Department of Chemistry and Biochemistry, The Ohio State University, Columbus, OH 43210, USA.
Chembiochem. 2021 Apr 6;22(7):1261-1267. doi: 10.1002/cbic.202000754. Epub 2020 Dec 22.
Template-guided chemical reactions between nucleic acid strands are an important process in biomedical research. However, almost all of these reactions employ an oligonucleotide-templated approach that is based on the double-helix alignment. The moderate stability of the double helix makes this approach unsuitable for many chemical reactions, so alternative nucleic acid alignment mechanisms, demonstrating higher thermal and chemical stability, are desirable. Earlier, we described a noncovalent coupling mechanism between DNA strands through a quadruplex-and-Mg connection (QMC). QMC is based on G-quadruplexes and allows unusually stable and specific interactions. Herein, a novel catalytic nucleic acid reaction, based on QMC, is described. This approach uses G-tetrads as a structural and recognition element without employing Watson-Crick complementarity rules at any stage of substrate/catalyst formation or interaction between them. Quadruplex-templated ligation can be achieved through the self-ligation of two nucleic acid strands, or through a quadruplex catalyst, which forms a G-triplex and specifically connects the strands. The process is extraordinarily robust and efficient. For instance, the ligation of carbodiimide-activated substrates can proceed in boiling solutions, and complete ligation is demonstrated within a minute. The quadruplex-templated and catalyzed reactions will create new opportunities for chemical reactions requiring harsh experimental conditions.
模板指导的核酸链间化学反应是生物医学研究中的一个重要过程。然而,几乎所有这些反应都采用基于双螺旋排列的寡核苷酸模板方法。双螺旋的中等稳定性使得这种方法不适合许多化学反应,因此需要具有更高热稳定性和化学稳定性的替代核酸排列机制。我们之前描述了通过四链体和 Mg 连接(QMC)实现的 DNA 链之间的非共价偶联机制。QMC 基于 G-四链体,并允许非常稳定和特异性的相互作用。在此,描述了一种基于 QMC 的新型催化核酸反应。该方法使用 G-四联体作为结构和识别元件,而在底物/催化剂形成或它们之间相互作用的任何阶段都不使用 Watson-Crick 互补规则。四链体模板连接可以通过两条核酸链的自我连接或通过形成 G-三链体并特异性连接链的四链体催化剂来实现。该过程非常稳健且高效。例如,碳二亚胺激活的底物的连接可以在沸腾的溶液中进行,并且在一分钟内完成完全连接。四链体模板和催化反应将为需要苛刻实验条件的化学反应创造新的机会。