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Quaternary Charge-Transfer Complex Enables Photoenzymatic Intermolecular Hydroalkylation of Olefins.


ABSTRACT: Intermolecular C-C bond-forming reactions are underdeveloped transformations in the field of biocatalysis. Here we report a photoenzymatic intermolecular hydroalkylation of olefins catalyzed by flavin-dependent 'ene'-reductases. Radical initiation occurs via photoexcitation of a rare high-order enzyme-templated charge-transfer complex that forms between an alkene, α-chloroamide, and flavin hydroquinone. This unique mechanism ensures that radical formation only occurs when both substrates are present within the protein active site. This active site can control the radical terminating hydrogen atom transfer, enabling the synthesis of enantioenriched γ-stereogenic amides. This work highlights the potential for photoenzymatic catalysis to enable new biocatalytic transformations via previously unknown electron transfer mechanisms.

SUBMITTER: Page CG 

PROVIDER: S-EPMC7832516 | biostudies-literature | 2021 Jan

REPOSITORIES: biostudies-literature

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Quaternary Charge-Transfer Complex Enables Photoenzymatic Intermolecular Hydroalkylation of Olefins.

Page Claire G CG   Cooper Simon J SJ   DeHovitz Jacob S JS   Oblinsky Daniel G DG   Biegasiewicz Kyle F KF   Antropow Alyssa H AH   Armbrust Kurt W KW   Ellis J Michael JM   Hamann Lawrence G LG   Horn Evan J EJ   Oberg Kevin M KM   Scholes Gregory D GD   Hyster Todd K TK  

Journal of the American Chemical Society 20201228 1


Intermolecular C-C bond-forming reactions are underdeveloped transformations in the field of biocatalysis. Here we report a photoenzymatic intermolecular hydroalkylation of olefins catalyzed by flavin-dependent 'ene'-reductases. Radical initiation occurs via photoexcitation of a rare high-order enzyme-templated charge-transfer complex that forms between an alkene, α-chloroamide, and flavin hydroquinone. This unique mechanism ensures that radical formation only occurs when both substrates are pre  ...[more]

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