Assessing the Substrate Selectivities and Enantioselectivities of Eight Novel Baeyer−Villiger Monooxygenases toward Alkyl-Substituted Cyclohexanones
作者:Brian G. Kyte、Pierre Rouvière、Qiong Cheng、Jon D. Stewart
DOI:10.1021/jo030253l
日期:2004.1.1
4-alkyl-substituted cyclohexanones tested, enzymes were discovered that afforded each of the corresponding (S)-lactones in ≥98% ee. This was also true for the 2-alkyl-substituted cyclohexanones examined. The situation was more complex for 3-akyl-substituted cyclohexanones. In a few cases, single Baeyer−Villiger monooxygenases possessed both high regio- and enantioselectivities toward these compounds
Laboratory Evolution of Robust and Enantioselective Baeyer−Villiger Monooxygenases for Asymmetric Catalysis
作者:Manfred T. Reetz、Sheng Wu
DOI:10.1021/ja906212k
日期:2009.10.28
and induced fit docking suggests potential randomization sites, different from all previous approaches to focused library generation. Sites harboring highly conserved proline in a loop of the WT are targeted. The most active and enantioselective mutants retain the high thermostability of the parent WT PAMO. The success of the "proline" hypothesis in the present system calls for further testing in future
Induced allostery in the directed evolution of an enantioselective Baeyer–Villiger monooxygenase
作者:Sheng Wu、Juan Pablo Acevedo、Manfred T. Reetz
DOI:10.1073/pnas.0911656107
日期:2010.2.16
accepted by the wild type. By using the known X-ray structure of PAMO, a decision was made regarding an appropriate site at which saturation mutagenesis is most likely to generate mutants capable of inducing allostery without any effector compound being present. After screening only 400 transformants, a double mutant was discovered that catalyzes the asymmetric oxidative kinetic resolution of a set of structurally
Comparison of microbiologically and enzymatically mediated Baeyer–Villiger oxidations: synthesis of optically active caprolactones
作者:Véronique Alphand、Roland Furstoss、Sandrine Pedragosa-Moreau、Stanley M. Roberts、Andrew J. Willetts
DOI:10.1039/p19960001867
日期:——
Optically active a-substituted caprolactones (7-substituted oxepan-2-ones) were obtained by biocatalysed Baeyer-Villiger oxidations of various a-substituted cyclohexanones using either whole-cells of Acinetobacter TD63 or a purified cyclohexanone monooxygenase from Ps. putida NCIMB 10007(MO2). A refinement of the previously established active site model is proposed.