Gerritsen K E H, Olieslagers T I, Groeneweg M, Voorter C E M, Tilanus M G J
Department of Transplantation Immunology, Tissue Typing Laboratory, Maastricht University Medical Centre, Maastricht, The Netherlands.
Tissue Antigens. 2014 Nov;84(5):450-8. doi: 10.1111/tan.12436. Epub 2014 Sep 23.
The functional relevance of human leukocyte antigen (HLA) class I allele polymorphism beyond exons 2 and 3 is difficult to address because more than 70% of the HLA class I alleles are defined by exons 2 and 3 sequences only. For routine application on clinical samples we improved and validated the HLA sequence-based typing (SBT) approach based on RNA templates, using either a single locus-specific or two overlapping group-specific polymerase chain reaction (PCR) amplifications, with three forward and three reverse sequencing reactions for full length sequencing. Locus-specific HLA typing with RNA SBT of a reference panel, representing the major antigen groups, showed identical results compared to DNA SBT typing. Alleles encountered with unknown exons in the IMGT/HLA database and three samples, two with Null and one with a Low expressed allele, have been addressed by the group-specific RNA SBT approach to obtain full length coding sequences. This RNA SBT approach has proven its value in our routine full length definition of alleles.
人类白细胞抗原(HLA)I类等位基因外显子2和3以外的多态性的功能相关性难以研究,因为超过70%的HLA I类等位基因仅由外显子2和3序列定义。对于临床样本的常规应用,我们改进并验证了基于RNA模板的HLA序列分型(SBT)方法,使用单一位点特异性或两个重叠的组特异性聚合酶链反应(PCR)扩增,并进行三个正向和三个反向测序反应以进行全长测序。对代表主要抗原组的参考面板进行RNA SBT的位点特异性HLA分型,与DNA SBT分型相比显示出相同的结果。IMGT/HLA数据库中遇到的具有未知外显子的等位基因以及三个样本(两个为无效等位基因,一个为低表达等位基因),已通过组特异性RNA SBT方法获得全长编码序列。这种RNA SBT方法已在我们对等位基因的常规全长定义中证明了其价值。