脱氧核酶
适体
化学
血红素
G-四倍体
组合化学
核酶
基质(水族馆)
合理设计
共轭体系
DNA
酶动力学
生物化学
寡核苷酸
立体化学
核酸
生物物理学
酶
催化作用
生物传感器
活动站点
纳米技术
核糖核酸
血红素
有机化学
分子生物学
基因
遗传学
地质学
材料科学
聚合物
生物
海洋学
作者
Eyal Golub,Bauke Albada,Wensheng Liao,Yonatan Biniuri,Itamar Willner
摘要
A novel concept to improve the catalytic functions of nucleic acids (DNAzymes) is introduced. The method involves the conjugation of a DNA recognition sequence (aptamer) to the catalytic DNAzyme, yielding a hybrid structure termed "nucleoapzyme". Concentrating the substrate within the "nucleoapzyme" leads to enhanced catalytic activity, displaying saturation kinetics. Different conjugation modes of the aptamer/DNAzyme units and the availability of different aptamer sequences for a substrate provide diverse means to design improved catalysts. This is exemplified with (i) The H2O2-mediated oxidation of dopamine to aminochrome using a series of hemin/G-quadruplex-dopamine aptamer nucleoapzymes. All nucleoapzymes reveal enhanced catalytic activities as compared to the separated DNAzyme/aptamer units, and the most active nucleoapzyme reveals a 20-fold enhanced activity. Molecular dynamics simulations provide rational assessment of the activity of the various nucleoapzymes. The hemin/G-quadruplex-aptamer nucleoapzyme also stimulates the chiroselective oxidation of L- vs D-DOPA by H2O2. (ii) The H2O2-mediated oxidation of N-hydroxy-L-arginine to L-citrulline by a series of hemin/G-quadruplex-arginine aptamer conjugated nucleoapzymes.
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