适体
化学
生物传感器
脱氧核酶
G-四倍体
计算生物学
分子识别
蛋白质工程
纳米技术
生物物理学
组合化学
生物化学
分子生物学
酶
分子
DNA
生物
有机化学
材料科学
作者
Hualong Gao,Jiaoxing Zhao,Yang Huang,Xiao Cheng,Shuo Wang,Yu Han,Yi Xiao,Xinhui Lou
出处
期刊:Analytical Chemistry
[American Chemical Society]
日期:2019-10-15
卷期号:91 (22): 14514-14521
被引量:29
标识
DOI:10.1021/acs.analchem.9b03368
摘要
Structure-switching aptamers (SSAs) offer a promising recognition element for sensor development. However, the generation of SSAs via in vitro aptamer selection technologies or postselection engineering is challenging. Inspired by the two-domain structure of antibodies, we have devised a simple, universal strategy for engineering aptamers into SSAs with signal reporting functionality. These constructs consist of a "constant" domain, comprising a split DNAzyme G-quadruplex (G4) region for signal transduction, and a "variable" domain, comprising an aptamer sequence capable of specific target binding. In the absence of target, the G4-SSA construct folds into a parallel G4 structure with high peroxidase catalytic activity. Target binding disrupts the G4 structure, resulting in low enzymatic activity. We demonstrate that this change in DNAzyme activity enables sensitive and specific colorimetric detection of diverse targets including Hg2+, thrombin, sulfadimethoxine, cocaine, and 17β-estradiol. G4-SSAs can also achieve label-free fluorescence detection of various targets using a specific G4-binding dye. We demonstrate that diverse aptamers can be readily engineered into G4-SSA constructs independent of target class, binding affinity, aptamer length, or structure. This design strategy could broadly extend the power, accessibility, and utility of numerous SSA-based biosensors.
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