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Electrochemical behavior of 7-deazaguanine- and 7-deazaadenine-modified DNA at the hanging mercury drop electrode

机译:7-脱氮鸟嘌呤和7-脱氮鸟嘌呤修饰的DNA在悬挂式汞滴电极上的电化学行为

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DNA modification with synthetic analogs of natural nucleotides and/or their conjugates with external redox active groups is applied in the development of electrochemical DNA sensors or assay for DNA hybridization, SNP typing, DNA damage and so forth. 7-Deazapurines (Pu*) are analogs of natural purine bases in which N7 atom is replaced by CH group. The Pu* bases retain Watson-Crick base pairing of their parent purines (and the ability to form duplex DNA) but are incapable of Hoogsteen pairing (and thus cannot be involved in triplex or quadruples DNA structures). Previously, we studied electrochemical oxidation of Pu* residues in DNA fragments (prepared by PCR in the presence of Pu* deoxynucleoside triphosphates) at a carbon electrode and reported on significantly lower potentials of oxidation of both 7-deazaguanine (G*) and 7-deazaadenine (A*), compared to natural guanine (G) and adenine (A), respectively. In this work, we studied faradaic and tensammetric responses of G*- or A*-modified DNA on the hanging mercury drop electrode (HMDE). While A* was reduced at the HMDE, giving rise to a similar irreversible cathodic peak as the natural A, G* did not yield any peak analogous to the peak G due to guanine, in agreement with a loss of corresponding redox site in G*. Responses of DNA modified with A* were relatively similar to those of unmodified DNA (albeit we observed certain differences in tensammetric peak currents). Effects of G substitution by G* were more pronounced, being reflected in diminution of peak due to guanine, decrease of the peak CA (due to cytosine and adenine reduction) and in significantly changed shape of tensammetric DNA signals, indicating altered adsorption/desorption processes. While substitution of A by A* resulted in certain destabilization of the DNA duplex at the negatively charged HMDE surface (in qualitative agreement with significantly decreased melting temperature of the same DNA duplexes in solution), G*-modified duplex DNA displayed apparently lower susceptibility to surface denaturation.
机译:用天然核苷酸的合成类似物和/或它们与外部氧化还原活性基团的结合物进行的DNA修饰被用于电化学DNA传感器的开发或DNA杂交,SNP分型,DNA损伤的测定等。 7-Deazapurines(Pu *)是天然嘌呤碱基的类似物,其中N7原子被CH基团取代。 Pu *碱基保留了其亲本嘌呤的Watson-Crick碱基配对(以及形成双链DNA的能力),但无法进行Hoogsteen配对(因此不能参与三链或四联DNA结构)。以前,我们在碳电极上研究了DNA片段(在存在Pu *脱氧核苷三磷酸的情况下,通过PCR制备)中Pu *残基的电化学氧化,并报道了7-脱氮鸟嘌呤(G *)和7-分别与天然鸟嘌呤(G)和腺嘌呤(A)相比,脱氮氨基酸(A *)。在这项工作中,我们研究了悬挂式汞滴电极(HMDE)上G *或A *修饰的DNA的法拉第响应和张量响应。虽然HMDE上的A *降低了,产生了与天然A类似的不可逆的阴极峰,但由于鸟嘌呤,G *没有产生类似于G峰的任何峰,这与G *中相应的氧化还原位点的丢失相一致。用A *修饰的DNA的响应与未修饰的DNA的响应相对相似(尽管我们观察到了张力峰值电流的某些差异)。 G *取代G的影响更为明显,反映在鸟嘌呤导致的峰减少,峰CA降低(由于胞嘧啶和腺嘌呤减少)以及张力测定DNA信号的形状发生显着变化,表明吸附/解吸过程发生了变化。尽管用A *取代A会导致带负电荷的HMDE表面的DNA双链体发生一定程度的不稳定(与溶液中相同DNA双链体的解链温度显着降低的定性一致),但经G *修饰的双链体DNA明显降低了对DNA的敏感性。表面变性。

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