Kennedy L J, Poulton K V, Dyer P A, Ollier W E, Thomson W
ARC Epidemiology Research Unit, Manchester University, United Kingdom.
Tissue Antigens. 1995 Sep;46(3 ( Pt 1)):187-95. doi: 10.1111/j.1399-0039.1995.tb03118.x.
Many new HLA-C locus alleles have recently been identified by DNA sequencing, and a molecular based method for their detection using PCR with sequence specific primers has been reported. However, other methods may be more appropriate for the identification of C locus alleles in larger studies. Here we describe one such system, based on PCR sequence specific oligonucleotide probes, (SSOP) for C locus typing. Advantages of SSOP typing compared to SSP are that it is easier to detect new alleles, more cost effective and less time consuming. We have developed a DNA typing method to identify the broad C locus antigens (including those not yet defined serologically) using a minimum of probes with one amplification. We use a C locus specific sense primer in exon 2 and a consensus antisense primer in exon 3, in a two-step PCR, giving a product of 710 bp. Probes were designed with similar melting temperatures (54-56 degrees C) that would identify as many alleles as possible. The method was established using DNA from B lymphoid cell lines of known C locus type, mostly 10th workshop homozygous cell lines, plus as many other sequenced cell lines as possible. The system was able to correctly identify their C locus types using only 26 probes. DNA was tested from a panel of serologically typed individuals which included many different heterozygous combinations. We found a high concordance of results, with all discrepancies being additional antigens identified by molecular typing, filling in serological blanks. We can identify all common heterozygote combinations using this method.
最近通过DNA测序鉴定出了许多新的HLA - C基因座等位基因,并且已经报道了一种基于分子的检测方法,即使用序列特异性引物的PCR方法。然而,在更大规模的研究中,其他方法可能更适合用于C基因座等位基因的鉴定。在此,我们描述一种基于PCR序列特异性寡核苷酸探针(SSOP)的用于C基因座分型的系统。与序列特异性引物(SSP)分型相比,SSOP分型的优势在于更容易检测新等位基因、成本效益更高且耗时更少。我们开发了一种DNA分型方法,使用最少数量的探针通过一次扩增来鉴定广泛的C基因座抗原(包括那些尚未通过血清学定义的抗原)。在两步PCR中,我们在外显子2中使用C基因座特异性正向引物,在外显子3中使用共有反向引物,得到一个710 bp的产物。设计的探针具有相似的解链温度(54 - 56摄氏度),以便能够鉴定尽可能多的等位基因。该方法是使用已知C基因座类型的B淋巴母细胞系的DNA建立的,主要是第10届研讨会的纯合细胞系,以及尽可能多的其他已测序细胞系。该系统仅使用26个探针就能正确鉴定它们的C基因座类型。对一组血清学分型个体的DNA进行了检测,其中包括许多不同的杂合组合。我们发现结果具有高度一致性,所有差异均为分子分型鉴定出的额外抗原,填补了血清学空白。使用这种方法我们能够鉴定所有常见的杂合子组合。