A rationally designed orthogonal synthetase for genetically encoded fluorescent amino acids

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Abstract

The incorporation of non-canonical amino acids into proteins has emerged as a promising strategy to manipulate and study protein structure-function relationships with superior precision in vitro and in vivo. To date, fluorescent non-canonical amino acids (f-ncAA) have been successfully incorporated in proteins expressed in bacterial systems, Xenopus oocytes, and HEK-293T cells. Here, we describe the rational generation of a novel orthogonal aminoacyl-tRNA synthetase based on the E. coli tyrosine synthetase that is capable of encoding the f-ncAA tyr-coumarin in HEK-293T cells.

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Steinberg, X., Galpin, J., Nasir, G., Sepúlveda, R. V., Ladron de Guevara, E., Gonzalez-Nilo, F., … Brauchi, S. E. (2020). A rationally designed orthogonal synthetase for genetically encoded fluorescent amino acids. Heliyon, 6(10). https://doi.org/10.1016/j.heliyon.2020.e05140

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