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Published on: October 30, 2018
β-Phenylalanine Ester Synthesis from Stable β-Keto Ester Substrate Using Engineered ω-Transaminases.
Oliver Buß1, Moritz Voss2, André Delavault3
1Institute of Process Engineering in Life Sciences, Section II: Technical Biology, Karlsruhe Institute of Technology, 76021 Karlsruhe, Germany. oliver.buss@kit.edu.
Researchers explored a new method for synthesizing chiral amines using ω-transaminases and β-keto esters. This approach successfully produced chiral β-phenylalanine esters, offering a stable alternative to β-keto acids.
Area of Science:
- Biocatalysis
- Enzyme Engineering
- Organic Synthesis
Background:
- Chiral amine synthesis is crucial in pharmaceuticals.
- Amination of β-keto acids is challenging due to substrate instability.
- Transamination of β-keto esters presents a viable alternative.
Purpose of the Study:
- To investigate the use of ω-transaminases for the amination of β-keto esters.
- To identify suitable ω-transaminase variants for synthesizing chiral β-phenylalanine esters.
- To establish an alternative route for producing enantiomerically enriched β-amino acid derivatives.
Main Methods:
- Screening of an ω-transaminase library using a coloring o-xylylenediamine assay.
- Enzyme engineering and directed evolution of ω-transaminases.
- Semi-preparative synthesis for isolation of the target product.
Main Results:
- Identified ω-transaminase mutants (3FCR_4M and ATA117 11Rd) with potential for β-keto ester transamination.
- Achieved 32% conversion for the (S)-enantiomer and 13% for the (R)-enantiomer of ethyl benzoylacetate.
- Successfully isolated (S)-β-phenylalanine ethyl ester via semi-preparative synthesis.
Conclusions:
- ω-transaminases can be engineered for the efficient synthesis of chiral β-phenylalanine esters from β-keto esters.
- This biocatalytic approach offers a promising alternative to traditional chemical methods.
- The identified enzyme variants are suitable for further optimization and scale-up.
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