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- Chemical and microbiological remote oxidation of (–)-bornyl acetate. Malcolm S. Allen, Nicholas Darby, Philip Salisbury, Thomas Money
, J. Chem. Soc., Chem. Commun.
, 1977
, 358
- Nucleophilic addition and substitution reactions of polyhalogenated norbornadienes with alkenoxide and alkenoxide anions. A novel Claisen rearrangement of allyl norbornadienyl ethers. C. H. M. Adams, K. Mackenzie, P. R. Young
, J. Chem. Soc., Perkin Trans. 2
, 1972
, 1856
- Divorce in the two-component BVMO family: the single oxygenase for enantioselective chemo-enzymatic Baeyer–Villiger oxidations. Robert Röllig, Caroline E. Paul, Magalie Claeys-Bruno, Katia Duquesne, Selin Kara, Véronique Alphand
, Org. Biomol. Chem.
, 2021
, 19
, 3441
- Hybrid catalysis for enantioselective Baeyer–Villiger oxidation and stereoselective epoxidation: a Cp*Ir complex to fuel FMN and FAD reduction for flavoprotein monooxygenase modules. Robert Röllig, Caroline E. Paul, Pierre Rousselot-Pailley, Selin Kara, Véronique Alphand
, React. Chem. Eng.
, 2023
, 8
, 3117
- A general protein purification and immobilization method on controlled porosity glass: biocatalytic applications. K. Engelmark Cassimjee, M. Kadow, Y. Wikmark, M. Svedendahl Humble, M. L. Rothstein, D. M. Rothstein, J.-E. Bäckvall
, Chem. Commun.
, 2014
, 50
, 9134
- Native roles of Baeyer–Villiger monooxygenases in the microbial metabolism of natural compounds. Carmien Tolmie, Martha S. Smit, Diederik J. Opperman
, Nat. Prod. Rep.
, 2019
, 36
, 326
- Discovery, application and protein engineering of Baeyer–Villiger monooxygenases for organic synthesis. Kathleen Balke, Maria Kadow, Hendrik Mallin, Stefan Saß, Uwe T. Bornscheuer
, Org. Biomol. Chem.
, 2012
, 10
, 6249
- Ligation independent cloning (LIC) as a rapid route to families of recombinant biocatalysts from sequenced prokaryotic genomes. Daniel Bonsor, Stephanie F. Butz, Julianna Solomons, Stephanie Grant, Ian J. S. Fairlamb, Mark J. Fogg, Gideon Grogan
, Org. Biomol. Chem.
, 2006
, 4
, 1252
- Biological Baeyer–Villiger oxidation of some monocyclic and bicyclic ketones using monooxygenases from Acinetobacter calcoaceticus NCIMB 9871 and Pseudomonas putida NCIMB 10007. Rene Gagnon, Gideon Grogan, Melissa S. Levitt, Stanley M. Roberts, Peter W. H. Wan, Andrew J. Willetts
, J. Chem. Soc., Perkin Trans. 1
, 1994
, 2537
- Chapter 12. Enzyme chemistry. D. Gani
, Annu. Rep. Prog. Chem., Sect. B: Org. Chem.
, 1986
, 83
, 303