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  4. Influence of reaction conditions on the enantioselectivity of biocatalyzed C-C bond formations under high pressure conditions
 
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Influence of reaction conditions on the enantioselectivity of biocatalyzed C-C bond formations under high pressure conditions

Publikationstyp
Journal Article
Date Issued
2011-02-03
Sprache
English
Author(s)
Kara, Selin  
Technische Biokatalyse V-6  
Long, Wei Sing  
Berheide, Marco  
Technische Biokatalyse V-6  
Peper, Stephanie  
Niemeyer, Bernd  
Liese, Andreas  orcid-logo
Technische Biokatalyse V-6  
TORE-URI
https://hdl.handle.net/11420/44018
Journal
Journal of biotechnology  
Volume
152
Issue
3
Start Page
87
End Page
92
Citation
Journal of Biotechnology 152 (3): 87-92 (2011)
Publisher DOI
10.1016/j.jbiotec.2011.01.020
Scopus ID
2-s2.0-79952899156
Publisher
Elsevier Science
Benzoylformate decarboxylase (BFD, EC 4.1.1.7) is a homotetrameric thiamine diphosphate (ThDP)-dependent enzyme which catalyzes the synthesis of chiral 2-hydroxyketones accepting a broad range of aldehydes as substrates. In this study the synthesis of 2-hydroxypropiophenone (2-HPP) from benzaldehyde and acetaldehyde was catalyzed by three BFD variants namely BFD F464I, BFD A460I and BFD A460I-F464I. This paper reports the effect of hydrostatic pressure up to 290. MPa when the reactions were carried out at different benzaldehyde concentrations (5-40. mM) as well as at different pH values (7.0-8.5). Acetaldehyde concentration was fixed at 400. mM in all biotransformations. Reactions performed at high benzaldehyde concentrations and at high hydrostatic pressures showed an increase in (R)-2-HPP formation catalyzed by all BFD variants. For BFD A460I-F464I we observed an increase in the ee of (R)-2-HPP up to 80%, whereas at atmospheric conditions this variant synthesizes (R)-2-HPP with an ee of only 50%. Alkaline conditions (up to pH 8.5) and high hydrostatic pressures resulted in an increase of (R)-2-HPP synthesis, especially in the case of BFD A460I and BFD F464I.
Subjects
Benzoylformate decarboxylase
C-C bond formation
Enantioselectivity
Enzymatic catalysis
High pressure catalysis
PH
DDC Class
540: Chemistry
570: Life Sciences, Biology
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