Catalytic iron-carbene intermediate revealed in a cytochromeccarbene transferase

Author:

Lewis Russell D.ORCID,Garcia-Borràs MarcORCID,Chalkley Matthew J.,Buller Andrew R.,Houk K. N.,Kan S. B. JenniferORCID,Arnold Frances H.

Abstract

Recently, heme proteins have been discovered and engineered by directed evolution to catalyze chemical transformations that are biochemically unprecedented. Many of these nonnatural enzyme-catalyzed reactions are assumed to proceed through a catalytic iron porphyrin carbene (IPC) intermediate, although this intermediate has never been observed in a protein. Using crystallographic, spectroscopic, and computational methods, we have captured and studied a catalytic IPC intermediate in the active site of an enzyme derived from thermostableRhodothermus marinus(Rma) cytochromec. High-resolution crystal structures and computational methods reveal how directed evolution created an active site for carbene transfer in an electron transfer protein and how the laboratory-evolved enzyme achieves perfect carbene transfer stereoselectivity by holding the catalytic IPC in a single orientation. We also discovered that the IPC inRmacytochromechas a singlet ground electronic state and that the protein environment uses geometrical constraints and noncovalent interactions to influence different IPC electronic states. This information helps us to understand the impressive reactivity and selectivity of carbene transfer enzymes and offers insights that will guide and inspire future engineering efforts.

Funder

National Science Foundation

NSF | ENG | Division of Chemical, Bioengineering, Environmental, and Transport Systems

HHS | National Institutes of Health

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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