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光学基因组图谱技术有望成为常规临床诊断方法

Optical Genome Mapping as a Potential Routine Clinical Diagnostic Method.

机构信息

Medical Genetics Center (MGZ), 80335 Munich, Germany.

Center for Genetic Medicine Research, Children's National Research Institute, Children's National Hospital, Washington, DC 20012, USA.

出版信息

Genes (Basel). 2024 Mar 7;15(3):342. doi: 10.3390/genes15030342.

Abstract

Chromosome analysis (CA) and chromosomal microarray analysis (CMA) have been successfully used to diagnose genetic disorders. However, many conditions remain undiagnosed due to limitations in resolution (CA) and detection of only unbalanced events (CMA). Optical genome mapping (OGM) has the potential to address these limitations by capturing both structural variants (SVs) resulting in copy number changes and balanced rearrangements with high resolution. In this study, we investigated OGM's concordance using 87 SVs previously identified by CA, CMA, or Southern blot. Overall, OGM was 98% concordant with only three discordant cases: (1) uncalled translocation with one breakpoint in a centromere; (2) uncalled duplication with breakpoints in the pseudoautosomal region 1; and (3) uncalled mosaic triplication originating from a marker chromosome. OGM provided diagnosis for three previously unsolved cases: (1) disruption of the gene due to a balanced reciprocal translocation; (2) disruption of the gene due to an inverted insertion; (3) disruption of the gene due to a mosaic deletion. We show that OGM is a valid method for the detection of many types of SVs in a single assay and is highly concordant with legacy cytogenomic methods; however, it has limited SV detection capabilities in centromeric and pseudoautosomal regions.

摘要

染色体分析 (CA) 和染色体微阵列分析 (CMA) 已成功用于诊断遗传疾病。然而,由于分辨率的限制 (CA) 和仅能检测不平衡事件 (CMA),许多情况仍未得到诊断。光学基因组图谱 (OGM) 通过捕获导致拷贝数变化的结构变异 (SV) 和高分辨率的平衡重排,有可能解决这些限制。在这项研究中,我们使用先前通过 CA、CMA 或 Southern blot 鉴定的 87 个 SV 来研究 OGM 的一致性。总体而言,OGM 的一致性为 98%,只有三个不一致的病例:(1) 有丝分裂中心一个断点的未命名易位;(2) 假常染色体区域 1 有断点的未命名重复;(3) 起源于标记染色体的未命名镶嵌三倍体。OGM 为三个以前未解决的病例提供了诊断:(1) 由于平衡相互易位导致的 基因破坏;(2) 由于倒位插入导致的 基因破坏;(3) 由于镶嵌缺失导致的 基因破坏。我们表明,OGM 是一种在单次检测中检测多种类型 SV 的有效方法,与传统细胞遗传学方法高度一致;然而,它在着丝粒和假常染色体区域的 SV 检测能力有限。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40ad/10970541/37cfbbffbf57/genes-15-00342-g001.jpg

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