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用于识别多种类型多态性移动元件插入的综合移动元件扫描(ME-Scan)方法。

Integrated Mobile Element Scanning (ME-Scan) method for identifying multiple types of polymorphic mobile element insertions.

作者信息

Loh Jui Wan, Ha Hongseok, Lin Timothy, Sun Nawei, Burns Kathleen H, Xing Jinchuan

机构信息

1Department of Genetics, Rutgers, the State University of New Jersey, Piscataway, NJ 08854 USA.

2Human Genetic Institute of New Jersey, Rutgers, the State University of New Jersey, Piscataway, 08854 NJ USA.

出版信息

Mob DNA. 2020 Feb 22;11:12. doi: 10.1186/s13100-020-00207-x. eCollection 2020.

Abstract

BACKGROUND

Mobile elements are ubiquitous components of mammalian genomes and constitute more than half of the human genome. Polymorphic mobile element insertions (pMEIs) are a major source of human genomic variation and are gaining research interest because of their involvement in gene expression regulation, genome integrity, and disease.

RESULTS

Building on our previous Mobile Element Scanning (ME-Scan) protocols, we developed an integrated ME-Scan protocol to identify three major active families of human mobile elements, Yb, L1HS, and SVA. This approach selectively amplifies insertion sites of currently active retrotransposons for Illumina sequencing. By pooling the libraries together, we can identify pMEIs from all three mobile element families in one sequencing run. To demonstrate the utility of the new ME-Scan protocol, we sequenced 12 human parent-offspring trios. Our results showed high sensitivity (> 90%) and accuracy (> 95%) of the protocol for identifying pMEIs in the human genome. In addition, we also tested the feasibility of identifying somatic insertions using the protocol.

CONCLUSIONS

The integrated ME-Scan protocol is a cost-effective way to identify novel pMEIs in the human genome. In addition, by developing the protocol to detect three mobile element families, we demonstrate the flexibility of the ME-Scan protocol. We present instructions for the library design, a sequencing protocol, and a computational pipeline for downstream analyses as a complete framework that will allow researchers to easily adapt the ME-Scan protocol to their own projects in other genomes.

摘要

背景

移动元件是哺乳动物基因组中普遍存在的组成部分,占人类基因组的一半以上。多态性移动元件插入(pMEIs)是人类基因组变异的主要来源,由于其参与基因表达调控、基因组完整性和疾病等过程而受到越来越多的研究关注。

结果

基于我们之前的移动元件扫描(ME-Scan)方案,我们开发了一种综合的ME-Scan方案,以识别人类移动元件的三个主要活跃家族,即Yb、L1HS和SVA。这种方法选择性地扩增当前活跃反转录转座子的插入位点,用于Illumina测序。通过将文库汇集在一起,我们可以在一次测序运行中从所有三个移动元件家族中识别pMEIs。为了证明新的ME-Scan方案的实用性,我们对12个人类亲子三联体进行了测序。我们的结果显示,该方案在识别人类基因组中的pMEIs方面具有高灵敏度(>90%)和高准确性(>95%)。此外,我们还测试了使用该方案识别体细胞插入的可行性。

结论

综合的ME-Scan方案是一种经济有效的方法,可用于识别人类基因组中的新型pMEIs。此外,通过开发检测三个移动元件家族的方案,我们展示了ME-Scan方案的灵活性。我们提供了文库设计说明、测序方案以及用于下游分析的计算流程,作为一个完整的框架,使研究人员能够轻松地将ME-Scan方案应用于他们在其他基因组中的项目。

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