Zhang Yuxin, Zhang Qiang, Cheng Fang, Chang Yangyang, Liu Meng, Li Yingfu
School of Environmental Science and Technology, Key Laboratory of Industrial Ecology and Environmental Engineering (Ministry of Education), Dalian University of Technology Dalian 116024 China
School of Bioengineering, Dalian University of Technology Dalian 116024 China.
Chem Sci. 2021 May 7;12(24):8282-8287. doi: 10.1039/d1sc00795e.
Strategies that speed up the on-command release of proteins (, enzymes) from stimuli-responsive materials are intrinsically necessary for biosensing applications, such as point-of-care testing, as they will achieve fast readouts with catalytic signal-amplification. However, current systems are challenging to work with because they usually exhibit response times on the order of hours up to days. Herein, we report on the first effort to construct a fast-responding gating system using protein-encapsulating functional DNA superstructures (denoted as protein@3D DNA). Proteins were directly embedded into 3D DNA during the one-pot rolling circle amplification process. We found that the specific DNA-DNA interaction and aptamer-ligand interaction could act as general protocols to release the loaded proteins from 3D DNA. The resulting gating system exhibits fast release kinetics on the order of minutes. Taking advantage of this finding, we designed a simple paper device by employing protein@3D DNA for colorimetric detection of toxin B ( marker). This device is capable of detecting 0.1 nM toxin B within 16 minutes.
对于生物传感应用(如即时检测)而言,加快蛋白质(如酶)从刺激响应材料中按需释放的策略本质上是必要的,因为它们能通过催化信号放大实现快速读数。然而,目前的系统使用起来具有挑战性,因为它们的响应时间通常在数小时到数天的量级。在此,我们报告了首次构建使用蛋白质封装功能DNA超结构(称为蛋白质@3D DNA)的快速响应门控系统的工作。在一锅滚环扩增过程中,蛋白质被直接嵌入到3D DNA中。我们发现特定的DNA-DNA相互作用和适体-配体相互作用可作为从3D DNA中释放负载蛋白质的通用方案。所得的门控系统表现出几分钟量级的快速释放动力学。利用这一发现,我们通过使用蛋白质@3D DNA设计了一种用于比色检测毒素B(标志物)的简易纸质装置。该装置能够在16分钟内检测出0.1 nM的毒素B。