Zimmerman P A, Carrington M N, Nutman T B
Laboratory of Parasitic Diseases, National Institute of Allergy and Infectious Diseases, National Institutes of Health, Bethesda, MD 20892.
Nucleic Acids Res. 1993 Sep 25;21(19):4541-7. doi: 10.1093/nar/21.19.4541.
A novel approach to DNA probe hybridization and heteroduplex analysis, termed directed heteroduplex analysis (DHDA) is presented here to illustrate its utility in simplification of human lymphocyte antigen (HLA)-typing. By strategic labeling of single-stranded probe sequences, DHDA allows the identification of specific heteroduplex structures that contribute to the differentiation of DQA1 and DQB1 alleles. Because of the high degree of polymorphism among major histocompatibility complex class II second exon sequences, this analysis of 50 different heteroduplex molecules provides evidence of the importance of unpaired bases and mismatched base pairs and their effect on heteroduplex electrophoretic-mobility differences. This strategy is further used to genotype accurately a family for DQA1 which was previously analyzed by sequence specific oligonucleotide (SSO) probe hybridization. To differentiate by SSO-typing among the DQA1 and DQB1 alleles analyzed in this study requires the use of 23 different probes. Equivalent results are obtained by DHDA using only three probes. Therefore, this study suggests that accurate HLA-typing can be simplified by DHDA. Additionally, DHDA may be useful for differentiation of DNA sequence polymorphisms in other genetic systems.
本文介绍了一种新的DNA探针杂交和异源双链分析方法,称为定向异源双链分析(DHDA),以说明其在简化人类淋巴细胞抗原(HLA)分型中的应用。通过对单链探针序列进行策略性标记,DHDA能够识别有助于区分DQA1和DQB1等位基因的特定异源双链结构。由于主要组织相容性复合体II类第二外显子序列之间存在高度多态性,对50种不同异源双链分子的分析证明了未配对碱基和错配碱基对的重要性及其对异源双链电泳迁移率差异的影响。该策略进一步用于准确地对一个家庭的DQA1进行基因分型,该家庭先前通过序列特异性寡核苷酸(SSO)探针杂交进行了分析。要通过SSO分型区分本研究中分析的DQA1和DQB1等位基因,需要使用23种不同的探针。使用DHDA仅用三种探针就能获得等效结果。因此,本研究表明DHDA可以简化准确的HLA分型。此外,DHDA可能有助于区分其他遗传系统中的DNA序列多态性。