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Direct recruitment of N-myc to target gene promoters
S M Mac1, C A D'Cunha, P J Farnham
1McArdle Laboratory for Cancer Research, University of Wisconsin Medical School, Madison, Wisconsin 53706, USA.
Abstract:
The N-myc gene is amplified in 20-25% of human neuroblastomas, and this amplification serves as a poor prognostic factor. However, few genes have been determined to be direct targets of N-myc. Our current studies focused on identifying N-myc target genes, especially those affected in cells such as neuroblastomas that have high levels of N-myc protein. To pursue this goal, we performed differential expression screens with cell-culture systems containing high versus low levels of N-myc. The design of our experiments was such that we should identify genes both upregulated and downregulated by N-myc. Accordingly, we identified 22 genes upregulated by N-myc and one gene downregulated by N-myc. However, only five of these genes responded to increased N-myc levels in more than one system. Further analysis of the regulation of these genes required determining whether they were direct or indirect targets of N-myc. Therefore, we used a formaldehyde crosslinking and immunoprecipitation procedure to determine whether N-myc was bound to the promoters of these putative target genes in living cells. We found that low levels of N-myc were bound to the promoters of the telomerase and prothymosin genes in neuroblastoma cells having low amounts of N-myc but that the amounts of N-myc bound to these promoters greatly increased with overexpression of N-myc. However, the amount of max bound to the promoters was high before and after induction of N-myc. Therefore, our studies suggest that N-myc competes with other max partners for binding to target promoters. Our use of the chromatin immunoprecipitation assay suggests a molecular explanation for the consequences of amplification of the N-myc gene in neuroblastomas.
Insights
Amplification of the N-myc gene in neuroblastomas leads to increased binding of N-myc to target gene promoters, suggesting competition with other factors and offering a molecular explanation for poor prognosis.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- N-myc gene amplification is a poor prognostic factor in human neuroblastomas.
- Identifying direct N-myc target genes is crucial for understanding neuroblastoma development.
Purpose of the Study:
- To identify direct N-myc target genes in neuroblastoma cells.
- To elucidate the molecular mechanisms by which N-myc amplification impacts gene regulation.
Main Methods:
- Differential gene expression screening in cell-culture systems with varying N-myc levels.
- Chromatin immunoprecipitation (ChIP) assay to assess N-myc binding to gene promoters.
- Analysis of N-myc and Max protein binding dynamics.
Main Results:
- Identified 22 genes upregulated and 1 gene downregulated by N-myc; five genes showed consistent regulation.
- Demonstrated increased N-myc binding to telomerase and prothymosin promoters upon N-myc overexpression.
- Observed high Max binding irrespective of N-myc levels, suggesting competitive binding.
Conclusions:
- N-myc likely competes with other Max partners for promoter binding in neuroblastoma cells.
- This competitive binding mechanism provides a molecular explanation for the adverse prognostic impact of N-myc amplification.