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A novel process for mutation detection using uracil DNA-glycosylase.

机译:使用尿嘧啶DNA-糖基化酶进行突变检测的新方法。

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摘要

A novel process is presented for the detection of known mutations and polymorphisms in DNA. This process, termed glycosylase mediated polymorphism detection (GMPD) involves amplification of the target DNA using three normal dNTPs and a fourth modified dNTP, whose base is a substrate for a specific DNA-glycosylase once incorporated into the DNA. The work described here utilises uracil DNA-glycosylase as the specific glycosylase and dUTP as the modified dNTP. Primers are designed so that during extension, the position of the first uracil incorporated into the extended primers differs depending on whether a mutation is present or absent. Subsequent glycosylase excision of the uracil residues followed by cleavage of the apyrimidinic sites allows detection of the mutation in the amplified fragment as a fragment length polymorphism. Variation in the sizes of the fragment length polymorphisms generated, can be readily achieved through the use of inosine bases in place of adenine bases in the upper and/or lower primers. The GMPD process is also adaptable to solid phase analysis. The use of the process for detection of mutations in the RYR1 and CFTR genes is demonstrated. Overall, the simplicity, specificity, versatility and flexibility of the GMPD process make it an attractive candidate for both small and large scale application in mutation detection and genome analysis.
机译:提出了一种检测DNA中已知突变和多态性的新方法。该过程称为糖基化酶介导的多态性检测(GMPD),涉及使用三个正常dNTP和第四个修饰的dNTP扩增靶DNA,一旦掺入DNA,该碱基便是特定DNA-糖基化酶的底物。此处描述的工作利用尿嘧啶DNA糖基化酶作为特异性糖基化酶,将dUTP用作修饰的dNTP。设计引物,使得在延伸过程中,并入延伸引物中的第一个尿嘧啶的位置根据是否存在突变而有所不同。随后尿嘧啶残基的糖基化酶切除,随后的嘧啶基位点的裂解允许检测扩增片段中的突变为片段长度多态性。通过使用肌苷碱基代替上部和/或下部引物中的腺嘌呤碱基,可以容易地实现所产生的片段长度多态性的大小的变化。 GMPD过程也适用于固相分析。证明了该方法用于检测RYR1和CFTR基因突变的用途。总体而言,GMPD过程的简单性,特异性,多功能性和灵活性使其成为在突变检测和基因组分析中进行小规模和大规模应用的诱人候选人。

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