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Endonuclease IV recognizes single base mismatch on the eighth base 3′ to the abasic site in DNA strands for ultra-selective and sensitive mutant-type DNA detection

机译:核酸内切酶IV识别DNA链中无碱基位点的第8个碱基3'上的单碱基错配,用于超选择性和灵敏的突变型DNA检测

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Since single nucleotide polymorphism (SNP) is related with many diseases and drug metabolic polymorphous and SNP genotyping is rising rapidly in many biological and medical areas, various methods of discriminating SNPs have been developed, one of which is an enzyme-based method. We uncovered a unique property of endonuclease IV due to which it can discriminate single base mismatches in different positions of DNA strands containing an abasic site, and we also discovered a new property: a mismatch in the +8 position could inhibit the cleavage of endonuclease IV. Then, we coupled +8 mismatch with other mismatches along with the discrimination effect of melting temperature to develop a new ultra-selective and sensitive genotyping system, which showed high discrimination factors. The detection limit was as low as 0.05–0.01%. Our new discovery improves the understanding of endonuclease IV. Also, the method could be applied to clinical real samples; thus, it merits further investigation and improvement for application in clinical utilization for early screening of specific diseases.
机译:由于单核苷酸多态性(SNP)与许多疾病有关,并且药物代谢多态性和SNP基因型分型在许多生物学和医学领域迅速发展,因此已经开发了多种区分SNP的方法,其中一种是基于酶的方法。我们发现了内切核酸酶IV的独特特性,因为它可以区分含有无碱基位点的DNA链在不同位置的单碱基错配,并且我们还发现了一个新特性:+8位置的错配可以抑制内切核酸酶IV的裂解。 。然后,我们将+8不匹配与其他不匹配以及解链温度的识别作用结合在一起,以开发出一种新的超选择性和灵敏的基因分型系统,该系统具有较高的识别因子。检出限低至0.05–0.01%。我们的新发现增进了对核酸内切酶IV的理解。而且,该方法可以应用于临床真实样品;因此,值得进一步研究和改进,以用于早期筛查特定疾病的临床应用。

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