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长链分子测序:一种鉴定α-地中海贫血和β-地中海贫血携带者中临床显著 DNA 变异的新方法。

Long-Molecule Sequencing: A New Approach for Identification of Clinically Significant DNA Variants in α-Thalassemia and β-Thalassemia Carriers.

机构信息

Fujian Provincial Key Laboratory for Prenatal Diagnosis and Birth Defect, Affiliated Hospital of Fujian Medical University, Fuzhou, People's Republic of China.

Berry Genomics Corp., Beijing, People's Republic of China.

出版信息

J Mol Diagn. 2020 Aug;22(8):1087-1095. doi: 10.1016/j.jmoldx.2020.05.004. Epub 2020 May 29.

DOI:10.1016/j.jmoldx.2020.05.004
PMID:32473995
Abstract

Multiple molecular tests are currently needed for accurate carrier testing for thalassemia. Therefore, long-molecule sequencing (LMS) was evaluated as an alternate on the PacBio Sequel platform for genotyping carriers of α-thalassemia or β-thalassemia. Multiplex long PCR was used to generate representative amplicons for the α (HBA1/2) and β (HBB) gene loci. Following LMS, circular consensus sequencing reads were aligned to the hg19 reference genome and variants called using FreeBayes software version 1.2.0. In a blinded study of 64 known carrier samples, all HBA1/2 and HBB variants detected by LMS were concordant with those independently assigned by targeted PCR assays. For HBA1/2 carrier samples, LMS accurately detected the common South East Asian, -α3.7, and -α4.2 deletions and four different rare single-nucleotide variants (SNVs). For HBB carrier samples, LMS accurately detected the most common Chinese insertion and deletion variant c.126_129delCTTT and 14 different SNVs/insertions and deletions and could discriminate compound heterozygous SNVs (trans configuration) and identify variants linked to benign SNPs (cis configuration). Overall, LMS displayed the hallmarks of a scalable, accurate, and cost-effective genotyping method. With further test coverage to additionally include detection of other clinically significant HBA1/2 copy number variations, such as the Thai, Mediterranean, and Filipino deletions, LMS may eventually serve as a comprehensive method for large-scale thalassemia carrier screening.

摘要

目前需要多种分子检测方法来准确进行地中海贫血携带者检测。因此,我们评估了 PacBio Sequel 平台上的长链测序(LMS)作为替代方法,用于对α-地中海贫血或β-地中海贫血携带者进行基因分型。使用多重长 PCR 生成代表α(HBA1/2)和β(HBB)基因座的扩增子。在 LMS 之后,使用 hg19 参考基因组对环状一致测序reads 进行比对,并使用 FreeBayes 软件版本 1.2.0 对变体进行调用。在对 64 个已知携带者样本进行的盲法研究中,LMS 检测到的所有 HBA1/2 和 HBB 变体均与通过靶向 PCR 检测方法独立分配的变体一致。对于 HBA1/2 携带者样本,LMS 准确检测到常见的东南亚缺失 -α3.7 和 -α4.2,以及四种不同的罕见单核苷酸变体(SNVs)。对于 HBB 携带者样本,LMS 准确检测到最常见的中国插入和缺失变体 c.126_129delCTTT 以及 14 种不同的 SNVs/插入和缺失,并且能够区分复合杂合 SNVs(反式构型)并识别与良性 SNVs 相关的变体(顺式构型)。总体而言,LMS 显示出可扩展、准确和具有成本效益的基因分型方法的特点。随着进一步的测试覆盖范围增加,以额外包括检测其他临床上重要的 HBA1/2 拷贝数变异,如泰国、地中海和菲律宾缺失,LMS 最终可能成为大规模地中海贫血携带者筛查的综合方法。

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