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通过位点特异性PCR快速克隆HLA I类cDNA

Rapid cloning of HLA class I cDNAs by locus specific PCR.

作者信息

Johnson D R, Biedermann B C, Mook-Kanamori B

机构信息

Department of Pathology, 454 Boyer Center for Molecular Medicine, Yale University School of Medicine, 295 Congress Avenue, New Haven, CT, USA.

出版信息

J Immunol Methods. 2000 Jan 13;233(1-2):119-29. doi: 10.1016/s0022-1759(99)00121-0.

Abstract

The human major histocompatibility complex (MHC) class I loci, human leukocyte antigen (HLA)-A, -B, -C, encode highly polymorphic molecules that mediate immune recognition of infectious pathogens and can initiate the rapid rejection of transplanted tissue. Cloning of HLA class I alleles is complicated by polymorphism as well as interlocus homology. Here, HLA class I cDNAs are amplified by PCR using one common primer with one of three locus specific primers whose 3' ends map to conserved, locus specific nucleotides. Using these primers, HLA-A, -B, and -C alleles were cloned from a number of cell lines and two different HLA-B alleles were cloned from a single, heterozygous cell line. The amplified products encode the entire extracellular portion of the class I molecules. An amplified HLA-A allele was cloned into an expression vector and the protein product was detected on the surface of a transfected cell. A premature termination codon was engineered into the HLA-A allele by site directed mutagenesis and the soluble protein product was detected in the culture medium of transfected cells. Therefore, these primers can be used to rapidly clone, alter, and express HLA class I molecules. This method may expedite the generation of reagents for testing the antigen specificity of antibodies, natural killer cells, or T cells.

摘要

人类主要组织相容性复合体(MHC)I类基因座,即人类白细胞抗原(HLA)-A、-B、-C,编码高度多态性分子,这些分子介导对传染性病原体的免疫识别,并可引发移植组织的快速排斥反应。HLA I类等位基因的克隆因多态性以及基因座间的同源性而变得复杂。在此,使用一种通用引物与三种基因座特异性引物之一通过PCR扩增HLA I类cDNA,这三种引物的3'端定位于保守的、基因座特异性核苷酸。使用这些引物,从多个细胞系中克隆出HLA-A、-B和-C等位基因,并从一个杂合细胞系中克隆出两种不同的HLA-B等位基因。扩增产物编码I类分子的整个细胞外部分。将扩增的HLA-A等位基因克隆到表达载体中,并在转染细胞表面检测到蛋白质产物。通过定点诱变在HLA-A等位基因中引入一个提前终止密码子,并在转染细胞的培养基中检测到可溶性蛋白质产物。因此,这些引物可用于快速克隆、改变和表达HLA I类分子。该方法可能会加快用于测试抗体、自然杀伤细胞或T细胞抗原特异性的试剂的产生。

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