首页> 外文期刊>Nucleic Acids Research >Optimisation of the 10-23 DNAzyme -substrate pairing interactions enhanced RNA cleavage activity at purine-cytosine target sites
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Optimisation of the 10-23 DNAzyme -substrate pairing interactions enhanced RNA cleavage activity at purine-cytosine target sites

机译:10-23 DNAzyme-底物配对相互作用的优化增强了嘌呤-胞嘧啶靶位点的RNA裂解活性。

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摘要

The 10-23 RNA cleaving DNAzyme has been shown to cleave any purine-pyrimidine (RY) junction under simulated physiological conditions. In this study, we systematically examine to DNAzymes relative activity against different RY combinations in order to determine the hierarchy of substrate core dinucleotide sequence susceptibility. The reactivity of each substrate dinucleotide compared in the same background sequence with the appropriately matched DNAzyme was found to follow the scheme AU = GU ≥ GC AC. The relatively poor activity of the DNAzyme against AC and GC containing substrates was found to be improved substantially by modifications to the binding domain which subtly weaken its interaction with the substrate core. The most effective modification resulting in rate enhancement of up to 200-fold, was achieved by substitution of deoxyguanine with deoxyinosine such that the base pair interaction with the RNA substrates core C is reduced from three hydrogen bonds to two. The increased cleavage activity generated by this modification could be important for application of the 10-23 DNAzyme particularly when the target site core is an AC dinucleotide.
机译:已显示10-23 RNA切割DNAzyme可在模拟的生理条件下切割任何嘌呤-嘧啶(RY)连接。在这项研究中,我们系统地检查DNA酶对不同RY组合的相对活性,以确定底物核心二核苷酸序列敏感性的层次。发现在相同背景序列中与适当匹配的DNA酶相比,每个底物二核苷酸的反应性遵循方案AU = GU≥GC AC。发现通过修饰结合结构域可以显着改善DNAzyme针对含AC和GC的底物的相对较差的活性,该修饰结构域弱化了其与底物核心的相互作用。通过用脱氧肌苷取代脱氧鸟嘌呤,从而使与RNA底物核心C的碱基对相互作用从三个氢键减少到两个,可以实现最有效的修饰,将速率提高多达200倍。由这种修饰产生的增加的切割活性对于​​10-23 DNA核酶的应用可能是重要的,特别是当靶位核心是AC二核苷酸时。

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