Journal of the American Chemical Society · 2017 · 210 citations · 31 references
We report an efficient strategy for the asymmetric synthesis of trifluoromethyl-substituted cyclopropanes by means of myoglobin-catalyzed olefin cyclopropanation reactions in the presence of 2-diazo-1,1,1-trifluoroethane (CF<sub>3</sub>CHN<sub>2</sub>) as the carbene donor. These transformations were realized using a two-compartment setup in which ex situ generated gaseous CF<sub>3</sub>CHN<sub>2</sub> is processed by engineered myoglobin catalysts expressed in bacterial cells. This approach was successfully applied to afford a variety of trans-1-trifluoromethyl-2-arylcyclopropanes in high yields (61-99%) and excellent diastereo- and enantioselectivity (97-99.9% de and ee). Furthermore, mirror-image forms of these products could be obtained using myoglobin variants featuring stereodivergent selectivity. These reactions provide a convenient and effective biocatalytic route to the stereoselective synthesis of key fluorinated building blocks of high value for medicinal chemistry and drug discovery. This work expands the range of carbene-mediated transformations accessible via metalloprotein catalysts and introduces a potentially general strategy for exploiting gaseous and/or hard-to-handle carbene donor reagents in biocatalytic carbene transfer reactions.
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Abiological catalysis by artificial haem proteins containing noble metals in place of iron
Hanna M. Key, Paweł Dydio, Douglas S. Clark et al. · Nature · 2016 · 436 citations · Full text
An artificial metalloenzyme with the kinetics of native enzymes
Paweł Dydio, Hanna M. Key, Andrew Nazarenko et al. · Science · 2016 · 369 citations · Full text