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通过链接读取全基因组测序技术对小儿急性淋巴细胞白血病的结构异常进行精细化检测和相位分析。

Refined detection and phasing of structural aberrations in pediatric acute lymphoblastic leukemia by linked-read whole-genome sequencing.

机构信息

Department of Medical Sciences, Molecular Medicine and Science for Life Laboratory, Uppsala University, Uppsala, Sweden.

Department of Immunology, Genetics and Pathology and Science for Life Laboratory, Uppsala University, Uppsala, Sweden.

出版信息

Sci Rep. 2020 Feb 13;10(1):2512. doi: 10.1038/s41598-020-59214-w.

Abstract

Structural chromosomal rearrangements that can lead to in-frame gene-fusions are a leading source of information for diagnosis, risk stratification, and prognosis in pediatric acute lymphoblastic leukemia (ALL). Traditional methods such as karyotyping and FISH struggle to accurately identify and phase such large-scale chromosomal aberrations in ALL genomes. We therefore evaluated linked-read WGS for detecting chromosomal rearrangements in primary samples of from 12 patients diagnosed with ALL. We assessed the effect of input DNA quality on phased haplotype block size and the detectability of copy number aberrations and structural variants in the ALL genomes. We found that biobanked DNA isolated by standard column-based extraction methods was sufficient to detect chromosomal rearrangements even at low 10x sequencing coverage. Linked-read WGS enabled precise, allele-specific, digital karyotyping at a base-pair resolution for a wide range of structural variants including complex rearrangements and aneuploidy assessment. With use of haplotype information from the linked-reads, we also identified previously unknown structural variants, such as a compound heterozygous deletion of ERG in a patient with the DUX4-IGH fusion gene. We conclude that linked-read WGS allows detection of important pathogenic variants in ALL genomes at a resolution beyond that of traditional karyotyping and FISH.

摘要

结构染色体重排可导致基因融合,是小儿急性淋巴细胞白血病 (ALL) 诊断、风险分层和预后的重要信息来源。传统方法,如核型分析和 FISH,难以准确识别和定相 ALL 基因组中的这种大规模染色体异常。因此,我们评估了链接读取 WGS 在 12 名诊断为 ALL 的患者的原始样本中检测染色体重排的能力。我们评估了输入 DNA 质量对相分单倍型块大小以及 ALL 基因组中拷贝数异常和结构变体的检测能力的影响。我们发现,即使在低 10x 测序覆盖度下,使用标准基于柱的提取方法分离的生物库 DNA 也足以检测染色体重排。链接读取 WGS 能够以碱基对分辨率进行精确的、等位基因特异性的数字核型分析,适用于广泛的结构变体,包括复杂重排和非整倍体评估。通过使用链接读取的单倍型信息,我们还鉴定了先前未知的结构变体,例如具有 DUX4-IGH 融合基因的患者中 ERG 的复合杂合性缺失。我们得出结论,链接读取 WGS 可以在传统核型分析和 FISH 分辨率之外检测 ALL 基因组中的重要致病性变体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ec/7018692/504458f02f00/41598_2020_59214_Fig1_HTML.jpg

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