Chemical Sciences Department, Universidad Andres Bello, Santiago, Chile.
Org Biomol Chem. 2021 Jun 28;19(24):5395-5402. doi: 10.1039/d1ob00366f. Epub 2021 May 28.
The RNA-cleaving 8-17 DNAzyme, which is a metalloenzyme that depends on divalent metal ions for its function, is the most studied catalytic DNA in terms of its mechanism. By the end of 2017, a report of the crystal structure of the enzyme-substrate complex in the presence of Pb probed some of the previous findings and opened new questions, especially around the participation of the metal ion in the catalytic mechanism and the promiscuity exhibited by the enzyme in terms of the metal cofactor required for catalysis. In this article we explore the role of the divalent metal ion in the mechanism of the 8-17 DNAzyme as a general acid, by measuring the influence of pH over the activity of a slower variant of the enzyme in the presence of Pb. We replaced G14, which has been identified as a general base in the mechanism of the enzyme, by the unnatural analog 2-aminopurine, with a lower pK value of the N1 group. With this approach, we obtained a bell-shaped pH-rate profile with experimental pK values of 5.4 and 7.0. Comparing these results with previous pH-rate profiles in the presence of Mg, our findings suggest the stabilization of the 5'-O leaving group by the hydrated metal ion acting as a general acid, in addition to the activation of the 2'-OH nucleophile by the general base G14.
RNA 切割 8-17 DNA 酶是一种依赖于二价金属离子发挥功能的金属酶,就其机制而言,是研究最多的催化 DNA。截至 2017 年底,一篇关于酶-底物复合物在 Pb 存在下的晶体结构的报告探究了一些先前的发现,并提出了新的问题,特别是在金属离子参与催化机制以及酶在催化所需金属辅因子方面的混杂性方面。在本文中,我们通过测量 pH 值对 Pb 存在下一种较慢变体酶活性的影响,探索了二价金属离子在 8-17 DNA 酶机制中作为质子酸的作用。我们用具有较低 N1 基团 pK 值的非天然类似物 2-氨基嘌呤取代了 G14,G14 已被确定为该酶机制中的一个广义碱基。通过这种方法,我们获得了一个钟形 pH-速率曲线,实验 pK 值为 5.4 和 7.0。将这些结果与以前在 Mg 存在下的 pH-速率曲线进行比较,我们的发现表明,水合金属离子通过作为质子酸稳定 5'-O 离去基团,此外,广义碱基 G14 还激活了 2'-OH 亲核试剂。