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使用LightCycler 480系统通过高分辨率熔解鉴定兰尼碱受体1单核苷酸多态性

Identification of ryanodine receptor 1 single-nucleotide polymorphisms by high-resolution melting using the LightCycler 480 System.

作者信息

Grievink Hilbert, Stowell Kathryn M

机构信息

Institute of Molecular Biosciences, Massey University, Palmerston North 11-222, New Zealand.

出版信息

Anal Biochem. 2008 Mar 15;374(2):396-404. doi: 10.1016/j.ab.2007.11.019. Epub 2007 Nov 21.

DOI:10.1016/j.ab.2007.11.019
PMID:18082125
Abstract

High-resolution melting (HRM) allows single-nucleotide polymorphism (SNP) detection/typing using inexpensive generic heteroduplex-detecting double-stranded DNA (dsDNA) binding dyes. Until recently HRM has been a post-PCR process. With the LightCycler 480 System, however, the entire mutation screening process, including post-PCR analysis, can be performed using a single instrument. HRM assays were developed to allow screening of the ryanodine receptor gene (RYR1) for potential mutations causing malignant hyperthermia (MH) and/or central core disease (CCD) using the LightCycler 480 System. The assays were validated using engineered plasmids and/or genomic DNA samples that are either homozygous wild type or heterozygous for one of three SNPs that lead to the RyR1 amino acid substitutions T4826I, H4833Y, and/or R4861H. The HRM analyses were conducted using two different heteroduplex-detecting dsDNA binding dyes: LightCycler 480 HRM dye and LCGreen Plus. Heterozygous samples for each of the HRM assays were readily distinguished from homozygous samples with both dyes. By using engineered plasmids, it was shown that even homozygous sequence variations can be identified by using either small amplicons or the addition of exogenous DNA after PCR. Thus, the LightCycler 480 System provides a novel, integrated, real-time PCR/HRM platform that allows high throughput, inexpensive SNP detection, and genotyping based on high-resolution amplicon melting.

摘要

高分辨率熔解曲线分析(HRM)可使用价格低廉的通用异源双链检测双链DNA(dsDNA)结合染料来检测/分型单核苷酸多态性(SNP)。直到最近,HRM一直是一种PCR后处理方法。然而,使用LightCycler 480系统,整个突变筛查过程,包括PCR后分析,都可以在一台仪器上完成。开发HRM分析方法是为了使用LightCycler 480系统筛查兰尼碱受体基因(RYR1),以寻找可能导致恶性高热(MH)和/或中央轴空病(CCD)的潜在突变。使用工程质粒和/或基因组DNA样本对这些分析方法进行了验证,这些样本要么是纯合野生型,要么是导致RyR1氨基酸替换T4826I、H4833Y和/或R4861H的三个SNP之一的杂合型。HRM分析使用了两种不同的异源双链检测dsDNA结合染料:LightCycler 480 HRM染料和LCGreen Plus。两种染料都能很容易地将每种HRM分析的杂合样本与纯合样本区分开来。通过使用工程质粒表明,即使是纯合序列变异,也可以通过使用小扩增子或PCR后添加外源DNA来识别。因此,LightCycler 480系统提供了一个新颖的、集成的实时PCR/HRM平台,该平台允许基于高分辨率扩增子熔解进行高通量、低成本的SNP检测和基因分型。

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