK4, SKP2, Rad51, BRCA2, and p21 were found to interact with Sp1 and activate its promoter.
- Other regulators like E2F-DP1, Cyclin D1, Stat3, and Rb activated the Sp1 promoter, while p53 and NF-κB inhibited it.
- Cell cycle regulators influenced Sp1 mRNA levels, with some increasing and others decreasing expression; p21 also induced Sp1 protein degradation.
Conclusions:
- Cell cycle regulators exhibit diverse effects on Sp1 transcription factor activity, promoter binding, and gene expression.
- Sp1 may act as a central mediator for cell cycle-dependent alterations in gene expression.
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