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采用内含子捕获的深度测序能够在一名息肉病患者中鉴定出APC基因第10外显子倒置。

Deep sequencing with intronic capture enables identification of an APC exon 10 inversion in a patient with polyposis.

作者信息

Shirts Brian H, Salipante Stephen J, Casadei Silvia, Ryan Shawnia, Martin Judith, Jacobson Angela, Vlaskin Tatyana, Koehler Karen, Livingston Robert J, King Mary-Claire, Walsh Tom, Pritchard Colin C

机构信息

Department of Laboratory Medicine, University of Washington, Seattle, Washington, USA.

Department of Genome Sciences, University of Washington, Seattle, Washington, USA.

出版信息

Genet Med. 2014 Oct;16(10):783-6. doi: 10.1038/gim.2014.30. Epub 2014 Mar 27.

Abstract

PURPOSE

Single-exon inversions have rarely been described in clinical syndromes and are challenging to detect using Sanger sequencing. We report the case of a 40-year-old woman with adenomatous colon polyps too numerous to count and who had a complex inversion spanning the entire exon 10 in APC (the gene encoding for adenomatous polyposis coli), causing exon skipping and resulting in a frameshift and premature protein truncation.

METHODS

In this study, we employed complete APC gene sequencing using high-coverage next-generation sequencing by ColoSeq, analysis with BreakDancer and SLOPE software, and confirmatory transcript analysis.

RESULTS

ColoSeq identified a complex small genomic rearrangement consisting of an inversion that results in translational skipping of exon 10 in the APC gene. This mutation would not have been detected by traditional sequencing or gene-dosage methods.

CONCLUSION

We report a case of adenomatous polyposis resulting from a complex single-exon inversion. Our report highlights the benefits of large-scale sequencing methods that capture intronic sequences with high enough depth of coverage-as well as the use of informatics tools-to enable detection of small pathogenic structural rearrangements.

摘要

目的

单外显子倒位在临床综合征中鲜有报道,且使用桑格测序法检测具有挑战性。我们报告了一例40岁女性病例,其结肠腺瘤性息肉多得难以计数,且在APC(腺瘤性息肉病 coli 基因)中存在一个跨越整个第10外显子的复杂倒位,导致外显子跳跃,进而引起移码和蛋白质过早截短。

方法

在本研究中,我们采用ColoSeq进行高覆盖度的下一代测序对整个APC基因进行测序,使用BreakDancer和SLOPE软件进行分析,并进行验证性转录本分析。

结果

ColoSeq鉴定出一个复杂的小基因组重排,该重排由一个倒位组成,导致APC基因第10外显子的翻译跳过。这种突变用传统测序或基因剂量方法无法检测到。

结论

我们报告了一例由复杂单外显子倒位导致的腺瘤性息肉病病例。我们的报告强调了大规模测序方法的优势,这些方法能够以足够高的覆盖深度捕获内含子序列,以及使用信息学工具来检测小的致病性结构重排。

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