School of Pharmacy, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Nucleic Acids Res. 2022 Aug 26;50(15):8431-8440. doi: 10.1093/nar/gkac650.
A series of multiple logic circuits based on a single biomolecular platform is constructed to perform nonarithmetic and arithmetic functions, including 4-to-2 encoder, 1-to-2 demultiplexer, 1-to-4 demultiplexer, and multi-input OR gate. The encoder to a DNA circuit is the equivalent of a sensory receptor to a reflex arc. They all function to encode information from outside the pathway (DNA circuit or reflex arc) into a form that subsequent pathways can recognize and utilize. Current molecular encoders are based on optical or electrical signals as outputs, while DNA circuits are based on DNA strands as transmission signals. The output of existing encoders cannot be recognized by subsequent DNA circuits. It is the first time the DNA-based encoder with DNA strands as outputs can be truly applied to the DNA circuit, enabling the application of DNA circuits in non-binary biological environments. Another novel feature of the designed system is that the developed nanodevices all have a simple structure, low leakage and low crosstalk, which allows them to implement higher-level encoders and demultiplexers easily. Our work is based on the idea of complex functionality in a simple form, which will also provide a new route for developing advanced molecular logic circuits.
基于单个生物分子平台构建了一系列多个逻辑电路,用于执行非算术和算术功能,包括 4-2 编码器、1-2 多路复用器、1-4 多路复用器和多输入或门。对于 DNA 电路,编码器相当于反射弧的感觉受体。它们的功能都是将来自通路外部(DNA 电路或反射弧)的信息编码为后续通路可以识别和利用的形式。目前的分子编码器基于光或电信号作为输出,而 DNA 电路则基于 DNA 链作为传输信号。现有编码器的输出不能被后续的 DNA 电路识别。这是首次将基于 DNA 的编码器与 DNA 链作为输出相结合,可以真正应用于 DNA 电路,使 DNA 电路能够在非二进制生物环境中应用。设计的系统的另一个新颖特征是,开发的纳米器件都具有简单的结构、低泄漏和低串扰,这使得它们能够轻松实现更高水平的编码器和解复用器。我们的工作基于在简单形式中实现复杂功能的想法,这也将为开发先进的分子逻辑电路提供新途径。