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通过多重扩增不应性突变系统进行快速HLA分型

Rapid HLA typing by multiplex amplification refractory mutation system.

作者信息

Patel P, Lo Y M, Bell J I, Wainscoat J S

机构信息

Diabetes Research Laboratories, Nuffield Department of Clinical Medicine, Radcliffe Infirmary, Oxford.

出版信息

J Clin Pathol. 1993 Dec;46(12):1105-8. doi: 10.1136/jcp.46.12.1105.

Abstract

AIMS

To detect HLA susceptibility and protective alleles associated with insulin dependent diabetes mellitus (IDDM) using a multiplex amplification refractory mutation system (ARMS). These include DR3 and DR4 alleles at the DRB1 locus, presence or absence of aspartic acid at position 57 (Asp-57) of the DQB1 locus, and presence or absence of arginine at position 52 (Arg-52) of the DQA1 locus.

METHODS

The ARMS approach was used to design allele specific primers for the detection of the major susceptibility and protective alleles for IDDM. These include DR3 and DR4 alleles at the DRB1 locus, Asp-57 and non-Asp-57 at the DQB1 locus, and Arg-52 and non-Arg-52 alleles at the DQA1 locus. The allele specificity of each set of primers was first tested separately using DNA samples from 15 individuals previously typed for the DRB1, DQB1, and DQA1 loci using the sequence specific oligonucleotide (SSO) technique. The possibility of using multiplex ARMS for typing multiple susceptibility/protective alleles for IDDM was further investigated by testing various combinations of allele specific primers, thereby reducing the number of separate polymerase chain reactions required to type all these alleles.

RESULTS

A "three-tube" system worked well and gave accurate results. Tube 1 contained ARMS primers for the detection of IDDM susceptibility alleles DR3 and DR4; tube 2 contained ARMS primers for the detection of susceptibility alleles non-Asp-57 and Arg-52; and tube 3 contained ARMS primers for the detection of the protective alleles Asp-57 and non-Arg-52. DNA samples typed with this ARMS method were in complete agreement with those obtained using the SSO technique.

CONCLUSION

This method is rapid and has no requirement for radioactivity. It is an efficient method for population screening.

摘要

目的

使用多重扩增不应性突变系统(ARMS)检测与胰岛素依赖型糖尿病(IDDM)相关的HLA易感和保护等位基因。这些包括DRB1基因座上的DR3和DR4等位基因、DQB1基因座第57位(Asp-57)天冬氨酸的有无以及DQA1基因座第52位(Arg-52)精氨酸的有无。

方法

采用ARMS方法设计等位基因特异性引物,以检测IDDM的主要易感和保护等位基因。这些包括DRB1基因座上的DR3和DR4等位基因、DQB1基因座上的Asp-57和非Asp-57以及DQA1基因座上的Arg-52和非Arg-52等位基因。首先使用先前通过序列特异性寡核苷酸(SSO)技术对DRB1、DQB1和DQA1基因座进行分型的15名个体的DNA样本分别测试每组引物的等位基因特异性。通过测试等位基因特异性引物的各种组合,进一步研究了使用多重ARMS对IDDM的多个易感/保护等位基因进行分型的可能性,从而减少了对所有这些等位基因进行分型所需的单独聚合酶链反应的数量。

结果

“三管”系统运行良好,结果准确。第1管包含用于检测IDDM易感等位基因DR3和DR4的ARMS引物;第2管包含用于检测易感等位基因非Asp-57和Arg-52的ARMS引物;第3管包含用于检测保护等位基因Asp-57和非Arg-52的ARMS引物。用这种ARMS方法分型的DNA样本与使用SSO技术获得的样本完全一致。

结论

该方法快速且无需放射性。它是一种有效的群体筛查方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee6b/501720/b3fed020e39a/jclinpath00213-0039-a.jpg

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