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用于HLA-DRB1高分辨率分型的多重ARMS-PCR-RFLP方法

Multiplex ARMS-PCR-RFLP method for high-resolution typing of HLA-DRB1.

作者信息

Mitsunaga S, Oguchi T, Moriyama S, Tokunaga K, Akaza T, Tadokoro K, Juji T

机构信息

Department of Research, Japanese Red Cross Central Blood Center, Tokyo, Japan.

出版信息

Eur J Immunogenet. 1995 Oct;22(5):371-92. doi: 10.1111/j.1744-313x.1995.tb00252.x.

Abstract

A reliable method for high-resolution HLA-DRB1 typing using the combination of group-specific amplification and RFLP analysis is described. Group-specific PCR amplification (multiplex ARMS-PCR) was carried out under the same conditions for all groups using seven different primer pairs divided into four groups: (1) DR1 and DR10; (2) DR2, DR7 and DR9; (3) DR3 DR5, DR6 and DR8, and (4) DR4. The subsequent polyacrylamide gel electrophoresis was used to determine the group(s) contained in each sample. DR1, DR2/7, DR3/5/6/8, DR4, DRB10901 and DRB11001 could be distinguished easily using this system. Computer analysis of the various restriction enzyme cleavage sites was carried out on 105 DRB1 allele sequences. It was shown that all DRB1 alleles, except for five allele pairs and some alleles possessing silent mutations, could be distinguished with commonly available restriction endonucleases. Computer analyses on the discrimination of the heterozygous and homozygous combinations were also carried out. Although some heterozygous combinations could no be distinguished with single digestion, double digestion using two restriction enzymes could distinguish most of such heterozygotes. The results of the typing of 100 Japanese individuals using this method showed good agreement with those obtained by other methods.

摘要

本文描述了一种结合组特异性扩增和限制性片段长度多态性(RFLP)分析进行高分辨率HLA - DRB1分型的可靠方法。使用分为四组的七种不同引物对,在相同条件下对所有组进行组特异性PCR扩增(多重扩增不应突变系统 - PCR):(1)DR1和DR10;(2)DR2、DR7和DR9;(3)DR3、DR5、DR6和DR8,以及(4)DR4。随后使用聚丙烯酰胺凝胶电泳确定每个样品所含的组。使用该系统可以轻松区分DR1、DR2/7、DR3/5/6/8、DR4、DRB10901和DRB11001。对105个DRB1等位基因序列进行了各种限制酶切割位点的计算机分析。结果表明,除了五对等位基因对和一些具有沉默突变的等位基因外,所有DRB1等位基因都可以用常用的限制内切酶区分。还对杂合子和纯合子组合的区分进行了计算机分析。虽然一些杂合子组合不能通过单酶切区分,但使用两种限制酶的双酶切可以区分大多数此类杂合子。使用该方法对100名日本个体进行分型的结果与通过其他方法获得的结果显示出良好的一致性。

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