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  • (-) Keywords = protein engineering
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CYP154C5 regioselectivity in steroid hydroxylation explored by substrate modifications and protein engineering
Bracco, P., Wijma, H. J., Nicolai, B., Rodriguez Buitrago, J. A., Klünemann, T., Vila, A., … Schallmey, A. (2021). CYP154C5 regioselectivity in steroid hydroxylation explored by substrate modifications and protein engineering. ChemBioChem, 22(6), 1099-1110. https://doi.org/10.1002/cbic.202000735
HaloTag engineering for enhanced fluorogenicity and kinetics with a styrylpyridium dye
Miró-Vinyals, C., Stein, A., Fischer, S., Ward, T. R., & Deliz Liang, A. (2021). HaloTag engineering for enhanced fluorogenicity and kinetics with a styrylpyridium dye. ChemBioChem, 22(24), 3398-3401. https://doi.org/10.1002/cbic.202100424
(4<em>R</em>)- and (4<em>S</em>)-fluoroproline in the conserved <em>cis</em>-prolyl peptide bond of the thioredoxin fold: tertiary structure context dictates ring puckering
Rubini, M., Schärer, M. A., Capitani, G., & Glockshuber, R. (2013). (4R)- and (4S)-fluoroproline in the conserved cis-prolyl peptide bond of the thioredoxin fold: tertiary structure context dictates ring puckering. ChemBioChem, 14(9), 1053-1057. https://doi.org/10.1002/cbic.201300178