Moonsamy P V, Williams T, Bonella P, Holcomb C L, Höglund B N, Hillman G, Goodridge D, Turenchalk G S, Blake L A, Daigle D A, Simen B B, Hamilton A, May A P, Erlich H A
Roche Molecular Systems, Inc., Pleasanton, CA, USA.
Tissue Antigens. 2013 Mar;81(3):141-9. doi: 10.1111/tan.12071.
The human leukocyte antigen (HLA) class I and class II loci are the most polymorphic genes in the human genome; distinguishing the thousands of HLA alleles is challenging. Next generation sequencing of exonic amplicons with the 454 genome sequence (GS) FLX System and Conexio Assign ATF 454 software provides high resolution, high throughput HLA genotyping for eight class I and class II loci. HLA typing of potential donors for unrelated bone marrow donor registries typically uses a subset of these loci at high sample throughput and low cost per sample. The Fluidigm Access Array System enables the incorporation of 48 different multiplex identifiers (MIDs) corresponding to 48 genomic DNA samples with up to 48 different primer pairs in a microfluidic device generating 2304 parallel polymerase chain reactions (PCRs). Minimal volumes of reagents are used. During genomic PCR, in this 4-primer system, the outer set of primers containing the MID and the 454 adaptor sequences are incorporated into an amplicon generated by the inner HLA target-specific primers each containing a common sequence tag at the 5' end of the forward and reverse primers. Pools of the resulting amplicons are used for emulsion PCR and clonal sequencing on the 454 Life Sciences GS FLX System, followed by genotyping with Conexio software. We have genotyped 192 samples with 100% concordance to known genotypes using 8 primer pairs (covering exons 2 and 3 of HLA-A, B and C, and exon 2 of DRB1, 3/4/5 and DQB1) and 96 MIDs in a single GS FLX run. An average of 166 reads per amplicon was obtained. We have also genotyped 96 samples at high resolution (14 primer pairs covering exons 2, 3, and 4 of the class I loci and exons 2 of DRB1, 3/4/5, DQA1, DQB1, DPB1, and exon 3 of DQB1), recovering an average of 173 sequence reads per amplicon.
人类白细胞抗原(HLA)I类和II类基因座是人类基因组中多态性最高的基因;区分数千种HLA等位基因具有挑战性。使用454基因组序列(GS)FLX系统和Conexio Assign ATF 454软件对外显子扩增子进行下一代测序,可为8个I类和II类基因座提供高分辨率、高通量的HLA基因分型。无关骨髓供体登记处潜在供体的HLA分型通常在高样本通量和低样本成本的情况下使用这些基因座的一个子集。Fluidigm Access Array系统能够在微流控设备中整合48个不同的多重标识符(MID),对应48个基因组DNA样本以及多达48个不同的引物对,从而产生2304个平行聚合酶链反应(PCR)。试剂用量极少。在基因组PCR过程中,在这个四引物系统中,包含MID和454接头序列的外部引物组被整合到由内部HLA靶标特异性引物产生的扩增子中,每个内部引物在正向和反向引物的5'端都含有一个共同序列标签。所得扩增子池用于在454生命科学GS FLX系统上进行乳液PCR和克隆测序,随后使用Conexio软件进行基因分型。我们在一次GS FLX运行中使用8对引物(覆盖HLA - A、B和C的外显子2和3,以及DRB1、3/4/5和DQB1的外显子2)和96个MID对192个样本进行了基因分型,与已知基因型的一致性达100%。每个扩增子平均获得166条读数。我们还使用14对引物(覆盖I类基因座的外显子2、3和4以及DRB1 的外显子2、3/4/5、DQA1、DQB1、DPB1以及DQB1的外显子3)对96个样本进行了高分辨率基因分型,每个扩增子平均获得173条序列读数。