exome sequencing of a colorectal cancer family reveals shared mutation pattern and predisposition circuitry along tumor pathways

Clicks: 174
ID: 202065
2015
Article Quality & Performance Metrics
Overall Quality Improving Quality
0.0 /100
Combines engagement data with AI-assessed academic quality
AI Quality Assessment
Not analyzed
Abstract
The molecular basis of cancer and cancer multiple phenotypes are not yet fully understood. Next Generation Sequencing promises new insight into the role of genetic interactions in shaping the complexity of cancer. Aiming to outline the differences in mutation patterns between familial colorectal cancer cases and controls we analyzed whole exomes of cancer tissues and control samples from an extended colorectal cancer pedigree, providing one of the first data sets of exome sequencing of cancer in an African population against a background of large effective size typically with excess of variants. Tumors showed hMSH2 loss of function SNV consistent with Lynch syndrome. Sets of genes harboring insertions-deletions in tumor tissues revealed, however, significant GO enrichment, a feature that was not seen in control samples, suggesting that ordered insertions-deletions are central to tumorigenesis in this type of cancer. Network analysis identified multiple hub genes of centrality. ELAVL1/HuR showed remarkable centrality, interacting specially with genes harboring non-synonymous SNVs thus reinforcing the proposition of targeted mutagenesis in cancer pathways. A likely explanation to such mutation pattern is DNA/RNA editing, suggested here by nucleotide transition-to-transversion ratio that significantly departed from expected values (p-value 5e-6). NFKB1 also showed significant centrality along with ELAVL1, raising the suspicion of viral etiology given the known interaction between oncogenic viruses and these proteins.
Reference Key
suleiman2015frontiersexome Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Suleiman H Suleiman;Mahmoud E Koko;Wafaa H Nasir;Ommnyiah eElfateh;Ubai K Elgizouli;Mohammed O E Abdallah;Khalid O Alfarouk;Ayman eHussain;Shima eFaisal;Fathelrahman M A Ibrahim;Maurizio eRomano;Ali eSultan;Lawrence eBanks;Melanie eNewport;Francesco eBaralle;Ahmed M Elhassan;Hiba S Mohamed;Muntaser E Ibrahim
Journal chemical record (new york, ny)
Year 2015
DOI 10.3389/fgene.2015.00288
URL
Keywords

Citations

No citations found. To add a citation, contact the admin at info@scimatic.org

No comments yet. Be the first to comment on this article.