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Prevalence of somatic alterations in the colorectal cancer cell genome
Author(s) -
TianLi Wang,
Carlo Rago,
Natalie Silliman,
Janine Ptak,
Sanford D. Markowitz,
James K. V. Willson,
Giovanni Parmigiani,
Kenneth W. Kinzler,
Bert Vogelstein,
Victor E. Velculescu
Publication year - 2002
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.261714699
Subject(s) - somatic cell , nonsynonymous substitution , biology , missense mutation , genetics , gene , germline mutation , mutation , mutation rate , dna mismatch repair , exon , cancer research , colorectal cancer , human genome , genome , dna repair , cancer
Although a small fraction of human cancers have increased rates of somatic mutation because of known deficiencies in DNA repair, little is known about the prevalence of somatic alterations in the vast majority of human cancers. To systematically assess nonsynonymous somatic alterations in colorectal neoplasia, we used DNA sequencing to analyze approximately 3.2 Mb of coding tumor DNA comprising 1,811 exons from 470 genes. In total, we identified only three distinct somatic mutations, comprising two missense changes and one 14-bp deletion, each in a different gene. The accumulation of approximately one nonsynonymous somatic change per Mb of tumor DNA is consistent with a rate of mutation in tumor cells that is similar to that of normal cells. These data suggest that most sporadic colorectal cancers do not display a mutator phenotype at the nucleotide level. They also have significant implications for the interpretation of somatic mutations in candidate tumor-suppressor genes.

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