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Updated: Jan 21, 2026

Discovery of Driver Genes in Colorectal HT29-derived Cancer Stem-Like Tumorspheres
Published on: July 22, 2020
Scarcity of Recurrent Regulatory Driver Mutations in Colorectal Cancer Revealed by Targeted Deep Sequencing
Rebecca C Poulos1,2, Dilmi Perera1, Deborah Packham1
1Prince of Wales Clinical School and Lowy Cancer Research Centre, UNSW Sydney, Sydney, NSW, Australia.
Background:
Genetic testing of cancer samples primarily focuses on protein-coding regions, despite most mutations arising in noncoding DNA. Noncoding mutations can be pathogenic if they disrupt gene regulation, but the benefits of assessing promoter mutations in driver genes by panel testing has not yet been established. This is especially the case in colorectal cancer, for which few putative driver variants at regulatory elements have been reported.
Methods:
We designed a unique target capture sequencing panel of 39 colorectal cancer driver genes and their promoters, together with more than 35 megabases of regulatory elements focusing on gene promoters. Using this panel, we sequenced 95 colorectal cancer and matched normal samples at high depth, averaging 170× and 82× coverage, respectively.
Results:
Our target capture sequencing design enabled improved coverage and variant detection across captured regions. We found cases with hereditary defects in mismatch and base excision repair due to deleterious germline coding variants, and we identified mutational spectra consistent with these repair deficiencies. Focusing on gene promoters and other regulatory regions, we found little evidence for base or region-specific recurrence of functional somatic mutations. Promoter elements, including TERT, harbored few mutations, with none showing strong functional evidence. Recurrent regulatory mutations were rare in our sequenced regions in colorectal cancer, though we highlight some candidate mutations for future functional studies.
Conclusions:
Our study supports recent findings that regulatory driver mutations are rare in many cancer types and suggests that the inclusion of promoter regions into cancer panel testing is currently likely to have limited clinical utility in colorectal cancer.
Insights
Genetic panel testing for colorectal cancer rarely finds driver mutations in promoter regions. Current methods focusing on protein-coding DNA are more clinically useful for this cancer type.
Area of Science:
- Genomics
- Cancer Genetics
- Molecular Biology
Background:
- Genetic testing for cancer typically analyzes protein-coding DNA, overlooking noncoding regions where most mutations occur.
- Noncoding mutations can impact gene regulation and disease, but their role in colorectal cancer driver genes remains unclear.
- Assessing promoter mutations in driver genes via panel testing has not been established for colorectal cancer.
Purpose of the Study:
- To investigate the utility of assessing promoter and regulatory regions in colorectal cancer driver genes.
- To determine the prevalence and potential pathogenicity of noncoding mutations in colorectal cancer.
Main Methods:
- Developed a targeted capture sequencing panel covering 39 colorectal cancer driver genes and their promoters, plus 35 megabases of regulatory elements.
- Sequenced 95 colorectal cancer samples and matched normal controls at high depth (average 170× and 82× coverage).
Main Results:
- Achieved improved coverage and variant detection across targeted regions.
- Identified germline coding variants related to DNA repair deficiencies and consistent mutational spectra.
- Found limited evidence for recurrent functional somatic mutations in promoter and regulatory regions, including the TERT promoter.
Conclusions:
- Regulatory driver mutations appear rare in colorectal cancer, aligning with findings in other cancer types.
- Including promoter regions in current colorectal cancer panel testing likely offers limited clinical utility.
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