| Literature DB >> 29120530 |
Oliver Buß1, Delphine Muller1, Sven Jager2, Jens Rudat1, Kersten S Rabe3.
Abstract
ω-Transaminases (ω-TAs) are important biocatalysts for the synthesis of active, chiral pharmaceutical ingredients containing amino groups, such as β-amino acids, which are important in peptidomimetics and as building blocks for drugs. However, the application of ω-TAs is limited by the availability and stability of enzymes with high conversion rates. One strategy for the synthesis and optical resolution of β-phenylalanine and other important aromatic β-amino acids is biotransformation by utilizing an ω-transaminase from Variovorax paradoxus. We designed variants of this ω-TA to gain higher process stability on the basis of predictions calculated by using the FoldX software. We herein report the first thermostabilization of a nonthermostable S-selective ω-TA by FoldX-guided site-directed mutagenesis. The melting point (Tm ) of our best-performing mutant was increased to 59.3 °C, an increase of 4.0 °C relative to the Tm value of the wild-type enzyme, whereas the mutant fully retained its specific activity.Entities:
Keywords: amino acids; biocatalysis; enzyme engineering; thermostability; transaminases
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Year: 2017 PMID: 29120530 DOI: 10.1002/cbic.201700467
Source DB: PubMed Journal: Chembiochem ISSN: 1439-4227 Impact factor: 3.164