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使用标准紫外/可见微孔板读数仪检测124名个体中的100%突变:一种用于突变扫描的新概念。

Detection of 100% of mutations in 124 individuals using a standard UV/Vis microplate reader: a novel concept for mutation scanning.

作者信息

Tabone Tania, Sallmann Georgina, Webb Elizabeth, Cotton Richard G H

机构信息

Genomic Disorders Research Centre Fitzroy, Victoria 3065, Australia.

出版信息

Nucleic Acids Res. 2006 Mar 22;34(6):e45. doi: 10.1093/nar/gkl077.

Abstract

We report the development of a simple and inexpensive assay for the detection of DNA polymorphisms and mutations that is based on the modification of mismatched bases by potassium permanganate. Unlike the chemical cleavage of mismatch assay, which also exploits the reactivity of potassium permanganate to detect genomic variants, the assay we describe here does not require a cleavage manipulation and therefore does not require expensive or toxic chemicals or a separation step, as mismatches are detected using direct optical methods in a microplate format. Studies with individual deoxynucleotides demonstrated that the reactivity with potassium permanganate resulted in a specific colour change. Furthermore, studies with synthetic oligonucleotide heteroduplexes demonstrated that this colour change phenomenon could be applied to detect mismatched bases spectrophotometrically. A collection of plasmids carrying single point mutations in the mouse beta-globin promoter region was used as a model system to develop a functional mutation detection assay. Finally, the assay was validated as 100% effective in detecting mismatches in a blinded manner using DNA from patients previously screened for mutations using established techniques, such as sequencing, SSCP and denaturing high-performance liquid chromatography (DHPLC) analysis in DNA fragments up to 300 bp in length.

摘要

我们报告了一种基于高锰酸钾对错配碱基进行修饰的简单且廉价的检测DNA多态性和突变的方法。与同样利用高锰酸钾的反应性来检测基因组变异的错配化学切割检测法不同,我们在此描述的检测法不需要切割操作,因此不需要昂贵或有毒的化学物质,也不需要分离步骤,因为错配是在微孔板中使用直接光学方法检测的。对单个脱氧核苷酸的研究表明,与高锰酸钾的反应性会导致特定的颜色变化。此外,对合成寡核苷酸异源双链体的研究表明,这种颜色变化现象可用于分光光度法检测错配碱基。一组在小鼠β-珠蛋白启动子区域携带单点突变的质粒被用作模型系统来开发功能性突变检测法。最后,使用先前通过测序、单链构象多态性(SSCP)和变性高效液相色谱(DHPLC)分析等成熟技术筛选过突变的患者的DNA,以盲法检测错配,该检测法被验证为100%有效,可检测长度达300 bp的DNA片段中的错配。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f18e/1409816/78b17abad1a8/gkl077f1.jpg

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