Postzygotic single-nucleotide mosaicisms in whole-genome sequences of clinically unremarkable individuals

被引:0
|
作者
August Y Huang
Xiaojing Xu
Adam Y Ye
Qixi Wu
Linlin Yan
Boxun Zhao
Xiaoxu Yang
Yao He
Sheng Wang
Zheng Zhang
Bowen Gu
Han-Qing Zhao
Meng Wang
Hua Gao
Ge Gao
Zhichao Zhang
Xiaoling Yang
Xiru Wu
Yuehua Zhang
Liping Wei
机构
[1] National Institute of Biological Sciences,
[2] Center for Bioinformatics,undefined
[3] State Key Laboratory of Protein and Plant Gene Research,undefined
[4] School of Life Sciences,undefined
[5] Peking University,undefined
[6] Peking University First Hospital,undefined
[7] Peking University,undefined
[8] Peking-Tsinghua Center for Life Sciences,undefined
[9] Academy for Advanced Interdisciplinary Studies,undefined
[10] Peking University,undefined
[11] Graduate School of Peking Union Medical College,undefined
来源
Cell Research | 2014年 / 24卷
关键词
single-nucleotide mutation; postzygotic mosaicism; Dravet syndrome; next-generation sequencing; Bayesian model;
D O I
暂无
中图分类号
学科分类号
摘要
Postzygotic single-nucleotide mutations (pSNMs) have been studied in cancer and a few other overgrowth human disorders at whole-genome scale and found to play critical roles. However, in clinically unremarkable individuals, pSNMs have never been identified at whole-genome scale largely due to technical difficulties and lack of matched control tissue samples, and thus the genome-wide characteristics of pSNMs remain unknown. We developed a new Bayesian-based mosaic genotyper and a series of effective error filters, using which we were able to identify 17 SNM sites from ∼80× whole-genome sequencing of peripheral blood DNAs from three clinically unremarkable adults. The pSNMs were thoroughly validated using pyrosequencing, Sanger sequencing of individual cloned fragments, and multiplex ligation-dependent probe amplification. The mutant allele fraction ranged from 5%-31%. We found that C→T and C→A were the predominant types of postzygotic mutations, similar to the somatic mutation profile in tumor tissues. Simulation data showed that the overall mutation rate was an order of magnitude lower than that in cancer. We detected varied allele fractions of the pSNMs among multiple samples obtained from the same individuals, including blood, saliva, hair follicle, buccal mucosa, urine, and semen samples, indicating that pSNMs could affect multiple sources of somatic cells as well as germ cells. Two of the adults have children who were diagnosed with Dravet syndrome. We identified two non-synonymous pSNMs in SCN1A, a causal gene for Dravet syndrome, from these two unrelated adults and found that the mutant alleles were transmitted to their children, highlighting the clinical importance of detecting pSNMs in genetic counseling.
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页码:1311 / 1327
页数:16
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