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A Synthetic Genetic Reversible Feynman Gate in a Single <i>E.coli</i> Cell and its Application in Bacterial to Mammalian Cell Information Transfer

2021-08-16

Abstract excerpt

Reversible computing is a nonconventional form of computing where the inputs and outputs are mapped in a unique one-to-one fashion. Reversible logic gates in single living cells have not been demonstrated. Here, we created a synthetic genetic reversible Feynman gate in a single E.coli cell. The inputs were extracellular chemicals, IPTG and aTc and the outputs were two fluorescence proteins EGFP and E2-Crimson. We...

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Literature Corpus work
78a47893-c8ad-5d98-88f3-24bf114d3940
DOI
10.1101/2021.08.16.456494
Open publication

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A Synthetic Genetic Reversible Feynman Gate in a Single <i>E.coli</i> Cell and its Application in Bacterial to Mammalian Cell Information TransferDOI 10.1101/2021.08.16.456494
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