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囊性纤维化基因突变的变性高效液相色谱筛查

DHPLC screening of cystic fibrosis gene mutations.

作者信息

Ravnik-Glavac Metka, Atkinson Andrew, Glavac Damjan, Dean Michael

机构信息

Human Genetics Section, Laboratory of Genomic Diversity, National Cancer Institute at Frederick, Frederick, Maryland, USA.

出版信息

Hum Mutat. 2002 Apr;19(4):374-83. doi: 10.1002/humu.10065.

DOI:10.1002/humu.10065
PMID:11933191
Abstract

Denaturing high performance liquid chromatography (DHPLC) using ion-pairing reverse phase chromatography (IPRPC) columns is a technique for the screening of gene mutations. In order to evaluate the potential utility of this assay method in a clinical laboratory setting, we subjected the PCR products of 73 CF patients known to bear CFTR mutations to this analytic technique. We used thermal denaturation profile parameters specified by the MELT program tool, made available by Stanford University. Using this strategy, we determined an initial analytic sensitivity of 90.4% for any of 73 known CFTR mutations. Most of the mutations not detected by DHPLC under these conditions are alpha-substitutions. This information may eventually help to improve the MELT algorithm. Increasing column denaturation temperatures for one or two degrees above those recommended by the MELT program allowed 100% detection of CFTR mutations tested. By comparing DHPLC methodology used in this study with the recently reported study based on Wavemaker 3.4.4 software (Transgenomic, Omaha, NE) [Le Marechal et al., 2001) and with previous SSCP analysis of CFTR mutations [Ravnik-Glavac et al., 1994] we emphasized differences and similarities in order to refine the DHPLC system and discuss the relationship to the alternative approaches. We conclude that the DHPLC method, under optimized conditions, is highly accurate, rapid, and efficient in detecting mutations in the CFTR gene and may find high utility in screening individuals for CFTR mutations. Hum Mutat 19:374-383, 2002. Published 2002 Wiley-Liss, Inc.

摘要

使用离子对反相色谱(IPRPC)柱的变性高效液相色谱(DHPLC)是一种筛选基因突变的技术。为了评估该检测方法在临床实验室环境中的潜在效用,我们将已知携带CFTR突变的73例CF患者的PCR产物应用于这种分析技术。我们使用了斯坦福大学提供的MELT程序工具指定的热变性曲线参数。采用这种策略,我们确定了对73种已知CFTR突变中的任何一种的初始分析灵敏度为90.4%。在这些条件下未被DHPLC检测到的大多数突变是α取代。这些信息最终可能有助于改进MELT算法。将柱变性温度比MELT程序推荐的温度提高一到两度,可实现对所检测的CFTR突变100%的检测。通过将本研究中使用的DHPLC方法与最近基于Wavemaker 3.4.4软件(Transgenomic,奥马哈,内布拉斯加州)报道的研究[Le Marechal等人,2001年]以及先前对CFTR突变的SSCP分析[Ravnik - Glavac等人,1994年]进行比较,我们强调了差异和相似之处,以便优化DHPLC系统并讨论与替代方法的关系。我们得出结论,在优化条件下,DHPLC方法在检测CFTR基因中的突变方面高度准确、快速且高效,并且在筛选个体的CFTR突变方面可能具有很高的效用。《人类突变》19:374 - 383,2002年。2002年由Wiley - Liss公司出版。

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