Austrian Centre of Industrial Biotechnology (ACIB) c/o, Department of Chemistry, Organic and Bioorganic Chemistry, University of Graz, Heinrichstrasse 28, 8010 Graz, Austria.
Chemistry. 2011 Jan 3;17(1):378-83. doi: 10.1002/chem.201001602. Epub 2010 Nov 30.
A strategy for the biocatalytic racemization of primary α-chiral amines was developed by employing a pair of stereocomplementary PLP-dependent ω-transaminases. The interconversion of amine enantiomers proceeded through reversible transamination by a prochiral ketone intermediate, either catalyzed by a pair of stereocomplementary ω-transaminases or by a single enzyme possessing low stereoselectivity. To tune the system, the type and concentration of a nonchiral amino acceptor proved to be crucial. Finally, racemization could be achieved by the cross-transamination of two different amines without a requirement for an external amino acceptor. Several synthetically and industrially important amines could be enzymatically racemized under mild reaction conditions.
开发了一种通过使用一对立体互补的 PLP 依赖性 ω-转氨酶对伯手性α-手性胺进行生物催化外消旋化的策略。通过前手性酮中间体的可逆转氨作用进行胺对映体的相互转化,该中间体要么由一对立体互补的 ω-转氨酶催化,要么由具有低立体选择性的单一酶催化。为了调节该系统,非手性氨基受体的类型和浓度被证明是至关重要的。最后,通过两种不同胺的交叉转氨作用可以实现外消旋化,而不需要外部氨基受体。在温和的反应条件下,可以对几种具有合成和工业重要性的胺进行酶促外消旋化。