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pro vyhledávání: '"Rebecca Verez"'
Autor:
Shona M. Richardson, Peter J. Harrison, Michael A. Herrera, Menglu Wang, Rebecca Verez, Gustavo Perez Ortiz, Dominic J. Campopiano
Publikováno v:
Richardson, S M, Harrison, P J, Herrera, M A, Wang, M, Verez, R, Ortiz, G P & Campopiano, D J 2022, ' BioWF: A naturally-fused, di-domain biocatalyst from biotin biosynthesis displays an unexpectedly broad substrate scope ', ChemBioChem . https://doi.org/10.1002/cbic.202200171
The carbon backbone of biotin is constructed from the C 7 di-acid pimelate, which is converted to an acyl-CoA thioester by an ATP-dependent, pimeloyl-CoA synthetase (PCAS, encoded by BioW). The acyl-thioester is condensed with ʟ-alanine in a decarbo
Autor:
Duncan Stuart Macdonald, Donald Hilvert, Cindy Klaus, Xavier Garrabou, Takahiro Mori, Rebecca Verez
Publikováno v:
Journal of the American Chemical Society. 142:10250-10254
Controlling regio- and stereoselectivity of aldol additions is generally challenging. Here we show that an artificial aldolase with high specificity for acetone as the aldol donor can be reengineered via single active site mutations to accept linear
Publikováno v:
Journal of the American Chemical Society. 139:103-106
Artificial enzymes created by computational design and directed evolution are versatile biocatalysts whose promiscuous activities represent potentially attractive starting points for divergent evolution in the laboratory. The artificial aldolase RA95