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从 8-17 DNA 酶的结构和功能研究中获得的 DNA 催化见解。

Insights into DNA catalysis from structural and functional studies of the 8-17 DNAzyme.

机构信息

Chemical Sciences Department, Universidad Andres Bello, Santiago, Chile.

Department of Chemistry, Life Sciences and Environmental Sustainability, University of Parma, Parma, Italy.

出版信息

Org Biomol Chem. 2020 Mar 4;18(9):1697-1709. doi: 10.1039/c9ob02453k.

Abstract

DNAzymes (deoxyribozymes) are single-stranded DNA molecules endowed with catalytic activity, obtained by in vitro selection. In the past 25 years, dozens of DNAzymes have been identified and employed for applicative purposes, yet our knowledge of the structural and mechanistic basis of DNA catalysis remains very limited. The RNA-cleaving 8-17 DNAzyme, which depends on divalent metal ions for function, is possibly the most studied catalytic DNA in terms of mechanism. It is very efficient, implying that it adopts a combination of distinct catalytic strategies, but until recently it was uncertain which strategies are at play and how they are implemented. Recently, however, new functional studies and the attainment of high-resolution X-ray structures of an 8-17 construct, have offered a great opportunity for a more detailed understanding of its mechanism. This review examines the functional information gathered on 8-17, in the light of the available crystal structures, pointing out the congruences and possible inconsistencies between the functional and structural data. We will analyze separately three aspects of the DNAzyme function: the structural requirements for catalysis, the role of metal ions and the influence of pH on activity. Ultimately, we will contrast the experimental data with a model for the 8-17 mechanism proposed in the crystallographic study, whereby one specific G residue (G14) acts as a general base and a metal-coordinated water molecule acts as a general acid. Throughout this analysis we will signal the most outstanding mechanistic issues that remain to be addressed, with implications for the broader field of DNA catalysis.

摘要

DNA 酶(脱氧核酶)是具有催化活性的单链 DNA 分子,通过体外选择获得。在过去的 25 年中,已经鉴定出数十种 DNA 酶并将其用于应用目的,但我们对 DNA 催化的结构和机制基础的了解仍然非常有限。依赖于二价金属离子发挥功能的 RNA 切割 8-17 DNA 酶在机制方面可能是研究最多的催化 DNA。它非常有效,这意味着它采用了多种不同的催化策略,但直到最近,人们还不确定哪些策略在起作用,以及它们是如何实施的。然而,最近的新功能研究和 8-17 结构的高分辨率 X 射线结构的获得,为更详细地了解其机制提供了一个很好的机会。本综述根据现有晶体结构,考察了 8-17 获得的功能信息,指出了功能和结构数据之间的一致性和可能的不一致性。我们将分别分析 DNA 酶功能的三个方面:催化的结构要求、金属离子的作用以及 pH 值对活性的影响。最终,我们将实验数据与晶体学研究中提出的 8-17 机制模型进行对比,其中一个特定的 G 残基(G14)充当通用碱,一个金属配位的水分子充当通用酸。在整个分析过程中,我们将指出仍需要解决的最突出的机制问题,这对更广泛的 DNA 催化领域具有影响。

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