Enzymatic control over reactive intermediates enables direct oxidation of alkenes to carbonyls by a P450 iron-oxo species J Soler, S Gergel, C Klaus, SC Hammer, M Garcia-Borràs Journal of the American Chemical Society 144 (35), 15954-15968, 2022 | 37 | 2022 |
New catalytic reactions by enzyme engineering C Klaus, SC Hammer Trends in Chemistry 4 (5), 363-366, 2022 | 17 | 2022 |
Engineered artificial carboligases facilitate regioselective preparation of enantioenriched aldol adducts DS Macdonald, X Garrabou, C Klaus, R Verez, T Mori, D Hilvert Journal of the American Chemical Society 142 (23), 10250-10254, 2020 | 14 | 2020 |
Studies toward the Synthesis of an Oxazole-Based Analog of (−)-Zampanolide CP Bold, C Klaus, B Pfeiffer, J Schürmann, R Lombardi, D Lucena-Agell, ... Organic Letters 23 (6), 2238-2242, 2021 | 10 | 2021 |
Engineering cytochrome P450s for selective alkene to carbonyl oxidation C Klaus, SC Hammer P450 Enzymes 693, 111, 2023 | 1 | 2023 |
Directed Evolution Enables Dynamic Control of Transient Intermediates for Anti-Markovnikov Wacker-Tsuji-Type Oxidation of Aliphatic Alkenes C Klaus, J Soler, G Kubik, Y Gumulya, Y Hui, EJ Watkins-Dulaney, ... | | 2024 |
Enzymatic Aerobic Oxidation of Aliphatic Alkenes to Aldehydes: Directed Evolution, Mechanistic Studies, and Application in Synthesis C Klaus | | 2023 |