Malopolska Centre of Biotechnology, Jagiellonian University, Krakow, Poland.
Institute of Legal Medicine, Medical University of Innsbruck, Innsbruck, Austria.
Aging (Albany NY). 2021 Aug 10;13(15):19145-19164. doi: 10.18632/aging.203399.
DNA methylation analysis is becoming increasingly useful in biomedical research and forensic practice. The discovery of differentially methylated sites (DMSs) that continuously change over an individual's lifetime has led to breakthroughs in molecular age estimation. Although semen samples are often used in forensic DNA analysis, previous epigenetic age prediction studies mainly focused on somatic cell types. Here, Infinium MethylationEPIC BeadChip arrays were applied to semen-derived DNA samples, which identified numerous novel DMSs moderately correlated with age. Validation of the ten most age-correlated novel DMSs and three previously known sites in an independent set of semen-derived DNA samples using targeted bisulfite massively parallel sequencing, confirmed age-correlation for nine new and three previously known markers. Prediction modelling revealed the best model for semen, based on 6 CpGs from newly identified genes , , , and as well as the previously known gene, which predict age with a mean absolute error of 5.1 years in an independent test set. Further increases in the accuracy of age prediction from semen DNA will require technological progress to allow sensitive, simultaneous analysis of a much larger number of age correlated DMSs from the compromised DNA typical of forensic semen stains.
DNA 甲基化分析在生物医学研究和法医学实践中变得越来越有用。发现个体一生中不断变化的差异甲基化位点(DMS),使得分子年龄估计取得了突破。虽然精液样本常用于法医 DNA 分析,但以前的表观遗传年龄预测研究主要集中在体细胞类型上。在这里,我们应用 Infinium MethylationEPIC BeadChip 芯片对精液来源的 DNA 样本进行分析,鉴定出许多与年龄中度相关的新的 DMS。在一组独立的精液来源的 DNA 样本中,使用靶向亚硫酸氢盐大规模平行测序对十个与年龄相关性最强的新 DMS 和三个先前已知的位点进行验证,证实了九个新的和三个先前已知的标记与年龄的相关性。预测模型显示,基于从新鉴定的基因 、 、 、 和 以及先前已知的 基因中鉴定出的 6 个 CpG,基于来自法医精液斑中典型的受损 DNA ,对 6 个 CpG 进行敏感、同时分析,能够对精液进行最佳预测,在独立测试集中,其年龄预测的平均绝对误差为 5.1 岁。要进一步提高从精液 DNA 中预测年龄的准确性,需要技术进步,以便能够对法医精液斑中典型的受损 DNA 中大量与年龄相关的 DMS 进行敏感、同时分析。