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人类白细胞抗原的下一代测序:巴西人群中新多态性的验证与鉴定

Next-generation sequencing of HLA: validation and identification of new polymorphisms in a Brazilian population.

作者信息

Fabreti-Oliveira Raquel A, Oliveira Cintia K F, Vale Eliane M G, Nascimento Evaldo

机构信息

Faculty of Medical Sciences, Belo Horizonte, Brazil.

IMUNOLAB-Histocompatibility Laboratory, Belo Horizonte, Brazil.

出版信息

HLA. 2020 Jul;96(1):13-23. doi: 10.1111/tan.13880. Epub 2020 Apr 17.

Abstract

BACKGROUND

Next-generation sequencing (NGS) is the most modern sequencing technique that has revolutionized HLA typing, providing high-resolution results with low ambiguity rates. This study aimed to show the experiences and challenges of an HLA laboratory in the validation process of the NGS methodology for HLA typing and show the use of this method for the study of HLA genetic diversity.

METHODS

We used 115 samples that comprised a comprehensive testing panel for validation of the NGS methodology using the AllType kit (One Lambda, Canoga Park, California) on the Ion Torrent S5 NGS platform. All quality metrics were analyzed. During validation, two new HLA sequences were identified and named by the HLA Nomenclature Committee.

RESULTS

A total of 1380 alleles from the HLA-A, -B, -C, -DRB1, -DQB1, and -DPB1 loci were examined by NGS. This validation panel provided a wide range of HLA sequence variations, including non-CWD HLA alleles, new variants, and homozygous alleles. The concordance rate with Sanger sequencing-based typing was 100.0% for HLA-A, -B, -C, -DRB1, -DQB1, and 99.93% for HLA-DPB1. The newly identified HLA alleles were HLA-B14:69N and HLA-DQB102:145.

CONCLUSION

We have successfully validated NGS HLA typing despite numerous challenges, contributing to the identification of novel alleles that impact on HLA matching and antibody evaluation in organ and tissue transplantation.

摘要

背景

下一代测序(NGS)是最现代的测序技术,它彻底改变了HLA分型,以低模糊率提供高分辨率结果。本研究旨在展示一个HLA实验室在NGS方法用于HLA分型的验证过程中的经验和挑战,并展示该方法在HLA基因多样性研究中的应用。

方法

我们使用了115个样本,这些样本构成了一个综合测试面板,用于在Ion Torrent S5 NGS平台上使用AllType试剂盒(One Lambda,加利福尼亚州卡诺加公园)对NGS方法进行验证。分析了所有质量指标。在验证过程中,两个新的HLA序列被HLA命名委员会鉴定并命名。

结果

通过NGS检测了来自HLA-A、-B、-C、-DRB1、-DQB1和-DPB1位点的总共1380个等位基因。这个验证面板提供了广泛的HLA序列变异,包括非CWD HLA等位基因、新变异和纯合等位基因。HLA-A、-B、-C、-DRB·1、-DQB1与基于桑格测序的分型的一致性率为100.0%,HLA-DPB1为99.93%。新鉴定的HLA等位基因为HLA-B14:69N和HLA-DQB102:145。

结论

尽管面临诸多挑战,我们仍成功验证了NGS HLA分型,这有助于鉴定影响器官和组织移植中HLA匹配和抗体评估的新等位基因。

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