Ning Li, Moss Arthur, Zareba Woject, Robinson Jennifer, Rosero Spencer, Ryan Dan, Qi Ming
Department of Pathology and Laboratory Medicine, University of Rochester Medical Center, Rochester, NY 14642, USA.
Genet Test. 2003 Fall;7(3):249-53. doi: 10.1089/109065703322537287.
Multiple mutations in several ion channel genes (KCNQ1, KCNH2, SCN5A, KCNE1, KCNE2, and KCNJ2) have been shown to cause autosomal dominant long QT syndrome (LQTS), a familial cardiac disorder that causes syncope, seizures, and sudden death. Due to their multiple loci and considerable size, mutation detection in these genes represents a challenge that is only partially met by the conventional screening method of single-stranded conformational polymorphism (SSCP). The recently introduced denaturing high-performance liquid chromatography (dHPLC) offers a promising new method for a fast and sensitive analysis of PCR-amplified DNA fragments. To test the applicability of dHPLC in the molecular diagnosis of LQTS, we first assessed a cohort of 192 patients from our International LQTS Registry for 14 previously identified mutations (including 10 different missense mutations, 1-bp, 2-bp, 3-bp, and 9-bp deletion mutations), and 2 polymorphisms in the LQTS potassium and sodium channel genes. Applying empirically determined exon-specific melting profiles, all mutations (including four previously undetectable by SSCP) were readily identified by dHPLC. We conclude that the dHPLC technology is a highly sensitive and efficient method for the molecular analysis of LQTS, and the same PCR amplicons developed for SSCP testing can be directly used for dHPLC assay.
几个离子通道基因(KCNQ1、KCNH2、SCN5A、KCNE1、KCNE2和KCNJ2)中的多个突变已被证明会导致常染色体显性长QT综合征(LQTS),这是一种家族性心脏疾病,可引起晕厥、癫痫发作和猝死。由于这些基因的多个位点和相当大的规模,在这些基因中检测突变是一项挑战,而传统的单链构象多态性(SSCP)筛查方法只能部分应对这一挑战。最近引入的变性高效液相色谱法(dHPLC)为快速、灵敏地分析PCR扩增的DNA片段提供了一种很有前景的新方法。为了测试dHPLC在LQTS分子诊断中的适用性,我们首先评估了来自国际LQTS登记处的192名患者,检测他们的LQTS钾离子和钠离子通道基因中的14个先前已确定的突变(包括10个不同的错义突变、1bp、2bp、3bp和9bp缺失突变)以及2个多态性。应用经验确定的外显子特异性解链曲线,所有突变(包括4个先前用SSCP无法检测到的突变)都能通过dHPLC轻松识别。我们得出结论,dHPLC技术是LQTS分子分析的一种高度灵敏且高效的方法,并且为SSCP检测开发的相同PCR扩增子可直接用于dHPLC分析。