A global transcriptional regulatory role for c-Myc in Burkitt's lymphoma cells
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- 13 June 2003
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 100 (14), 8164-8169
- https://doi.org/10.1073/pnas.1332764100
Abstract
Overexpression of c-Myc is one of the most common alterations in human cancers, yet it is not clear how this transcription factor acts to promote malignant transformation. To understand the molecular targets of c-Myc function, we have used an unbiased genome-wide location-analysis approach to examine the genomic binding sites of c-Myc in Burkitt9s lymphoma cells. We find that c-Myc together with its heterodimeric partner, Max, occupy >15% of gene promoters tested in these cancer cells. The DNA binding of c-Myc and Max correlates extensively with gene expression throughout the genome, a hallmark attribute of general transcription factors. The c-Myc/Max heterodimer complexes also colocalize with transcription factor IID in these cells, further supporting a general role for overexpressed c-Myc in global gene regulation. In addition, transcription of a majority of c-Myc target genes exhibits changes correlated with levels of c-myc mRNA in a diverse set of tissues and cell lines, supporting the conclusion that c-Myc regulates them. Taken together, these results suggest a general role for overexpressed c-Myc in global transcriptional regulation in some cancer cells and point toward molecular mechanisms for c-Myc function in malignant transformation.Keywords
This publication has 46 references indexed in Scilit:
- Transcriptional Regulatory Networks in Saccharomyces cerevisiaeScience, 2002
- Microarray Deacetylation Maps Determine Genome-Wide Functions for Yeast Histone DeacetylasesCell, 2002
- Suppression of Myc-Induced Apoptosis in β Cells Exposes Multiple Oncogenic Properties of Myc and Triggers Carcinogenic ProgressionCell, 2002
- Genomic binding sites of the yeast cell-cycle transcription factors SBF and MBFNature, 2001
- Genome-Wide Location and Function of DNA Binding ProteinsScience, 2000
- MYC oncogenes and human neoplastic diseaseOncogene, 1999
- The p250 subunit of native TATA box-binding factor TFIID is the cell-cycle regulatory protein CCG1Nature, 1993
- Sequence-Specific DNA Binding by the c-Myc ProteinScience, 1990
- Consequences of widespread deregulation of the c-myc gene in transgenic mice: Multiple neoplasms and normal developmentCell, 1986
- The c-myc oncogene driven by immunoglobulin enhancers induces lymphoid malignancy in transgenic miceNature, 1985