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开发一种多重甲基化敏感限制性内切酶 SNP 分型系统,用于精液混合样本的解析。

Development of a multiplex methylation-sensitive restriction enzyme-based SNP typing system for deconvolution of semen-containing mixtures.

机构信息

School of Forensic Medicine, Shanxi Medical University, Jinzhong, Shanxi, 030619, People's Republic of China.

出版信息

Int J Legal Med. 2021 Jul;135(4):1281-1294. doi: 10.1007/s00414-021-02552-9. Epub 2021 Apr 4.

Abstract

The identification of mixed stains has always been a difficult problem in personal identification in the forensic field. In recent years, tissue-specific methylation sites have proven to be very stable biomarkers for distinguishing tissue origin. However, it is still challenging to perform tissue source identification and individual identification simultaneously. In this study, we developed a method that uses tissue-specific methylation markers combined with single-nucleotide polymorphism (SNP) markers to detect semen from mixed biofluids and to identify individuals simultaneously. Semen-specific CpG markers were chosen from the literature and further validated utilizing methylation-sensitive restriction endonuclease (MSRE) combined with PCR technology. The neighboring SNP markers were searched in the flanking sequence of the target CpG within 400 bp, and SNP typing was then carried out through a single-base extension reaction followed by capillary electrophoresis. Eventually, a method of MSRE combined with SNaPshot that could detect 12 compound CpG-SNP markers was developed. Using this system, 10 ng of total DNA and DNA mixture with semen content up to 25% could be typed successfully. Moreover, the cumulative discrimination power of the system in the northern Chinese Han population is 0.9998. This study provides a valuable strategy for forensic practice to perform tissue origin and individual identification from mixed stains simultaneously.

摘要

混合痕迹的鉴定一直是法医领域个人鉴定中的难题。近年来,组织特异性甲基化位点已被证明是区分组织来源的非常稳定的生物标志物。然而,同时进行组织来源鉴定和个体识别仍然具有挑战性。在本研究中,我们开发了一种使用组织特异性甲基化标记物结合单核苷酸多态性 (SNP) 标记物来检测混合生物体液中的精液并同时识别个体的方法。从文献中选择了精液特异性 CpG 标记物,并进一步利用甲基敏感限制性内切酶 (MSRE) 结合 PCR 技术进行验证。在目标 CpG 侧翼序列 400 bp 内搜索相邻的 SNP 标记物,并通过单碱基延伸反应和毛细管电泳进行 SNP 分型。最终,开发了一种可以检测 12 种复合 CpG-SNP 标记物的 MSRE 与 SNaPshot 相结合的方法。使用该系统,可成功对 10 ng 总 DNA 和含有高达 25%精液含量的 DNA 混合物进行分型。此外,该系统在北方汉族人群中的累积判别力为 0.9998。本研究为法医实践提供了一种有价值的策略,可同时进行混合痕迹的组织来源和个体识别。

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