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Whole-Exome Sequencing Analyses of Inflammatory Bowel Disease−Associated Colorectal Cancers

克拉斯 MSH6型 结直肠癌 外显子组测序 医学 MLH1 炎症性肠病 溃疡性结肠炎 癌症研究 突变 癌症 DNA错配修复 内科学 肿瘤科 疾病 基因 生物 遗传学
作者
Ana I. Robles,Giovanni Traverso,Ming Zhang,Nicholas J. Roberts,Khan Ma,Christine Joseph,Gregory Y. Lauwers,Florin M. Selaru,Maria Popoli,Meredith E. Pittman,Xiquan Ke,Ralph H. Hruban,Stephen J. Meltzer,Kenneth W. Kinzler,Bert Vogelstein,Curtis C. Harris,Nickolas Papadopoulos
出处
期刊:Gastroenterology [Elsevier]
卷期号:150 (4): 931-943 被引量:227
标识
DOI:10.1053/j.gastro.2015.12.036
摘要

A long duration of inflammatory bowel disease (IBD) increases the risk for colorectal cancer. Mutation analysis of limited numbers of genes has indicated that colorectal tumors that develop in patients with IBD differ from those of patients without IBD. We performed whole-exome sequencing analyses to characterize the genetic landscape of these tumors.We collected colorectal tumor and non-neoplastic tissues from 31 patients with IBD and colorectal cancer (15 with ulcerative colitis, 14 with Crohn's disease, and 2 with indeterminate colitis) and performed whole-exome sequencing analyses of the microdissected tumor and matched nontumor tissues. We identified somatic alterations by comparing matched specimens. The prevalence of mutations in sporadic colorectal tumors was obtained from previously published exome-sequencing studies.Two specimens had somatic mutations in the DNA proofreading or mismatch repair genes POLE, MLH1, and MSH6 and the tumor cells had a hypermutable phenotype. The remaining tumors had, on average, 71 alterations per sample. TP53 was the most commonly mutated gene, with prevalence similar to that of sporadic colorectal tumors (63% of cases). However, tumors from the patients with IBD had a different mutation spectrum. APC and KRAS were mutated at significantly lower rates in tumors from patients with IBD than in sporadic colorectal tumors (13% and 20% of cases, respectively). Several genes were mutated more frequently or uniquely in tumors from patients with IBD, including SOX9 and EP300 (which encode proteins in the WNT pathway), NRG1 (which encodes an ERBB ligand), and IL16 (which encodes a cytokine). Our study also revealed recurrent mutations in components of the Rho and Rac GTPase network, indicating a role for noncanonical WNT signaling in development of colorectal tumors in patients with IBD.Colorectal tumors that develop in patients with IBD have distinct genetic features from sporadic colorectal tumors. These findings could be used to develop disease-specific markers for diagnosis and treatment of patients with IBD and colorectal cancer.
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