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利用低深度全基因组亚硫酸氢盐测序在髓母细胞瘤中进行稳健的分子亚组分析和无参考的非整倍体检测。

Robust molecular subgrouping and reference-free aneuploidy detection in medulloblastoma using low-depth whole genome bisulfite sequencing.

作者信息

Thompson Dean, Castle Jemma, Sill Martin, Pfister Stefan M, Bailey Simon, Hicks Debbie, Clifford Steven C, Schwalbe Edward C

机构信息

Wolfson Childhood Cancer Research Centre, Newcastle University Centre for Cancer, Newcastle Upon Tyne, UK.

Department of Applied Sciences, Faculty of Health and Life Sciences, Northumbria University, Newcastle Upon Tyne, UK.

出版信息

Acta Neuropathol Commun. 2025 Jun 24;13(1):132. doi: 10.1186/s40478-025-02049-1.

Abstract

Medulloblastoma comprises four principal molecular disease groups and their component subgroups, each with distinct molecular and clinical features. Group assignment is currently achieved diagnostically using Illumina DNA methylation microarray. Whole-genome sequencing (WGS) capacity is rapidly expanding in the clinical setting and the development of platform-independent, sequence-based assays of molecular group offers significant potential. Specifically, whole-genome bisulfite sequencing (WGBS) enables assessment of genome-wide methylation status at single-base resolution, however its routine application has been limited by high DNA input requirements, cost, and a lack of pipelines tailored to more rapidly-acquired and cost-effective low-depth (< 10x) sequencing data. We utilised WGBS data for 69 medulloblastomas, comprising 35 in-house low-depth (~ 10x) and 34 publicly available high-depth (~ 30x) samples, alongside cerebellar controls (n = 8), all with matched DNA methylation microarray data. We assessed quality (QC) and imputation approaches using low-pass WGBS data, assessed inter-platform correlation and identified molecular groups and subgroups by directly integrating matched/associated loci from WGBS sample data with the MNP classifier probeset. We further assessed and optimised reference-free aneuploidy detection using low-pass WGBS and assessed concordance with microarray-derived calls. We developed and optimised pipelines for processing, QC, and analysis of low-pass WGBS data, suitable for routine molecular subgrouping and reference-free aneuploidy assessment. We demonstrate that low-pass WGBS data can (i) be integrated into existing array-trained models with high assignment probabilities for both principal molecular groups (97% concordance) and molecular subgroups (94.2% concordance), and (ii) detect clinically relevant focal copy number changes, including SNCAIP, with greater sensitivity than microarray approaches. Low-pass WGBS performs equivalently to array-based methods at comparable cost. Finally, its ascertainment of the full methylome enables elucidation of additional biological complexity and inter-tumoural heterogeneity that has hitherto been inaccessible. These findings provide proof-of-concept for clinical adoption of low-pass WGBS, applied using standard WGS technology.

摘要

髓母细胞瘤包含四个主要分子疾病组及其组成亚组,每组都有独特的分子和临床特征。目前通过Illumina DNA甲基化微阵列进行诊断分组。全基因组测序(WGS)能力在临床环境中迅速扩展,基于序列的、不依赖平台的分子组检测方法的开发具有巨大潜力。具体而言,全基因组亚硫酸氢盐测序(WGBS)能够在单碱基分辨率下评估全基因组甲基化状态,但其常规应用受到高DNA输入要求、成本以及缺乏针对更快获取和更具成本效益的低深度(<10x)测序数据定制的流程的限制。我们利用了69例髓母细胞瘤的WGBS数据,包括35例内部低深度(约10x)和34例公开可得的高深度(约30x)样本,以及小脑对照(n = 8),所有样本均有匹配的DNA甲基化微阵列数据。我们使用低通量WGBS数据评估了质量控制(QC)和插补方法,评估了不同平台间的相关性,并通过将WGBS样本数据中的匹配/相关位点与MNP分类器探针集直接整合来识别分子组和亚组。我们进一步评估并优化了使用低通量WGBS进行的无参考非整倍体检测,并评估了与微阵列检测结果的一致性。我们开发并优化了用于处理、QC和分析低通量WGBS数据的流程,适用于常规分子亚组分类和无参考非整倍体评估。我们证明,低通量WGBS数据能够(i)以高分配概率整合到现有的基于阵列训练的模型中,用于主要分子组(一致性为97%)和分子亚组(一致性为94.2%),以及(ii)检测临床相关的局灶性拷贝数变化,包括SNCAIP,其灵敏度高于微阵列方法。低通量WGBS在可比成本下与基于阵列的方法表现相当。最后,其对全甲基化组的确定能够阐明迄今无法获取的额外生物学复杂性和肿瘤间异质性。这些发现为使用标准WGS技术应用低通量WGBS在临床上的采用提供了概念验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/de08/12186449/bb5e1d84b1b5/40478_2025_2049_Fig1_HTML.jpg

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