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采用序列特异性引物的聚合酶链反应(PCR-SSP)对HLA-B进行全面的、血清学等效的DNA分型。

Comprehensive, serologically equivalent DNA typing for HLA-B by PCR using sequence-specific primers (PCR-SSP).

作者信息

Bunce M, Fanning G C, Welsh K I

机构信息

Nuffield Department of Surgery, Oxford Transplant Centre, Churchill Hospital, United Kingdom.

出版信息

Tissue Antigens. 1995 Feb;45(2):81-90. doi: 10.1111/j.1399-0039.1995.tb02422.x.

Abstract

Polymorphic products of HLA class I genes from the human major histocompatibility complex (MHC) are traditionally assigned by serology with additional heterogeneity detectable using one-dimensional isoelectric focusing (1D-IEF). With the increased availability of HLA class I DNA sequence information it has become feasible to genotype for class I by polymerase chain reaction utilising sequence-specific primers (PCR-SSP). We describe here a comprehensive HLA-B PCR-SSP typing system based on available HLA nucleotide sequences which can detect all serologically defined antigens in most heterozygous combination in 48 one-step PCR reactions. In addition, four new unsequenced variants have been identified. DNA samples from 57 International Histocompatibility Workshop reference cell lines and 160 control individuals have been typed by the HLA-B PCR-SSP technique. 3/57 cell line types and 12/160 normal control individuals types were discrepant with the reported serological types. The SSP system has been designed to be higher resolution than serology but is not a complete allele-specific PCR although many single alleles can be identified. The system is entirely complementary to previous published PCR-SSP systems for HLA-Class II and HLA-Class I in that the same PCR conditions and controls are used which allows us to do one step PCR-SSP for all relevant HLA loci in under 3 hours in a system suitable for the typing of cadaver donors.

摘要

人类主要组织相容性复合体(MHC)中HLA I类基因的多态性产物传统上是通过血清学方法进行分型的,通过一维等电聚焦(1D-IEF)还可检测到更多的异质性。随着HLA I类DNA序列信息的日益丰富,利用序列特异性引物通过聚合酶链反应(PCR-SSP)对I类基因进行基因分型已成为可能。我们在此描述一种基于现有HLA核苷酸序列的全面的HLA - B PCR-SSP分型系统,该系统可在48个一步PCR反应中,以大多数杂合组合的形式检测所有血清学定义的抗原。此外,还鉴定出了四个新的未测序变体。通过HLA - B PCR-SSP技术对来自57个国际组织相容性研讨会参考细胞系和160名对照个体的DNA样本进行了分型。3/57的细胞系类型和12/160的正常对照个体类型与报告的血清学类型不一致。SSP系统设计的分辨率高于血清学方法,但它并非完全的等位基因特异性PCR,尽管可以鉴定出许多单个等位基因。该系统与先前发表的用于HLA - II类和HLA - I类的PCR-SSP系统完全互补,因为使用了相同的PCR条件和对照,这使我们能够在一个适用于尸体供体分型的系统中,在3小时内对所有相关HLA位点进行一步PCR-SSP。

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