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Accurate and comprehensive analysis of single nucleotide variants and large deletions of the human mitochondrial genome in DNA and single cells

机译:对单核苷酸变体的准确和综合分析,DNA和单细胞中人体线粒体基因组的大缺失

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摘要

Massive parallel sequencing (MPS) can accurately quantify mitochondrial DNA (mtDNA) single nucleotide variants (SNVs), but no MPS methods are currently validated to simultaneously and accurately establish the breakpoints and frequency of large deletions at low heteroplasmic loads. Here we present the thorough validation of an MPS protocol to quantify the load of very low frequency, large mtDNA deletions in bulk DNA and single cells, along with SNV calling by standard methods. We used a set of well-characterized DNA samples, DNA mixes and single cells to thoroughly control the study. We developed a custom script for the detection of mtDNA rearrangements that proved to be more accurate in detecting and quantifying deletions than preexisting tools. We also show that PCR conditions and primersets must be carefully chosen to avoid biases in the retrieved variants and an increase in background noise, and established a lower detection limit of 0.5% heteroplasmic load for large deletions, and 1.5 and 2% for SNVs, for bulk DNA and single cells, respectively. Finally, the analysis of different single cells provided novel insights into mtDNA cellular mosaicism.
机译:巨大的平行测序(MPS)可以准确地量化线粒体DNA(MTDNA)单核苷酸变体(SNV),但目前没有MPS方法在低异质载荷下同时验证,并准确地确定大缺失的断点和频率。在这里,我们介绍了MPS协议的彻底验证,以量化批量DNA和单个电池中非常低频,大型MTDNA缺失的负载,以及通过标准方法调用SNV呼叫。我们使用了一组良好的DNA样品,DNA混合物和单细胞来彻底控制该研究。我们开发了一种用于检测MTDNA重排的自定义脚本,这些脚本被证明在检测和量化删除方面比预先存在的工具更准确。我们还表明,必须仔细选择PCR条件和引物,以避免在检索的变体中的偏差和背景噪声的增加,并建立较低的检测限为0.5%的异质载荷,用于大缺失,为SNV的1.5%和2%批量DNA和单细胞。最后,对不同单细胞的分析为MTDNA细胞镶嵌提供了新的洞察力。

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    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

    Univ Libre Bruxelles Vrije Univ Brussel UZ Brussel Brussels Interuniv Genom High Throughput Core;

    Katholieke Univ Leuven Dept Human Genet Leuven Belgium;

    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

    Univ Libre Bruxelles Vrije Univ Brussel UZ Brussel Brussels Interuniv Genom High Throughput Core;

    Univ Libre Bruxelles Vrije Univ Brussel UZ Brussel Brussels Interuniv Genom High Throughput Core;

    SISMeR Reprod Med Unit Bologna Italy;

    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

    Katholieke Univ Leuven Dept Human Genet Leuven Belgium;

    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

    Vrije Univ Brussel Fac Med &

    Pharm Res Grp Reprod &

    Genet Laarbeeklaan 103 B-1090 Brussels;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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