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Novel Amplex Red Oxidases Based on Noncanonical DNA Structures: Property Studies and Applications in MicroRNA Detection

机译:基于非规范DNA结构的新型双歧红色氧化酶:性质研究及其在MicroRNA检测中的应用

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G-triplex has recently been identified as a new secondary structure in G-rich sequences. However, its functions and biological roles remain largely unknown. This study first developed two kinds of Amplex Red oxidases, which were based on relatively new G-triplex structure and a common G-quadruplex one. A collection of DNA binding assays including circular dichroism (CD) spectroscopy, a CD melting assay, and a UV titration study were used to determine the G-triplex structure of G3 oligomer. The low intrinsic oxidative activity of hemin was significantly enhanced using G-triplex or G-quadruplex. Only one key guanine deletion from the G3 oligomer or G4 one could result in a much decreased Amplex Red oxidation activity. To the best of our knowledge, this is the first case reporting direct use of air as the oxidant for fluorescence generation based on DNAzyme strategies. Further mechanism studies demonstrated an involvement of on-site H_2O_2 generation from O_2 and water and a following oxidation of Amplex Red to resorufin, causing a fluorescence enhancement. Furthermore, the newly developed oxidases have been effectively used in microRNA detection, using only one biotin-labeled probe and one small-molecule substrate. The conjugation of a target DNA to the G-triplex- or G-quadruplex-forming sequence enabled one to produce G-triplex or G-quadruplex by endonuclease in the presence of a slight amount of miRNA and amplify the signal of fluorescence from the oxidation of Amplex Red. Our findings of novel Amplex Red oxidases could potentially be used in a wide range of applications.
机译:G-三重体最近已被鉴定为富含G的序列中的新二级结构。然而,其功能和生物学作用仍然很大程度上未知。这项研究首先开发了两种Amplex Red氧化酶,它们基于相对较新的G-triplex结构和常见的G-quadruplex。包括圆二色性(CD)光谱,CD熔解测定和UV滴定研究在内的一系列DNA结合测定用于确定G3低聚物的G三联体结构。使用G-三链体或G-四链体可显着增强血红素的低固有氧化活性。从G3低聚物或G4中仅缺失一个关键鸟嘌呤会导致Amplex Red氧化活性大大降低。据我们所知,这是第一例报告直接使用空气作为基于DNAzyme策略产生荧光的氧化剂的案例。进一步的机理研究表明,从O_2和水中生成H_2O_2的过程以及随后的Amplex Red氧化为Resorufin引起荧光增强。此外,新开发的氧化酶仅使用一种生物素标记的探针和一种小分子底物即可有效地用于microRNA检测。目标DNA与G-三链体或G-四链体形成序列的缀合使人们能够在少量miRNA存在的情况下通过内切酶产生G-三链体或G-四链体,并放大来自氧化的荧光信号的红色。我们对新型Amplex Red氧化酶的发现可能潜在地用于广泛的应用中。

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