School of Life Science and Technology , Tokyo Institute of Technology , 4259 B-57 Nagatsuta Midori-ku , Yokohama, Kanagawa , Japan 226-8501.
Biomacromolecules. 2018 Jun 11;19(6):2082-2088. doi: 10.1021/acs.biomac.8b00201. Epub 2018 Apr 13.
Control of protein conformation and function, induced by the binding of an effector, plays significant roles in modulating biochemical reaction. Although the DNAzymes catalytic activity is similar to protein-based enzymes, reports of allosterically controlled DNAzymes are still limited except for aptamer-DNAzymes hybrrids. Here, we report allosteric control of peroxidase-mimicking DNAzyme activity using cationic copolymers. The DNAzyme requires a structured G-quadruplex core and hemin for activity, and the DNAzyme with a parallel G-quadruplex core has higher DNAzyme activity than DNAzymes based on other types of structure. We previously reported that a cationic copolymer composed of a cationic backbone and hydrophilic dextran side chains selectively stabilizes parallel G-quadruplex structures. In this study, we investigated effects of the cationic copolymer on peroxidase-mimicking DNAzyme activity. The cationic copolymer enhanced the DNAzyme activity by more than 30-fold by stabilizing the parallel G-quadruplex structure. Furthermore, reversible allosteric control of DNAzyme activity was achieved by adding cationic and anionic polymers.
效应物结合诱导蛋白质构象和功能的改变,在调节生化反应中发挥着重要作用。尽管 DNA 酶的催化活性类似于基于蛋白质的酶,但除了适体-DNA 酶杂种之外,关于别构调控的 DNA 酶的报道仍然有限。在这里,我们报告了使用阳离子共聚物对过氧化物酶模拟 DNA 酶活性的别构调控。该 DNA 酶需要一个结构化的 G-四链体核心和血红素才能发挥活性,并且具有平行 G-四链体核心的 DNA 酶比基于其他类型结构的 DNA 酶具有更高的 DNA 酶活性。我们之前曾报道过,由阳离子主链和亲水性葡聚糖侧链组成的阳离子共聚物选择性地稳定平行 G-四链体结构。在本研究中,我们研究了阳离子共聚物对过氧化物酶模拟 DNA 酶活性的影响。阳离子共聚物通过稳定平行 G-四链体结构将 DNA 酶活性增强了 30 多倍。此外,通过添加阳离子和阴离子聚合物实现了 DNA 酶活性的可逆别构调控。