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使用 Oxford Nanopore MinION 对 基因的单核苷酸和结构变异进行调用和分相。

Calling and Phasing of Single-Nucleotide and Structural Variants of the Gene Using Oxford Nanopore MinION.

机构信息

Research Institute of Medical Genetics, Tomsk National Research Medical Center, Russian Academy of Sciences, Tomsk 634050, Russia.

Institute of Cytology and Genetics, Siberian Branch of Russian Academy of Sciences, Novosibirsk 630090, Russia.

出版信息

Int J Mol Sci. 2023 Feb 24;24(5):4471. doi: 10.3390/ijms24054471.

Abstract

The locus has clinical significance for lipid metabolism, Mendelian familial hypercholesterolemia (FH), and common lipid metabolism-related diseases (coronary artery disease and Alzheimer's disease), but its intronic and structural variants are underinvestigated. The aim of this study was to design and validate a method for nearly complete sequencing of the gene using long-read Oxford Nanopore sequencing technology (ONT). Five PCR amplicons from of three patients with compound heterozygous FH were analyzed. We used standard workflows of EPI2ME Labs for variant calling. All rare missense and small deletion variants detected previously by massively parallel sequencing and Sanger sequencing were identified using ONT. One patient had a 6976 bp deletion (exons 15 and 16) that was detected by ONT with precisely located breakpoints between and . -heterozygous associations between mutation c.530C>T and c.1054T>C, c.2141-966_2390-330del, and c.1327T>C, and between mutations c.1246C>T and c.940+3_940+6del of , were confirmed. We demonstrated the ability of ONT to phase variants, thereby enabling haplotype assignment for with personalized resolution. The ONT-based method was able to detect exonic variants with the additional benefit of intronic analysis in one run. This method can serve as an efficient and cost-effective tool for diagnosing FH and conducting research on extended haplotype reconstruction.

摘要

该基因座与脂质代谢、孟德尔家族性高胆固醇血症 (FH) 和常见脂质代谢相关疾病(冠心病和阿尔茨海默病)具有临床意义,但对其内含子和结构变异的研究较少。本研究旨在设计并验证一种使用长读长 Oxford Nanopore 测序技术(ONT)对 基因进行近乎完整测序的方法。对 3 名复合杂合性 FH 患者的 5 个 PCR 扩增子进行了分析。我们使用 EPI2ME Labs 的标准工作流程进行变异调用。使用 ONT 鉴定了先前通过大规模平行测序和 Sanger 测序检测到的所有罕见错义和小缺失变异。一名患者存在 6976bp 缺失(外显子 15 和 16),ONT 精确检测到 和 之间的断点。还证实了突变 c.530C>T 和 c.1054T>C、c.2141-966_2390-330del 和 c.1327T>C 之间以及突变 c.1246C>T 和 c.940+3_940+6del 之间的 -杂合性关联,这些突变位于 内。我们证明了 ONT 能够定相变异体,从而能够为 分配单体型,具有个性化分辨率。ONT 方法不仅能够检测外显子变异,还能够在一次运行中进行内含子分析,具有额外的优势。这种方法可以作为一种高效且具有成本效益的工具,用于诊断 FH 和进行扩展 单体型重建的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0394/10003201/f9e8e3686093/ijms-24-04471-g001.jpg

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