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A RET-supported logic gate combinatorial library to enable modeling and implementation of intelligent logic functions

机译:RET支持的逻辑门组合库可实现智能逻辑功能的建模和实现

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摘要

Boolean logic gates integrate multiple digital inputs into a digital output. Among these, logic gates based on nucleic acids have attracted a great deal of attention due to the prospect of controlling living systems in the way we control electronic computers. Herein, by employing Thioflavin T (ThT) as a signal transducer, we integrated multiple components based on RET (a type of proto-oncogene) into a logic gate combinatorial library, including basic logic gates (NOR, INHIBIT, IMPLICATION), a single three-input NOR gate, and combinatorial gates (INHIBIT–OR, NOT–AND–NOR). In this library, gates were connected in series where the output of the previous gate was the input for the next gate. Subsequently, by taking advantage of the library, some intelligent logic functions were realized. Expectedly, a biocomputing keypad-lock security system was designed by sequential logic operations. Moreover, a parity checker which can identify even numbers and odd numbers from natural numbers was established successfully. This work helps elucidate the design rules by which simple logic can be harnessed to produce diverse and complex calculations by rewiring communication between different gates. Together, our system may serve as a promising proof of principle that demonstrates increased computational complexity by linking multiple logic gates together.
机译:布尔逻辑门将多个数字输入集成到一个数字输出中。其中,基于核酸的逻辑门由于以控制电子计算机的方式控制生命系统的前景而备受关注。在本文中,通过使用硫黄素T(ThT)作为信号传感器,我们将基于RET(一种原癌基因)的多个组件集成到一个逻辑门组合库中,包括基本逻辑门(NOR,INHIBIT,IMPLICATION),一个三输入或非门和组合门(INHIBIT-OR,NOT-AND-NOR)。在该库中,门串联连接,其中前一个门的输出是下一个门的输入。随后,利用该库,实现了一些智能逻辑功能。可以预期,通过顺序逻辑操作设计了生物计算键盘锁安全系统。此外,成功建立了可以从自然数中识别偶数和奇数的奇偶校验器。这项工作有助于阐明设计规则,通过该规则,可以通过重新布线不同门之间的通信来利用简单的逻辑来生成各种复杂的计算。总之,我们的系统可以作为有希望的原理证明,通过将多个逻辑门链接在一起来证明增加的计算复杂性。

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