Department of Chemistry, Waterloo Institute for Nanotechnology, University of Waterloo, Waterloo, Ontario, N2L 3G1, Canada.
ChemistryOpen. 2020 Oct 19;9(10):1046-1059. doi: 10.1002/open.202000134. eCollection 2020 Oct.
DNAzymes are in vitro selected DNA oligonucleotides with catalytic activities. RNA cleavage is one of the most extensively studied DNAzyme reactions. To expand the chemical functionality of DNA, various chemical modifications have been made during and after selection. In this review, we summarize examples of RNA-cleaving DNAzymes and focus on those modifications introduced during in vitro selection. By incorporating various modified nucleotides via polymerase chain reaction (PCR) or primer extension, a few DNAzymes were obtained that can be specifically activated by metal ions such as Zn and Hg. In addition, some modifications were introduced to mimic RNase A that can cleave RNA substrates in the absence of divalent metal ions. In addition, single modifications at the fixed regions of DNA libraries, especially at the cleavage junctions, have been tested, and examples of DNAzymes with phosphorothioate and histidine-glycine modified tertiary amine were successfully obtained specific for Cu, Cd, Zn, and Ni. Labeling fluorophore/quencher pair right next to the cleavage junction was also used to obtain signaling DNAzymes for detecting various metal ions and cells. Furthermore, we reviewed work on the cleavage of 2'-5' linked RNA and L-RNA substrates. Finally, applications of these modified DNAzymes as biosensors, RNases, and biochemical probes are briefly described with a few future research opportunities outlined at the end.
DNA 酶是经过体外筛选具有催化活性的 DNA 寡核苷酸。RNA 切割是研究最广泛的 DNA 酶反应之一。为了扩展 DNA 的化学功能,在筛选过程中和筛选后进行了各种化学修饰。在这篇综述中,我们总结了 RNA 切割 DNA 酶的例子,并重点介绍了在体外选择过程中引入的修饰。通过聚合酶链反应 (PCR) 或引物延伸将各种修饰的核苷酸掺入,获得了一些可以被 Zn 和 Hg 等金属离子特异性激活的 DNA 酶。此外,还引入了一些修饰来模拟不需要二价金属离子即可切割 RNA 底物的 RNase A。此外,还测试了在 DNA 文库的固定区域(尤其是在切割连接处)进行单一修饰的情况,并成功获得了针对 Cu、Cd、Zn 和 Ni 的具有硫代磷酸酯和组氨酸-甘氨酸修饰的叔胺的 DNA 酶的例子。在切割连接处旁边直接标记荧光团/猝灭剂对也被用于获得用于检测各种金属离子和细胞的信号 DNA 酶。此外,我们还回顾了 2'-5' 连接的 RNA 和 L-RNA 底物切割的工作。最后,简要描述了这些修饰的 DNA 酶作为生物传感器、RNases 和生化探针的应用,并在最后概述了一些未来的研究机会。