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New Concepts of Fluorescent Probes for Specific Detection of DNA Sequences: Bis-Modified Oligonucleotides in Excimer and Exciplex Detection

机译:用于DNA序列特异性检测的荧光探针的新概念:准分子和激基复合物检测中的双修饰寡核苷酸。

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摘要

The detection of single base mismatches in DNA is important for diagnostics, treatment of genetic diseases, and identification of single nucleotide polymorphisms. Highly sensitive, specific assays are needed to investigate genetic samples from patients. The use of a simple fluorescent nucleoside analogue in detection of DNA sequence and point mutations by hybridisation in solution is described in this study. The 5′-bispyrene and 3′-naphthalene oligonucleotide probes form an exciplex on hybridisation to target in water and the 5′-bispyrene oligonucleotide alone is an adequate probe to determine concentration of target present. It was also indicated that this system has a potential to identify mismatches and insertions. The aim of this work was to investigate experimental structures and conditions that permit strong exciplex emission for nucleic acid detectors, and show how such exciplexes can register the presence of mismatches as required in SNP analysis. This study revealed that the hybridisation of 5′-bispyrenyl fluorophore to a DNA target results in formation of a fluorescent probe with high signal intensity change and specificity for detecting a complementary target in a homogeneous system. Detection of SNP mutations using this split-probe system is a highly specific, simple, and accessible method to meet the rigorous requirements of pharmacogenomic studies. Thus, it is possible for the system to act as SNP detectors and it shows promise for future applications in genetic testing.
机译:DNA中单碱基错配的检测对于诊断,遗传疾病的治疗以及单核苷酸多态性的鉴定非常重要。需要高度敏感的特异性测定来研究患者的遗传样本。在这项研究中描述了使用简单的荧光核苷类似物通过溶液杂交检测DNA序列和点突变。 5'-双py和3'-萘寡核苷酸探针与水中的靶标杂交后形成激基复合物,单独的5'-双py寡核苷酸是确定存在靶标浓度的合适探针。还表明该系统具有识别错配和插入的潜力。这项工作的目的是研究允许核酸检测器产生强烈的激基复合物发射的实验结构和条件,并展示这种激基复合物如何按照SNP分析的要求记录错配的存在。这项研究表明,5'-双苯甲基荧光基团与DNA靶标的杂交导致形成荧光探针,该探针具有高信号强度变化和特异性,可在均质系统中检测互补靶标。使用这种分裂探针系统检测SNP突变是一种高度特异性,简单易用的方法,可以满足药物基因组学研究的严格要求。因此,该系统有可能充当SNP检测器,并显示出将来在基因检测中的应用前景。

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