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SIDR: simultaneous isolation and parallel sequencing of genomic DNA and total RNA from single cells

机译:SIDR:单细胞基因组DNA和总RNA的同时分离和平行测序

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摘要

Simultaneous sequencing of the genome and transcriptome at the single-cell level is a powerful tool for characterizing genomic and transcriptomic variation and revealing correlative relationships. However, it remains technically challenging to analyze both the genome and transcriptome in the same cell. Here, we report a novel method for simultaneous isolation of genomic DNA and total RNA(SIDR) from single cells, achieving high recovery rates with minimal cross-contamination, as is crucial for accurate description and integration of the single-cell genome and transcriptome. For reliable and efficient separation of genomic DNA and total RNA from single cells, the method uses hypotonic lysis to preserve nuclear lamina integrity and subsequently captures the cell lysate using antibody-conjugated magnetic microbeads. Evaluating the performance of this method using real-time PCR demonstrated that it efficiently recovered genomic DNA and total RNA. Thorough data quality assessments showed that DNA and RNA simultaneously fractionated by the SIDR method were suitable for genome and transcriptome sequencing analysis at the single-cell level. The integration of single-cell genome and transcriptome sequencing by SIDR (SIDR-seq) showed that genetic alterations, such as copy-number and single-nucleotide variations, were more accurately captured by single-cell SIDR-seq compared with conventional single-cell RNA-seq, although copy-number variations positively correlated with the corresponding gene expression levels. These results suggest that SIDR-seq is potentially a powerful tool to reveal genetic heterogeneity and phenotypic information inferred from gene expression patterns at the single-cell level.
机译:在单细胞水平上同时测序基因组和转录组是一种有效的工具,用于表征基因组和转录组变异并揭示相关关系。然而,在同一细胞中分析基因组和转录组仍然有技术上挑战。这里,我们报告了一种新的方法,用于同时分离单细胞的基因组DNA和总RNA(SIDR),实现具有最小交叉污染的高回收率,对于单细胞基因组和转录组的准确描述和整合至关重要。为了可靠和有效地分离从单细胞中的基因组DNA和总RNA,该方法使用低渗裂解以保持核薄层完整性,随后使用抗体缀合的磁性微珠捕获细胞裂解物。评估使用实时PCR的该方法的性能证明它有效地回收了基因组DNA和总RNA。彻底的数据质量评估表明,SIDR方法同时分馏的DNA和RNA适用于单细胞水平的基因组和转录组测序分析。单细胞基因组的整合和​​SIDR(SIDR-SEQ)的分析表明,与常规单细胞相比,单细胞SIDR-SEQ更精确地捕获遗传改变,例如拷贝数和单核苷酸变化。 RNA-SEQ,虽然复制数变异与相应的基因表达水平正相关。这些结果表明,SIDR-SEQ可能是揭示从单细胞水平的基因表达模式推断出遗传异质性和表型信息的强大工具。

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  • 来源
    《Genome research》 |2018年第1期|共13页
  • 作者单位

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Dept Breast Canc Ctr Seoul 06351 South Korea;

    Samsung Med Ctr Dept Thorac &

    Cardiovasc Surg Seoul 06351 South Korea;

    Sungkyunkwan Univ Dept Hlth Sci &

    Technol SAIHST Seoul 06351 South Korea;

    Sungkyunkwan Univ Div Hematol Oncol Dept Med Samsung Med Ctr Sch Med Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

    Samsung Med Ctr Samsung Genome Inst Seoul 06351 South Korea;

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  • 正文语种 eng
  • 中图分类 医学遗传学;
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