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A DNA microarray screen for genes involved in c-MYC and N-MYC oncogenesis in human tumors
1Department of Genetics, The Silberman Institute for Life Sciences, The Hebrew University, Givat-Ram, Jerusalem 91904, Israel.
Abstract:
MYC proto-oncogenes play a major role in various types of human tumors. The products of these genes are transcription factors that bind to specific sequences and activate the expression of target genes. Identifying these target genes and their downstream effectors is a crucial step in understanding and preventing MYC induced oncogenesis. Until now, most of the efforts to identify such genes were performed by analysing in vitro systems whose relevance to the malignant process in vivo remains unclear. We aimed at identifying genes that play a major role in the malignant process of MYC induced carcinogenesis. Thus, we analysed the expression profiles of human MYC induced tumors and compared them to similar, non-MYC tumors. Moreover, we looked for the common characteristics of different types of MYC induced tumors. We identified several genes, most of them involved in cell cycle regulation, that are over expressed in MYC induced lymphomas as well as MYC induced neuronal-like tumors. In order to determine whether MYC induced oncogenesis is similar in human and in the mouse model system, we analysed the expression of the identified genes in cells derived from transgenic mice tumors. We also present the distribution of MYC putative binding sites in the regulatory sequences of the genes identified in our analysis. This analysis pointed to two genes (E2F1 and TSC2) as candidates to be targets of Myc activity. We thus further analysed the expression of these genes in the tumor cell lines, and examined the plausibility that elements in their promoter bind the Myc protein. Our data points to several genes that may be involved in c-MYC and N-MYC induced tumors and to two genes that may be targets for MYC activity.
Insights
MYC proto-oncogenes drive tumor development. Researchers identified overexpressed genes in MYC-induced tumors, revealing potential therapeutic targets like E2F1 and TSC2 for MYC-driven cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- MYC proto-oncogenes are critical drivers in numerous human cancers.
- Understanding MYC's target genes is essential for developing effective cancer therapies.
- Previous research relied on in vitro models, limiting in vivo relevance.
Purpose of the Study:
- To identify genes crucial for MYC-induced carcinogenesis in vivo.
- To compare gene expression profiles between MYC-induced and non-MYC tumors.
- To investigate conserved mechanisms across different MYC-induced tumor types.
Main Methods:
- Differential gene expression analysis of human MYC-induced tumors versus non-MYC tumors.
- Analysis of gene expression in mouse models of MYC-induced tumors.
- Bioinformatic identification of MYC binding sites in regulatory regions of candidate genes.
Main Results:
- Several genes, particularly those in cell cycle regulation, were found to be overexpressed in MYC-induced lymphomas and neuronal-like tumors.
- Gene expression patterns in mouse models showed similarities to human tumors.
- E2F1 and TSC2 were identified as potential direct targets of MYC activity.
Conclusions:
- The study identified key genes involved in MYC-induced oncogenesis across different tumor types.
- E2F1 and TSC2 are proposed as direct MYC targets, offering potential therapeutic avenues.
- The findings provide insights into MYC-driven carcinogenesis and its translational implications.