Identification of tumor suppressors and oncogenes from genomic and epigenetic features in ovarian cancer Journal Article


Authors: Wrzeszczynski, K. O.; Varadan, V.; Byrnes, J.; Lum, E.; Kamalakaran, S.; Levine, D. A.; Dimitrova, N.; Zhang, M. Q.; Lucito, R.
Article Title: Identification of tumor suppressors and oncogenes from genomic and epigenetic features in ovarian cancer
Abstract: The identification of genetic and epigenetic alterations from primary tumor cells has become a common method to identify genes critical to the development and progression of cancer. We seek to identify those genetic and epigenetic aberrations that have the most impact on gene function within the tumor. First, we perform a bioinformatic analysis of copy number variation (CNV) and DNA methylation covering the genetic landscape of ovarian cancer tumor cells. We separately examined CNV and DNA methylation for 42 primary serous ovarian cancer samples using MOMA-ROMA assays and 379 tumor samples analyzed by The Cancer Genome Atlas. We have identified 346 genes with significant deletions or amplifications among the tumor samples. Utilizing associated gene expression data we predict 156 genes with altered copy number and correlated changes in expression. Among these genes CCNE1, POP4, UQCRB, PHF20L1 and C19orf2 were identified within both data sets. We were specifically interested in copy number variation as our base genomic property in the prediction of tumor suppressors and oncogenes in the altered ovarian tumor. We therefore identify changes in DNA methylation and expression for all amplified and deleted genes. We statistically define tumor suppressor and oncogenic features for these modalities and perform a correlation analysis with expression. We predicted 611 potential oncogenes and tumor suppressors candidates by integrating these data types. Genes with a strong correlation for methylation dependent expression changes exhibited at varying copy number aberrations include CDCA8, ATAD2, CDKN2A, RAB25, AURKA, BOP1 and EIF2C3. We provide copy number variation and DNA methylation analysis for over 11,500 individual genes covering the genetic landscape of ovarian cancer tumors. We show the extent of genomic and epigenetic alterations for known tumor suppressors and oncogenes and also use these defined features to identify potential ovarian cancer gene candidates. © 2011 Wrzeszczynski et al.
Keywords: clinical article; controlled study; human tissue; gene deletion; cancer staging; gene amplification; gene expression; gene function; dna methylation; carcinogenesis; oncogene; tumor suppressor gene; epigenetics; gene identification; nucleotide sequence; tumor cell; ovary carcinoma; genomics; cancer tissue; aurka gene; copy number variation; cdkn2a gene; cdca8 gene; atad2 gene; bop1 gene; c19orf2 gene; ccne1 gene; eif2c3 gene; phf20l1 gene; pop4 gene; rab25 gene; uqcrb gene
Journal Title: PLoS ONE
Volume: 6
Issue: 12
ISSN: 1932-6203
Publisher: Public Library of Science  
Date Published: 2011-01-01
Start Page: e28503
Language: English
DOI: 10.1371/journal.pone.0028503
PROVIDER: scopus
PMCID: PMC3234280
PUBMED: 22174824
DOI/URL:
Notes: --- - "Export Date: 3 January 2012" - "Source: Scopus"
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  1. Douglas A Levine
    380 Levine