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Updated: May 8, 2026

Deficient Pms2, ERCC1, Ku86, CcOI in Field Defects During Progression to Colon Cancer
Published on: July 29, 2010
Recurrent R-spondin fusions in colon cancer
Somasekar Seshagiri1, Eric W Stawiski, Steffen Durinck
1Department of Molecular Biology, Genentech Inc., 1 DNA Way, South San Francisco, California 94080, USA. sekar@gene.com
Abstract:
Identifying and understanding changes in cancer genomes is essential for the development of targeted therapeutics. Here we analyse systematically more than 70 pairs of primary human colon tumours by applying next-generation sequencing to characterize their exomes, transcriptomes and copy-number alterations. We have identified 36,303 protein-altering somatic changes that include several new recurrent mutations in the Wnt pathway gene TCF7L2, chromatin-remodelling genes such as TET2 and TET3 and receptor tyrosine kinases including ERBB3. Our analysis for significantly mutated cancer genes identified 23 candidates, including the cell cycle checkpoint kinase ATM. Copy-number and RNA-seq data analysis identified amplifications and corresponding overexpression of IGF2 in a subset of colon tumours. Furthermore, using RNA-seq data we identified multiple fusion transcripts including recurrent gene fusions involving R-spondin family members RSPO2 and RSPO3 that together occur in 10% of colon tumours. The RSPO fusions were mutually exclusive with APC mutations, indicating that they probably have a role in the activation of Wnt signalling and tumorigenesis. Consistent with this we show that the RSPO fusion proteins were capable of potentiating Wnt signalling. The R-spondin gene fusions and several other gene mutations identified in this study provide new potential opportunities for therapeutic intervention in colon cancer.
Insights
Researchers identified new recurrent mutations in colon cancer genes, including Wnt pathway and chromatin-remodeling genes. These findings offer potential new therapeutic targets for colon cancer treatment.
Area of Science:
- Genomics
- Cancer Biology
- Molecular Oncology
Background:
- Understanding genomic alterations in cancer is crucial for developing targeted therapies.
- Colon cancer exhibits complex genetic changes that drive tumor progression.
Purpose of the Study:
- To systematically analyze the exomes, transcriptomes, and copy-number alterations in a cohort of primary human colon tumors.
- To identify novel recurrent mutations and gene fusions in colon cancer for potential therapeutic targeting.
Main Methods:
- Next-generation sequencing (NGS) was applied to analyze over 70 pairs of primary human colon tumors.
- Comprehensive analysis included exome sequencing, transcriptome sequencing (RNA-seq), and copy-number alteration profiling.
Main Results:
- Identified 36,303 protein-altering somatic changes, including new recurrent mutations in TCF7L2, TET2, TET3, and ERBB3.
- Discovered 23 significantly mutated cancer gene candidates, including ATM. Identified IGF2 amplifications and overexpression.
- Found recurrent gene fusions involving RSPO2 and RSPO3 in 10% of tumors, which potentiate Wnt signaling and are mutually exclusive with APC mutations.
Conclusions:
- The study identified novel genetic alterations in colon cancer, including Wnt pathway and chromatin-remodeling gene mutations and RSPO gene fusions.
- These findings provide new insights into colon cancer tumorigenesis and highlight potential new therapeutic targets for intervention.
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