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用于下一代测序深度甲基化分析的OPERA_MET-A面板的设计与实验验证

Design and experimental validation of OPERA_MET-A panel for deep methylation analysis by next generation sequencing.

作者信息

Fabrizio Federico Pio, Castellana Stefano, Centra Flavia, Sparaneo Angelo, Mastroianno Mario, Mazza Tommaso, Coco Michelina, Trombetta Domenico, Cingolani Nicola, Centonza Antonella, Graziano Paolo, Maiello Evaristo, Fazio Vito Michele, Muscarella Lucia Anna

机构信息

Laboratory of Oncology, Fondazione IRCCS, Scientific Institute for Research and Health Care Casa Sollievo della Sofferenza, San Giovanni Rotondo, Italy.

Unit of Bioinformatics, Fondazione IRCCS Casa Sollievo della Sofferenza, San Giovanni Rotondo, Italy.

出版信息

Front Oncol. 2022 Aug 11;12:968804. doi: 10.3389/fonc.2022.968804. eCollection 2022.

Abstract

DNA methylation is the most recognized epigenetic mark that leads to a massive distortion in cancer cells. It has been observed that a large number of DNA aberrant methylation events occur simultaneously in a group of genes, thus providing a growth advantage to the cell in promoting cell differentiation and neoplastic transformation. Due to this reason, methylation profiles have been suggested as promising cancer biomarkers. Here, we designed and performed a first step of validation of a novel targeted next generation sequencing (NGS) panel for methylation analysis, which can simultaneously evaluate the methylation levels at CpG sites of multiple cancer-related genes. The OPERA_MET-A methylation panel was designed using the Ion AmpliSeq™ technology to amplify 155 regions with 125-175 bp mean length and covers a total of 1107 CpGs of 18 cancer-related genes. The performance of the panel was assessed by running commercially available fully methylated and unmethylated control human genomic DNA (gDNA) samples and a variable mixture of them. The libraries were run on Ion Torrent platform and the sequencing output was analyzed using the "methylation_analysis" plugin. DNA methylation calls on both Watson (W) and Crick (C) strands and methylated:unmethylated ratio for each CpG site were obtained. Cell lines, fresh frozen and formalin-fixed paraffin-embedded (FFPE) lung cancer tissues were tested. The OPERA_MET-A panel allows to run a minimum of 6 samples/530 chip to reach an observed mean target depth ≥2,500X (W and C strands) and an average number of mapped reads >750,000/sample. The conversion efficiency, determined by spiking-in unmethylated Lambda DNA into each sample before the bisulfite conversion process, was >97% for all samples. The observed percentage of global methylation for all CpGs was >95% and <5% for fully methylated and unmethylated gDNA samples, respectively, and the observed results for the variable mixtures were in agreement with what was expected. Methylation-specific NGS analysis represents a feasible method for a fast and multiplexed screening of cancer patients by a high-throughput approach. Moreover, it offers the opportunity to construct a more robust algorithm for disease prediction in cancer patients having a low quantity of biological material available.

摘要

DNA甲基化是最广为人知的表观遗传标记,它会导致癌细胞出现大量畸变。据观察,一组基因中会同时发生大量DNA异常甲基化事件,从而在促进细胞分化和肿瘤转化方面为细胞提供生长优势。基于此,甲基化图谱被认为是很有前景的癌症生物标志物。在此,我们设计并开展了一项新型靶向二代测序(NGS)甲基化分析检测板验证的第一步,该检测板能够同时评估多个癌症相关基因CpG位点的甲基化水平。OPERA_MET-A甲基化检测板采用Ion AmpliSeq™技术设计,用于扩增155个区域,平均长度为125 - 175 bp,共覆盖18个癌症相关基因的1107个CpG位点。通过运行市售的完全甲基化和未甲基化对照人基因组DNA(gDNA)样本及其可变混合物来评估该检测板的性能。文库在Ion Torrent平台上运行,并使用“甲基化分析”插件分析测序输出结果。获得了沃森链(W)和克里克链(C)上的DNA甲基化检测结果以及每个CpG位点的甲基化与未甲基化比例。对细胞系、新鲜冷冻和福尔马林固定石蜡包埋(FFPE)肺癌组织进行了检测。OPERA_MET-A检测板每530个芯片最少可检测6个样本,以达到观察到的平均目标深度≥2500X(W链和C链),且每个样本的平均比对读数>750,000。在亚硫酸氢盐转化过程之前,通过向每个样本中加入未甲基化的λDNA来确定的转化效率,所有样本均>97%。对于完全甲基化和未甲基化的gDNA样本,所有CpG位点观察到的全局甲基化百分比分别>95%和<5%,可变混合物的观察结果与预期相符。甲基化特异性NGS分析是一种通过高通量方法对癌症患者进行快速、多重筛查的可行方法。此外,它为在生物材料量少的癌症患者中构建更强大的疾病预测算法提供了机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c84d/9404304/7a45719010c1/fonc-12-968804-g001.jpg

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