Xiao W, Oefner P J
Genome Technology Center, Stanford University, Palo Alto, California, USA.
Hum Mutat. 2001 Jun;17(6):439-74. doi: 10.1002/humu.1130.
Denaturing high-performance liquid chromatography (DHPLC) compares two or more chromosomes as a mixture of denatured and reannealed PCR amplicons, revealing the presence of a mutation by the differential retention of homo- and heteroduplex DNA on reversed-phase chromatography supports under partial denaturation. Temperature determines sensitivity, and its optimum can be predicted by computation. Single-nucleotide substitutions, deletions, and insertions have been detected successfully by on-line UV or fluorescence monitoring within 2-3 minutes in unpurified amplicons as large as 1.5 Kb. Sensitivity and specificity of DHPLC consistently exceed 96%. These features and its low cost make DHPLC one of the most powerful tools for the re-sequencing of the human and other genomes. Aside from its application to the mutational analysis of candidate genes, DHPLC has proven instrumental in elucidating human evolution and in the mapping of genes. Employing completely denaturing conditions, the utility of DHPLC has been extended to the genotyping of known polymorphisms by utilizing the ability of poly(styrene-divinylbenzene) to resolve single-stranded DNA molecules of identical size that differ in a single base. Under completely denaturing conditions, it is thus possible to resolve all possible base substitutions with the single exception of C-->G transversions. Improvements in throughput became feasible with the recent introduction of monolithic poly(styrene-divinylbenzene) capillaries that lend themselves to the fabrication of arrays connected to a multi-color laser induced fluorescence scanner or a mass spectrometer.
变性高效液相色谱法(DHPLC)将两条或更多条染色体作为变性和重新退火的聚合酶链反应(PCR)扩增子的混合物进行比较,通过在部分变性条件下,同型和异型双链DNA在反相色谱支持物上的保留差异来揭示突变的存在。温度决定灵敏度,其最佳值可通过计算预测。单核苷酸替换、缺失和插入已通过在线紫外或荧光监测在2至3分钟内成功检测到,扩增子大小可达1.5 kb且无需纯化。DHPLC的灵敏度和特异性始终超过96%。这些特性及其低成本使DHPLC成为人类和其他基因组重测序最强大的工具之一。除了应用于候选基因的突变分析外,DHPLC已被证明在阐明人类进化和基因定位方面发挥了重要作用。采用完全变性条件,通过利用聚(苯乙烯-二乙烯基苯)分辨仅相差一个碱基的相同大小单链DNA分子的能力,DHPLC的应用已扩展到已知多态性的基因分型。在完全变性条件下,因此有可能分辨所有可能的碱基替换,唯一的例外是C→G颠换。随着最近引入整体式聚(苯乙烯-二乙烯基苯)毛细管,通量的提高变得可行,这些毛细管适用于制造与多色激光诱导荧光扫描仪或质谱仪相连的阵列。