Chen Junhua, Pan Jiafeng, Chen Shu
Guangdong Key Laboratory of Integrated Agro-environmental Pollution Control and Management , Guangdong Institute of Eco-environmental Science & Technology , Guangzhou 510650 , China . Email:
Chem Sci. 2017 Oct 20;9(2):300-306. doi: 10.1039/c7sc04007e. eCollection 2018 Jan 14.
A complete set of binary basic logic gates (OR, AND, NOR, NAND, INHIBT, IMPLICATION, XOR and XNOR) is realized on a label-free and enzyme-free sensing platform using caged G-quadruplex as the signal transducer. In the presence of an appropriate input, the temporarily blocked G-rich sequence in the hairpin DNA is released through cleavage by the synergetically-stabilized Mg-dependent DNAzyme which can be made to function the input-guided cooperative conjunction of the DNAzyme subunits. In the presence of hemin, the unblocked G-quadruplex DNAzyme catalyzes the oxidation of 3,3',5,5'-tetramethylbenzidine (TMB) by HO to generate a colored readout signal which can be readily distinguished by the naked eye. This strategy is quite versatile and straightforward for logic operations. Two combinatorial gates (XOR + AND and XOR + NOR) are also successfully fabricated to demonstrate the modularity and scalability of the computing elements. The distinctive advantage of this logic system is that molecular events in aqueous solution could be translated into a color change which can be directly observed by the naked eye without resorting to any analytical instrumentation. Moreover, this work reveals a new route for the design of molecular logic gates that can be executed without any labeling and immobilization procedure or separation and washing step, which holds great promise for intelligent point-of-care diagnostics and in-field applications.
利用笼形G-四链体作为信号转导器,在无标记、无酶的传感平台上实现了一套完整的二进制基本逻辑门(或门、与门、或非门、与非门、抑制门、蕴含门、异或门和同或门)。在存在适当输入的情况下,发夹DNA中暂时被阻断的富含G的序列通过协同稳定的Mg依赖性DNA酶的切割而释放,该DNA酶可在输入引导的DNA酶亚基协同结合作用下起作用。在存在血红素的情况下,未被阻断的G-四链体DNA酶催化HO对3,3',5,5'-四甲基联苯胺(TMB)的氧化,以产生可通过肉眼轻松区分的显色读出信号。这种策略对于逻辑运算非常通用且直接。还成功制造了两个组合门(异或 + 与门和异或 + 或非门),以证明计算元件的模块化和可扩展性。该逻辑系统的独特优势在于,水溶液中的分子事件可以转化为颜色变化,无需借助任何分析仪器即可直接用肉眼观察到。此外,这项工作揭示了一种设计分子逻辑门的新途径,该逻辑门无需任何标记和固定程序或分离和洗涤步骤即可执行,这对于智能即时诊断和现场应用具有巨大潜力。