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Cellular Computational Logic Using Toehold Switches SCIE SCOPUS

Title
Cellular Computational Logic Using Toehold Switches
Authors
CHOI, SEUNGDOLee, GeonhuKIM, JONGMIN
Date Issued
2022-04
Publisher
Multidisciplinary Digital Publishing Institute (MDPI)
Abstract
The development of computational logic that carries programmable and predictable features is one of the key requirements for next-generation synthetic biological devices. Despite considerable progress, the construction of synthetic biological arithmetic logic units presents numerous challenges. In this paper, utilizing the unique advantages of RNA molecules in building complex logic circuits in the cellular environment, we demonstrate the RNA-only bitwise logical operation of XOR gates and basic arithmetic operations, including a half adder, a half subtractor, and a Feynman gate, in Escherichia coli. Specifically, de-novo-designed riboregulators, known as toehold switches, were concatenated to enhance the functionality of an OR gate, and a previously utilized antisense RNA strategy was further optimized to construct orthogonal NIMPLY gates. These optimized synthetic logic gates were able to be seamlessly integrated to achieve final arithmetic operations on small molecule inputs in cells. Toehold-switch-based ribocomputing devices may provide a fundamental basis for synthetic RNA-based arithmetic logic units or higher-order systems in cells
URI
https://oasis.postech.ac.kr/handle/2014.oak/112474
DOI
10.3390/ijms23084265
ISSN
1661-6596
Article Type
Article
Citation
International Journal of Molecular Sciences, vol. 23, no. 8, 2022-04
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