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基于长读测序的 MNS 血型鉴定大型分析平台的研究。

The Research of a Large-Scale Analysis Platform for MNS Blood Group Identification Based on Long-Read Sequencing.

机构信息

Shaanxi Blood Center, Xi'an, China.

Shaanxi Blood Center, Xi'an, China.

出版信息

Transfus Med Rev. 2024 Oct;38(4):150836. doi: 10.1016/j.tmrv.2024.150836. Epub 2024 May 21.

Abstract

The objective of this study was to devise a novel approach for determining MNS blood group utilizing long-read sequencing (LRS) and to identify intricate genome variations associated with this blood group system. In this study, a total of 60 blood samples were collected from randomly selected Chinese Han blood donors. The amplification of the full-length sequences of GYPA exon 2-7 (11 kb) and GYPB exon 2-6 (7 kb) was conducted on the blood samples obtained from these 60 donors. Subsequently, the sequencing of these amplified sequences was performed using the PacBio platform. The obtained sequencing data were then compared with the reference sequence of the human genome (GRCh38) utilizing the pbmm2 software, resulting in the acquisition of the haploid sequences of GYPA and GYPB. The serological typing prediction was conducted using the International Society of Blood Transfusion (ISBT) database, while the analysis of SNVs sites was performed using deepvariant v1.2.0 software and reference sequence alignment. A total of 60 samples yielded unambiguous high-quality haplotypes, which can serve as a standardized reference sequence for molecular biology typing of MNSs in the Chinese population. In a total of 60 serological samples, the LRS method successfully identified the M, N, S, and s blood group antigens by analyzing specific genetic variations (c.59, c.71, c.72 for GYPA, and c.143 for GYPB), which aligned with the results obtained through conventional serological techniques. 4 Mur samples that had been previously validated through serology and molecular biology were successfully confirmed, and complete haploid sequences were obtained. Notably, one of the Mur samples exhibited a novel breakpoint, GYP (B1-136-B ψ 137-212-A213-229-B230-366), thereby representing a newly identified subtype. Single molecule sequencing, which eliminates the necessity for PCR amplification, effectively encompasses GC and high repeat regions, enhancing accuracy in quantifying mutations with low abundance or frequency. By employing LRS analysis of the core region of GYPA and GYPB, diverse genotypes of MNS can be precisely and reliably identified in a single assay. This approach presents a comprehensive, expeditious, and precise novel method for the categorization and investigation of MNS blood group system.

摘要

本研究旨在设计一种利用长读测序(LRS)确定 MNS 血型的新方法,并鉴定与该血型系统相关的复杂基因组变异。在这项研究中,共收集了 60 名随机选择的中国汉族献血者的血样。对这 60 名供者血样中全长序列的 GYPA 外显子 2-7(11kb)和 GYPB 外显子 2-6(7kb)进行扩增。随后,使用 PacBio 平台对这些扩增序列进行测序。将获得的测序数据与人类基因组参考序列(GRCh38)利用 pbmm2 软件进行比较,获得 GYPA 和 GYPB 的单倍体序列。使用国际输血协会(ISBT)数据库进行血清学分型预测,使用 deepvariant v1.2.0 软件和参考序列比对进行 SNV 位点分析。总共 60 个样本产生了明确的高质量单倍型,可以作为中国人群 MNSs 分子生物学分型的标准化参考序列。在总共 60 个血清学样本中,LRS 方法通过分析特定的遗传变异(GYPA 的 c.59、c.71、c.72 和 GYPB 的 c.143)成功地鉴定了 M、N、S 和 s 血型抗原,这与通过传统血清学技术获得的结果一致。4 个 Mur 样本之前已经通过血清学和分子生物学验证,成功确认,并获得了完整的单倍型序列。值得注意的是,一个 Mur 样本显示了一个新的断点,GYP(B1-136-Bψ137-212-A213-229-B230-366),因此代表了一个新发现的亚型。单分子测序,消除了 PCR 扩增的需要,有效地包含 GC 和高重复区域,提高了低丰度或低频率突变的定量准确性。通过对 GYPA 和 GYPB 核心区域的 LRS 分析,可以在一次检测中精确和可靠地鉴定 MNS 的多种基因型。这种方法为 MNS 血型系统的分类和研究提供了一种全面、快速和精确的新方法。

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