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高分辨率熔解分析(HRMA):不止于序列变异筛查。

High-resolution melting analysis (HRMA): more than just sequence variant screening.

作者信息

Vossen Rolf H A M, Aten Emmelien, Roos Anja, den Dunnen Johan T

机构信息

Leiden Genome Technology Center (LGTC), Human and Clincal Genetics, Leiden University Medical Center, Leiden, The Netherlands.

出版信息

Hum Mutat. 2009 Jun;30(6):860-6. doi: 10.1002/humu.21019.

DOI:10.1002/humu.21019
PMID:19418555
Abstract

Transition of the double-stranded DNA molecule to its two single strands, DNA denaturation or melting, has been used for many years to study DNA structure and composition. Recent technological advances have improved the potential of this technology, especially to detect variants in the DNA sequence. Sensitivity and specificity were increased significantly by the development of so-called saturating DNA dyes and by improvements in the instrumentation to measure the melting behavior (improved temperature precision combined with increased measurements per time unit and drop in temperature). Melt analysis using these new instruments has been designated high-resolution melting curve analysis (HRM or HRMA). Based on its ease of use, simplicity, flexibility, low cost, nondestructive nature, superb sensitivity, and specificity, HRMA is quickly becoming the tool of choice to screen patients for pathogenic variants. Here we will briefly discuss the latest developments in HRMA and review in particular other applications that have thus far received less attention, including presequence screening, single nucleotide polymorphism (SNP) typing, methylation analysis, quantification (copy number variants and mosaicism), an alternative to gel-electrophoresis and clone characterization. Together, these diverse applications make HRMA a multipurpose technology and a standard tool that should be present in any laboratory studying nucleic acids.

摘要

双链DNA分子转变为两条单链,即DNA变性或解链,多年来一直用于研究DNA的结构和组成。最近的技术进步提升了这项技术的潜力,尤其是在检测DNA序列变异方面。所谓的饱和DNA染料的开发以及测量解链行为的仪器的改进(提高温度精度、增加每单位时间的测量次数以及降低温度下降)显著提高了灵敏度和特异性。使用这些新仪器进行的熔解分析被称为高分辨率熔解曲线分析(HRM或HRMA)。基于其易用性、简单性、灵活性、低成本、无损性质、卓越的灵敏度和特异性,HRMA正迅速成为筛查患者致病变异的首选工具。在此,我们将简要讨论HRMA的最新进展,并特别回顾迄今较少受到关注的其他应用,包括前序列筛查、单核苷酸多态性(SNP)分型、甲基化分析、定量分析(拷贝数变异和嵌合体)、凝胶电泳替代方法以及克隆表征。这些不同的应用共同使HRMA成为一种多功能技术和标准工具,任何研究核酸的实验室都应具备。

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