Huang Qiuying, Wang Xudong, Tang Ning, Yan Tizhen, Chen Ping, Li Qingge
State Key Laboratory of Cellular Stress Biology, State Key Laboratory of Molecular Vaccinology and Molecular Diagnostics, Engineering Research Centre of Molecular Diagnostics, Ministry of Education, School of Life Sciences, Xiamen University, Xiamen, China.
Department of Medical Genetics, Liuzhou Key Laboratory of Birth Defects Prevention and Control, Liuzhou Maternal and Child Health Hospital, Liuzhou, China.
J Mol Diagn. 2017 Jul;19(4):567-574. doi: 10.1016/j.jmoldx.2017.04.003. Epub 2017 May 12.
α-Thalassemia, which is caused by defective synthesis of the hemoglobin α-globin chains, is the most commonly inherited recessive hemoglobin abnormality. Genetic detection of a defective α-globin gene is challenging because of a variety of large deletions of the α-globin gene cluster and nondeletional mutations. Separate detections of them are often required using complex and error-prone open-tube methods. We report a novel real-time PCR-based assay that can simultaneously genotype four major deletional and three common nondeletional mutations in two parallel reactions by using multicolor melting curve analysis. The turnaround time of this closed-tube assay was within 3.5 hours, the limit of detection was 5 ng of human genomic DNA per reaction, and as low as 5% mutant DNA could be detected in the mosaic samples. The assay was evaluated using 1213 precharacterized genomic DNA samples in a double-blind manner. All seven α-thalassemia mutations were accurately genotyped, yielding a 99.3% concordance with the comparison assays. The 14 discordant samples contained the HKαα allele that was undetected by the traditional methods. Considering its rapidity, ease of use, and accuracy, we concluded that our real-time PCR assay may be recommended as an alternative screening and diagnostic tool for α-thalassemia.
α地中海贫血是由血红蛋白α珠蛋白链合成缺陷引起的,是最常见的遗传性隐性血红蛋白异常。由于α珠蛋白基因簇存在多种大片段缺失和非缺失突变,对缺陷α珠蛋白基因进行基因检测具有挑战性。通常需要使用复杂且容易出错的开放管方法对它们进行单独检测。我们报告了一种基于实时PCR的新型检测方法,该方法可以通过多色熔解曲线分析在两个平行反应中同时对四种主要缺失突变和三种常见非缺失突变进行基因分型。这种闭管检测方法的周转时间在3.5小时以内,检测限为每个反应5 ng人基因组DNA,在嵌合样本中可检测到低至5%的突变DNA。该检测方法采用双盲方式,使用1213个预先鉴定的基因组DNA样本进行评估。所有七种α地中海贫血突变均被准确基因分型,与比较检测的一致性为99.3%。14个不一致的样本含有传统方法未检测到的HKαα等位基因。考虑到其快速性、易用性和准确性,我们得出结论,我们的实时PCR检测方法可推荐作为α地中海贫血的替代筛查和诊断工具。