Doherty D G, Donaldson P T
Department of Child Health, King's College Hospital Medical School, London, U.K.
Eur J Immunogenet. 1991 Feb-Apr;18(1-2):111-24. doi: 10.1111/j.1744-313x.1991.tb00011.x.
DNA sequencing has revealed extensive polymorphism within the HLA-DRB and DQB genes of the major histocompatibility complex. At least 43 alleles of the DRB loci and 13 alleles of the DQB1 locus are currently recognized. Identification of these alleles can be performed phenotypically by cellular and serological techniques or genotypically by restriction fragment length polymorphism (RFLP) analysis and sequence-specific oligonucleotide (SSO) probing of DNA amplified by the polymerase chain reaction (PCR). However, each method has its technical limitations so the tissue typing laboratory must therefore choose from the range of available techniques to maximize the efficiency and accuracy of HLA typing. In this paper we describe a scheme for the accurate determination of all the serologically defined DRB and DQB allotypes using a combination of serology, RFLP analysis and PCR-SSO probing. The efficiencies of serology versus RFLP analysis for the DR typing of 800 individuals, and RFLP analysis versus PCR-SSO probing for the DQB typing of 317 individuals, are compared and the merits of each technique discussed. This scheme, which types for both HLA-DRB and DQB with an accuracy approaching 100%, is now routinely employed in all HLA studies of disease and transplantation in our laboratory.
DNA测序已揭示主要组织相容性复合体的HLA - DRB和DQB基因内存在广泛的多态性。目前已识别出DRB基因座的至少43个等位基因和DQB1基因座的13个等位基因。这些等位基因的鉴定可通过细胞和血清学技术进行表型鉴定,或通过限制性片段长度多态性(RFLP)分析以及对聚合酶链反应(PCR)扩增的DNA进行序列特异性寡核苷酸(SSO)探测进行基因型鉴定。然而,每种方法都有其技术局限性,因此组织分型实验室必须从可用技术范围内进行选择,以最大限度地提高HLA分型的效率和准确性。在本文中,我们描述了一种使用血清学、RFLP分析和PCR - SSO探测相结合的方法,用于准确确定所有血清学定义的DRB和DQB同种异型。比较了800例个体DR分型中血清学与RFLP分析的效率,以及317例个体DQB分型中RFLP分析与PCR - SSO探测的效率,并讨论了每种技术的优点。该方法对HLA - DRB和DQB分型的准确率接近100%,现已在我们实验室所有关于疾病和移植的HLA研究中常规使用。