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Alternate Heme Ligation Steers Activity and Selectivity in Engineered Cytochrome P450-Catalyzed Carbene-Transfer Reactions

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NIAID Data Ecosystem2026-03-10 收录
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https://figshare.com/articles/dataset/Alternate_Heme_Ligation_Steers_Activity_and_Selectivity_in_Engineered_Cytochrome_P450-Catalyzed_Carbene-Transfer_Reactions/7333757
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We report a biocatalytic platform of engineered cytochrome P450 enzymes to carry out carbene-transfer reactions using a lactone-based carbene precursor. By simply altering the heme-ligating residue, we obtained two enzymes that catalyze olefin cyclopropanation (Ser) or S–H bond insertion (Cys). Both enzymes exhibit high catalytic efficiency and stereo­selectivity, thus enabling facile access to structurally diverse spiro[2.4]­lactones and α-thio-γ-lactones. Computational studies revealed the mechanism of carbene S–H insertion and explain how the axial ligand controls reactivity and selectivity. This work expands the catalytic repertoire of heme­proteins and offers insights into how these enzymes can be tuned for new chemistry.
创建时间:
2018-11-13
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