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Mutational Profiles Reveal an Aberrant TGF-β-CEA Regulated Pathway in Colon Adenomas

Mutational Profiles Reveal an Aberrant TGF-β-CEA Regulated Pathway in Colon Adenomas
Mutational processes and signatures that drive early tumorigenesis are centrally important for early cancer prevention. Yet, to date, biomarkers and risk factors for polyps (adenomas) that inordinately and rapidly develop into colon cancer remain poorly defined. Here, we describe surprisingly high mutational profiles through whole-genome sequence (WGS) analysis in 2 of 4 pairs of benign colorectal adenoma tissue samples. Unsupervised hierarchical clustered transcriptomic analysis of a further 7 pairs of adenomas reveals distinct mutational signatures regardless of adenoma size. Transitional single nucleotide substitutions of C:G>T:A predominate in the adenoma mutational spectrum. Strikingly, we observe mutations in the TGF-β pathway and CEA-associated genes in 4 out of 11 adenomas, overlapping with the Wnt pathway. Immunohistochemical labeling reveals a nearly 5-fold increase in CEA levels in 23% of adenoma samples with a concomitant loss of TGF-β signaling. We also define a functional role by which the CEA B3 domain interacts with TGFBR1, potentially inactivating the tumor suppressor function of TGF-β signaling. Our study uncovers diverse mutational processes underlying the transition from early adenoma to cancer. This has broad implications for biomarker-driven targeting of CEA/TGF-β in high-risk adenomas and may lead to early detection of aggressive adenoma to CRC progression.
- Institute of Clinical Research United States
- McGill University Canada
- George Washington University United States
- Veterans Health Administration United States
- Government of the United States of America United States
Adenoma, Colon, Science, Blotting, Western, Apoptosis, Immunoenzyme Techniques, Cell Movement, Transforming Growth Factor beta, Biomarkers, Tumor, Humans, Immunoprecipitation, Cells, Cultured, Cell Proliferation, Q, R, High-Throughput Nucleotide Sequencing, Carcinoembryonic Antigen, Gene Expression Regulation, Neoplastic, Colonic Neoplasms, Mutation, Disease Progression, Medicine, Research Article, Signal Transduction
Adenoma, Colon, Science, Blotting, Western, Apoptosis, Immunoenzyme Techniques, Cell Movement, Transforming Growth Factor beta, Biomarkers, Tumor, Humans, Immunoprecipitation, Cells, Cultured, Cell Proliferation, Q, R, High-Throughput Nucleotide Sequencing, Carcinoembryonic Antigen, Gene Expression Regulation, Neoplastic, Colonic Neoplasms, Mutation, Disease Progression, Medicine, Research Article, Signal Transduction
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