Baek In-Cheol, Choi Eun-Jeong, Kim Hyoung-Jae, Choi Haeyoun, Kim Tai-Gyu
Hematopoietic Stem Cell Bank, College of Medicine, The Catholic University of Korea, Seoul, South Korea.
Department of Microbiology, College of Medicine, The Catholic University of Korea, Seoul, South Korea.
HLA. 2023 Jun;101(6):613-622. doi: 10.1111/tan.14981. Epub 2023 Mar 9.
The range of HLA typing for successful hematopoietic stem cell transplantation (HSCT) is gradually expanding with the next-generation sequencing (NGS)-based improvement in its quality. However, it is influenced by the allocation of finances and laboratory conditions. HLA-A, -B, -C, -DRB1/3/4/5, -DQA1, -DQB1, -DPA1, and -DPB1 alleles were genotyped at the 3-field level by amplicon-based NGS using MiSeqDx system and compared to our previous study employing long-range PCR and NGS using TruSight HLA v2 kit, in healthy donors from South Korea. Exon 2, exons 2/3, exons 2/3/4 or 5 of 11-loci were amplified by multiplex PCR. The sequence reads of over 53 depth counts were consistently obtained in each sample exon, depending on the target exon determined to match the reference sequence contained in the IPD-IMGT/HLA Database. HLA alleles were investigated by combinations of the determined exons. A total of 18 alleles with a frequency over 10% were found at the 11 HLA loci. Three ambiguities of HLA-A, -C, and -DRB1 were resolved. We observed a total of 26 HLA-A ~ C ~ B and 6 HLA-DRB1 ~ DQA1 ~ DQB1 ~ DPA1 ~ DPB1 haplotypes having significant linkage disequilibrium between alleles at all neighboring HLA loci. This result was compatible with the previous one, using TruSight HLA v2 kit. Advantages are simple and short progress time because one plate is used for each PCR step in one PCR machine and 11-loci HLA typing is possible even if only eight samples. These data suggested that expanded 11-loci HLA typing data by amplicon-based NGS might help perform HSCT.
随着基于下一代测序(NGS)技术的HLA分型质量的提高,成功进行造血干细胞移植(HSCT)的HLA分型范围正在逐步扩大。然而,这受到资金分配和实验室条件的影响。在韩国健康供体中,使用MiSeqDx系统通过基于扩增子的NGS在3字段水平对HLA-A、-B、-C、-DRB1/3/4/5、-DQA1、-DQB1、-DPA1和-DPB1等位基因进行基因分型,并与我们之前使用长程PCR和TruSight HLA v2试剂盒进行NGS的研究进行比较。通过多重PCR扩增11个基因座的第2外显子、第2/3外显子、第2/3/4或第5外显子。根据确定与IPD-IMGT/HLA数据库中包含的参考序列匹配的目标外显子,在每个样本外显子中一致获得超过53深度计数的序列读数。通过确定的外显子组合研究HLA等位基因。在11个HLA基因座上共发现18个频率超过10%的等位基因。解决了HLA-A、-C和-DRB1的三个模糊性问题。我们观察到总共26种HLA-A ~ C ~ B和6种HLA-DRB1 ~ DQA1 ~ DQB1 ~ DPA1 ~ DPB1单倍型,在所有相邻HLA基因座的等位基因之间具有显著的连锁不平衡。该结果与之前使用TruSight HLA v2试剂盒的结果一致。优点是操作简单且进展时间短,因为在一台PCR机器中每个PCR步骤使用一个板,即使只有八个样本也可以进行11个基因座的HLA分型。这些数据表明基于扩增子的NGS扩展的11个基因座HLA分型数据可能有助于进行HSCT。