DKMS Life Science Lab, Dresden, Germany.
DKMS, Tübingen, Germany.
Methods Mol Biol. 2024;2809:145-156. doi: 10.1007/978-1-0716-3874-3_10.
The prerequisite for successful HLA genotyping is the integrity of the large allele reference database IPD-IMGT/HLA. Consequently, it is in the laboratories' best interest that the data quality of submitted novel sequences is high. However, due to its long and variable length, the gene HLA-DRB1 presents the biggest challenge and as of today only 16% of the HLA-DRB1 alleles in the database are characterized in full length. To improve this situation, we developed a protocol for long-range PCR amplification of targeted HLA-DRB1 alleles. By subsequently combining both long-read and short-read sequencing technologies, our protocol ensures phased and error-corrected sequences of reference grade quality. This dual redundant reference sequencing (DR2S) approach is of particular importance for correctly resolving the challenging repeat regions of DRB1 intron 1. Until today, we used this protocol to characterize and submit 384 full-length HLA-DRB1 sequences to IPD-IMGT/HLA.
成功进行 HLA 基因分型的前提是大型等位基因参考数据库 IPD-IMGT/HLA 的完整性。因此,提交的新序列的数据质量越高,对实验室就越有利。然而,由于其长度长且可变,HLA-DRB1 基因带来了最大的挑战,截至今天,数据库中只有 16%的 HLA-DRB1 等位基因具有全长特征。为了改善这种情况,我们开发了一种用于靶向 HLA-DRB1 等位基因的长距离 PCR 扩增的方案。通过随后结合长读和短读测序技术,我们的方案确保了具有参考级质量的分相和纠错序列。这种双重冗余参考测序(DR2S)方法对于正确解析 DRB1 内含子 1 的具有挑战性的重复区域尤为重要。到目前为止,我们使用该方案对 384 个全长 HLA-DRB1 序列进行了特征描述并提交给了 IPD-IMGT/HLA。