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Voltammetry and molecular assembly of G-quadruplex DNAzyme on single-crystal Au(111)-electrode surfaces - hemin as an electrochemical intercalator

机译:在单晶Au(111)电极表面上G-四链体DNA酶的伏安法和分子组装-血红素作为电化学嵌入剂

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摘要

DNA quadruplexes (qs) are a class of "non-canonical" oligonucleotides (OGNs) composed of stacked guanine (G) quartets stabilized by specific cations. Metal porphyrins selectively bind to G-qs complexes to form what is known as DNAzyme, which can exhibit peroxidase and other catalytic activity similar to heme group metalloenzymes. In the present study we investigate the electrochemical properties and the structure of DNAzyme monolayers on single-crystal Au(111)-electrode surfaces using cyclic voltammetry and scanning tunnelling microscopy under electrochemical potential control (in situ STM). The target DNAzyme is formed from a single-strand OGN with 12 guanines and iron(III) porphyrin IX (hemin), and assembles on Au(111) through a mercapto alkyl linker. The DNAzyme monolayers exhibit a strong pair of redox peaks at 0.0 V (NHE) at pH 7 in acetate buffer, shifted positively by about 50 mV compared to free hemin weakly physisorbed on the Au(111)-electrode surface. The voltammetric hemin signal of DNAzyme is enhanced 15 times compared with that of hemin adsorbed directly on the Au(111)-electrode surface. This is indicative of both the formation of a close to dense DNAzyme monolayer and that hemin is strongly bound to the immobilized 12G-qs in well-defined orientation favorable for interfacial ET with a rate constant of 6.0 +/- 0.4 s(-1). This is supported by in situ STM which discloses single-molecule G-quartet structures with a size of 1.6 +/- 0.2 nm.
机译:DNA四链体(qs)是一类“非规范”寡核苷酸(OGN),由由特定阳离子稳定的堆叠鸟嘌呤(G)四重奏组成。金属卟啉选择性地结合到G-qs络合物上,形成所谓的DNAzyme,它可以表现出过氧化物酶和其他类似于血红素族金属酶的催化活性。在本研究中,我们使用循环伏安法和扫描隧道显微镜在电化学电势控制下(原位STM)研究单晶Au(111)电极表面的电化学性质和DNAzyme单层的结构。靶DNA酶由具有12个鸟嘌呤和铁(III)卟啉IX(血红素)的单链OGN形成,并通过巯基烷基接头在Au(111)上组装。 DNAzyme单层在乙酸盐缓冲液中pH值为7时,在0.0 V(NHE)处显示一对强氧化还原峰,与弱物理吸附在Au(111)电极表面的游离血红素相比,正向移动约50 mV。与直接吸附在Au(111)电极表面的血红素相比,脱氧核糖核酸酶的伏安血红素信号增强了15倍。这表明既形成了接近致密的DNAzyme单层,又表明血红素以良好的方向牢固地结合于固定的12G-qs,有利于界面ET,速率常数为6.0 +/- 0.4 s(-1) 。这由原位STM支持,其公开了尺寸为1.6 +/- 0.2nm的单分子G-四重结构。

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