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通过全基因组测序首次鉴定出家族性脑海绵状血管畸形中的大型基因组倒位。

First large genomic inversion in familial cerebral cavernous malformation identified by whole genome sequencing.

机构信息

Department of Human Genetics, University Medicine Greifswald, and Interfaculty Institute of Genetics and Functional Genomics, University of Greifswald, Fleischmannstraße 43, D-17475, Greifswald, Germany.

Department of Human Genetics, Ruhr-University, 44801, Bochum, Germany.

出版信息

Neurogenetics. 2018 Jan;19(1):55-59. doi: 10.1007/s10048-017-0531-7. Epub 2017 Dec 2.

Abstract

Familial cerebral cavernous malformations (CCMs) predispose to seizures and hemorrhagic stroke. Molecular genetic analyses of CCM1, CCM2, and CCM3 result in a mutation detection rate of up to 98%. However, only whole genome sequencing (WGS) in combination with the Manta algorithm for analyses of structural variants revealed a heterozygous 24 kB inversion including exon 1 of CCM2 in a 12-year-old boy with familial CCMs. Its breakpoints were fine-mapped, and quantitative analysis on RNA confirmed reduced CCM2 expression. Our data expand the spectrum of CCM mutations and indicate that the existence of a fourth CCM disease gene is rather unlikely.

摘要

家族性脑海绵状血管畸形(CCMs)易导致癫痫发作和出血性中风。对 CCM1、CCM2 和 CCM3 的分子遗传学分析导致突变检测率高达 98%。然而,只有全基因组测序(WGS)结合 Manta 算法对结构变异进行分析,才在一名 12 岁患有家族性 CCMs 的男孩中发现了 CCM2 外显子 1 的杂合性 24kB 倒位。其断点被精确定位,RNA 的定量分析证实 CCM2 表达减少。我们的数据扩展了 CCM 突变谱,并表明第四种 CCM 疾病基因的存在不太可能。

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