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Updated: Aug 10, 2026

A Novel Bayesian Change-point Algorithm for Genome-wide Analysis of Diverse ChIPseq Data Types
Published on: December 10, 2012
Chromosome breakpoints near CpG islands in double minutes
P Foureman1, J A Winfield, P J Hahn
1Department of Neurosurgery, Program in Cell and Molecular Biology, State University of New York Health Science Center, Syracuse, NY 13210, USA.
Abstract:
Double minute chromosomes (DMs) are the principal genetic vehicles for amplifying oncogenes in human tumors and drug resistance genes in cultured mouse cells. Mouse EMT-6 cells resistant to methotrexate (MTX) generally contain circular DMs, approximately 1 megabase (Mb) in size, that amplify the dihydrofolate reductase (DHFR) gene. The 1 Mb DMs generally have CpG islands located 500 kb upstream of the DHFR gene. The purpose of this study was to determine the relationship between CpG islands and chromosomal breakpoints giving rise to the DM. We show that EMT-6 cells growing in very low levels of MTX that do not yet contain the 1 Mb DHFR-amplifying DM, develop a NotI/EagI site 500 kb upstream of the DHFR gene. This NotI site is close to, if not identical with, one of the chromosomal breakpoints giving rise to the DM. We show that 500 kb of DM DNA from upstream of the DHFR gene is derived from 500 kb of chromosomal DNA upstream of the chromosomal DHFR gene. The downstream breakpoint maps to a region approximately 200 kb downstream of the DHFR gene near a chromosomal SstII/EagI site. Therefore, approximately 700 kb of DM DNA was derived from the genomic region surrounding the DHFR gene. To confirm the organization of the DM DNA, we isolated DNA probes from the 1 Mb DM. Using pulsed field gel electrophoresis and Southern hybridization, we determined the approximate location of each probe with respect to the CpG island in both the DM and the chromosome. Approximately 300 kb of chimeric DNA from a region unrelated to the DHFR gene was incorporated during DM formation. Implications for the mechanism of DM formation are discussed.
Insights
Double minute chromosomes (DMs) form via chromosomal breakpoints near CpG islands, amplifying genes like dihydrofolate reductase (DHFR). This study maps these breakpoints, revealing how DMs acquire genetic material during formation.
Area of Science:
- Genetics
- Molecular Biology
- Cancer Research
Background:
- Double minute chromosomes (DMs) are key genetic elements for oncogene amplification in tumors.
- Methotrexate (MTX)-resistant mouse cells (EMT-6) commonly harbor circular DMs that amplify the dihydrofolate reductase (DHFR) gene.
- These DMs often contain CpG islands located upstream of the amplified DHFR gene.
Purpose of the Study:
- To investigate the relationship between CpG islands and the chromosomal breakpoints that generate DMs.
- To elucidate the origin of DM DNA and its relationship to the chromosomal DHFR gene locus.
Main Methods:
- Analysis of EMT-6 cells under varying MTX concentrations.
- Mapping of CpG islands and restriction enzyme sites (NotI/EagI, SstII/EagI) relative to the DHFR gene.
- Pulsed field gel electrophoresis and Southern hybridization using DNA probes from DMs.
Main Results:
- A NotI/EagI site, proximal to a DM breakpoint, emerged 500 kb upstream of the DHFR gene in MTX-selected cells.
- DM DNA sequences upstream of DHFR originated from the corresponding chromosomal region.
- The downstream breakpoint was located near a SstII/EagI site, approximately 200 kb downstream of DHFR.
- Approximately 700 kb of the DM DNA was derived from the genomic region surrounding the DHFR gene.
- An additional 300 kb of unrelated chimeric DNA was incorporated into the DM during its formation.
Conclusions:
- The study identifies specific chromosomal breakpoints associated with CpG islands that are involved in DM formation.
- The findings provide insights into the mechanism of DM generation, including the integration of extraneous DNA.
- Understanding DM formation is crucial for developing strategies targeting gene amplification in cancer and drug resistance.
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