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Bridging the Two Worlds: A Universal Interface between Enzymatic and DNA Computing Systems

机译:桥接两个世界:酶促与DNA计算系统之间的通用接口

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Molecular computing based on enzymes or nucleic acids has attracted a great deal of attention due to the perspectives of controlling living systems in the way we control electronic computers. Enzyme-based computational systems can respond to a great variety of small molecule inputs. They have the advantage of signal amplification and highly specific recognition. DNA computing systems are most often controlled by oligonucleotide inputs/outputs and are capable of sophisticated computing as well as controlling gene expressions. Here, we developed an interface that enables communication of otherwise incompatible nucleic-acid and enzyme-computational systems. The enzymatic system processes small molecules as inputs and produces NADH as an output. The NADH output triggers electrochemical release of an oligonucleotide, which is accepted by a DNA computational system as an input. This interface is universal because the enzymatic and DNA computing systems are independent of each other in composition and complexity.
机译:由于以控制电子计算机的方式控制生命系统的观点,基于酶或核酸的分子计算引起了极大的关注。基于酶的计算系统可以响应各种各样的小分子输入。它们具有信号放大和高度特异性识别的优势。 DNA计算系统通常由寡核苷酸输入/输出控制,并且能够进行复杂的计算并控制基因表达。在这里,我们开发了一个界面,该界面可以使原本不兼容的核酸和酶计算系统进行通讯。酶系统处理小分子作为输入,并产生NADH作为输出。 NADH输出触发寡核苷酸的电化学释放,寡核苷酸被DNA计算系统接受为输入。该接口是通用的,因为酶和DNA计算系统在组成和复杂性上相互独立。

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