Detection of APC mosaicism by next-generation sequencing in an FAP patient

被引:0
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作者
Kiyoshi Yamaguchi
Mitsuhiro Komura
Rui Yamaguchi
Seiya Imoto
Eigo Shimizu
Shinichi Kasuya
Tetsuo Shibuya
Seira Hatakeyama
Norihiko Takahashi
Tsuneo Ikenoue
Keisuke Hata
Giichiro Tsurita
Masaru Shinozaki
Yutaka Suzuki
Sumio Sugano
Satoru Miyano
Yoichi Furukawa
机构
[1] Advanced Clinical Research Center,Division of Clinical Genome Research
[2] Institute of Medical Science,Department of Surgery
[3] The University of Tokyo,Department of Computational Biology
[4] Laboratory of DNA Information Analysis,undefined
[5] Human Genome Center,undefined
[6] Institute of Medical Science,undefined
[7] The University of Tokyo,undefined
[8] Laboratory of Sequence Analysis,undefined
[9] Human Genome Center,undefined
[10] Institute of Medical Science,undefined
[11] The University of Tokyo,undefined
[12] Research Hospital,undefined
[13] Institute of Medical Science,undefined
[14] The University of Tokyo,undefined
[15] Graduate School of Frontier Sciences,undefined
[16] The University of Tokyo,undefined
[17] Laboratory of Functional Genomics,undefined
[18] Graduate School of Frontier Sciences,undefined
[19] The University of Tokyo,undefined
来源
Journal of Human Genetics | 2015年 / 60卷
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摘要
Familial adenomatous polyposis (FAP) of the colon is characterized by multiple polyps in the intestine and extra-colonic manifestations. Most FAP cases are caused by a germline mutation in the tumor-suppressor gene APC, but some cases of adenomatous polyposis result from germline mutations in MUTYH, POLD1 or POLE. Although sequence analysis of APC by the Sanger method is routinely performed for genetic testing, there remain cases whose mutations are not detected by the analysis. Next-generation sequencing has enabled us to analyze the comprehensive human genome, improving the chance of identifying disease causative variants. In this study, we conducted whole-genome sequencing of a sporadic FAP patient in which we did not find any pathogenic APC mutations by the conventional Sanger sequencing. Whole-genome sequencing and subsequent deep sequencing identified a mosaic mutation of c.3175G>T, p.E1059X in ~12% of his peripheral leukocytes. Additional deep sequencing of his buccal mucosa, hair follicles, non-cancerous mucosa of the stomach and colon disclosed that these tissues harbored the APC mutation at different frequencies. Our data implied that genetic analysis by next-generation sequencing is an effective strategy to identify genetic mosaicism in hereditary diseases.
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页码:227 / 231
页数:4
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