Triques Karine, Sturbois Bénédicte, Gallais Stéphane, Dalmais Marion, Chauvin Stéphanie, Clepet Christian, Aubourg Sébastien, Rameau Catherine, Caboche Michel, Bendahmane Abdelhafid
URGV, Unité de Recherche en Génomique Végétale, UMR INRA CNRS. 2, Rue Gaston Crémieux, 91057 Evry Cedex, France.
Plant J. 2007 Sep;51(6):1116-25. doi: 10.1111/j.1365-313X.2007.03201.x. Epub 2007 Jul 25.
Scanning DNA sequences for mutations and polymorphisms has become one of the most challenging, often expensive and time-consuming obstacles in many molecular genetic applications, including reverse genetic and clinical diagnostic applications. Enzymatic mutation detection methods are based on the cleavage of heteroduplex DNA at the mismatch sites. These methods are often limited by the availability of a mismatch-specific endonuclease, their sensitivity in detecting one allele in a pool of DNA and their costs. Here, we present detailed biochemical analysis of five Arabidopsis putative mismatch-specific endonucleases. One of them, ENDO1, is presented as the first endonuclease that recognizes and cleaves all types of mismatches with high efficiency. We report on a very simple protocol for the expression and purification of ENDO1. The ENDO1 system could be exploited in a wide range of mutation diagnostic tools. In particular, we report the use of ENDO1 for discovery of point mutations in the gibberellin 3beta-hydrolase gene of Pisum sativum. Twenty-one independent mutants were isolated, five of these were characterized and two new mutations affecting internodes length were identified. To further evaluate the quality of the mutant population we screened for mutations in four other genes and identified 5-21 new alleles per target. Based on the frequency of the obtained alleles we concluded that the pea population described here would be suitable for use in a large reverse-genetics project.
在许多分子遗传学应用中,包括反向遗传学和临床诊断应用,扫描DNA序列中的突变和多态性已成为最具挑战性、通常昂贵且耗时的障碍之一。酶促突变检测方法基于错配位点处异源双链DNA的切割。这些方法通常受到错配特异性内切核酸酶可用性、在DNA池中检测一个等位基因的灵敏度及其成本的限制。在这里,我们对五种拟南芥假定的错配特异性内切核酸酶进行了详细的生化分析。其中一种,ENDO1,被认为是第一种能够高效识别和切割所有类型错配的内切核酸酶。我们报告了一种非常简单的ENDO1表达和纯化方案。ENDO1系统可用于广泛的突变诊断工具。特别是,我们报告了使用ENDO1发现豌豆赤霉素3β-水解酶基因中的点突变。分离出21个独立突变体,对其中5个进行了表征,并鉴定出两个影响节间长度的新突变。为了进一步评估突变群体的质量,我们在其他四个基因中筛选突变,每个靶点鉴定出5 - 21个新等位基因。根据获得的等位基因频率,我们得出结论,这里描述的豌豆群体将适用于大型反向遗传学项目。