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Updated: Jun 1, 2026

An Integrated Workflow to Study the Promoter-Centric Spatio-Temporal Genome Architecture in Scarce Cell Populations
Published on: April 21, 2023
Kinetic profiling of the c-Myc transcriptome and bioinformatic analysis of repressed gene promoters
Chui-Sun Yap1, Abigail L Peterson, Gastone Castellani
1Department of Molecular Biology, Cell Biology and Biochemistry, Brown University, Providence, RI, USA.
Abstract:
Mammalian c-Myc is a member of a small family of three related proto-oncogenic transcription factors. c-Myc has an unusually broad array of regulatory functions, which include roles in cell cycle and apoptosis, a variety of metabolic functions, cell differentiation, senescence, and stem cell maintenance. c-Myc modulates the expression of a very large number of genes, but the magnitude of the majority of the regulatory effects is only 2-fold or less. c-Myc can both activate and repress the promoters of its target genes. Identification of genes directly regulated by c-Myc has been an enduring question in the field. We report here microarray expression profiling of a high resolution time course of c-Myc induction, using fibroblast cells in which c-Myc activity can be modulated from null to physiological. The c-Myc transcriptome dataset presented is the largest reported to date with 4,186 differentially regulated genes (1,826 upregulated, 2,360 downregulated, 1% FDR). The gene expression patterns fit well with the known biological functions of c-Myc. We describe several novel findings and present tools for further data mining. Although the mechanisms of transcriptional activation by c-Myc are well understood, how c-Myc represses an even greater number of genes remains incompletely described. One mechanism involves the binding of c-Myc to other, positively acting transcription factors, and interfering with their activities. We identified rapid-response genes likely to be direct c-Myc targets, and analyzed the promoters of the repressed genes to identify transcription factors that could be targets of c-Myc repression.
Insights
This study identifies thousands of genes directly regulated by the proto-oncogenic transcription factor c-Myc. Researchers mapped c-Myc
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- c-Myc is a proto-oncogenic transcription factor with diverse regulatory roles.
- Its precise regulation of gene expression, especially repression, is not fully understood.
- Identifying direct c-Myc targets is crucial for understanding its biological functions.
Purpose of the Study:
- To comprehensively identify genes directly regulated by c-Myc.
- To analyze the mechanisms of c-Myc-mediated gene repression.
- To provide a large-scale dataset for further research into c-Myc function.
Main Methods:
- Microarray expression profiling of fibroblast cells with modulated c-Myc activity.
- High-resolution time course analysis of c-Myc induction.
- Bioinformatic analysis of differentially expressed genes and promoter regions.
Main Results:
- Identified 4,186 differentially regulated genes (1,826 upregulated, 2,360 downregulated) at 1% FDR.
- Gene expression patterns align with known c-Myc biological functions.
- Identified rapid-response genes as likely direct targets and proposed mechanisms for c-Myc repression.
Conclusions:
- This study presents the largest c-Myc transcriptome dataset to date.
- Provides insights into both activation and repression mechanisms of c-Myc.
- Offers valuable tools and data for future research on c-Myc's role in cellular processes.

