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Photoexcitation of flavoenzymes enables a stereoselective radical cyclization.


ABSTRACT: Photoexcitation is a common strategy for initiating radical reactions in chemical synthesis. We found that photoexcitation of flavin-dependent "ene"-reductases changes their catalytic function, enabling these enzymes to promote an asymmetric radical cyclization. This reactivity enables the construction of five-, six-, seven-, and eight-membered lactams with stereochemical preference conferred by the enzyme active site. After formation of a prochiral radical, the enzyme guides the delivery of a hydrogen atom from flavin-a challenging feat for small-molecule chemical reagents. The initial electron transfer occurs through direct excitation of an electron donor-acceptor complex that forms between the substrate and the reduced flavin cofactor within the enzyme active site. Photoexcitation of promiscuous flavoenzymes has thus furnished a previously unknown biocatalytic reaction.

SUBMITTER: Biegasiewicz KF 

PROVIDER: S-EPMC7028431 | biostudies-literature | 2019 Jun

REPOSITORIES: biostudies-literature

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Photoexcitation of flavoenzymes enables a stereoselective radical cyclization.

Biegasiewicz Kyle F KF   Cooper Simon J SJ   Gao Xin X   Oblinsky Daniel G DG   Kim Ji Hye JH   Garfinkle Samuel E SE   Joyce Leo A LA   Sandoval Braddock A BA   Scholes Gregory D GD   Hyster Todd K TK  

Science (New York, N.Y.) 20190601 6446


Photoexcitation is a common strategy for initiating radical reactions in chemical synthesis. We found that photoexcitation of flavin-dependent "ene"-reductases changes their catalytic function, enabling these enzymes to promote an asymmetric radical cyclization. This reactivity enables the construction of five-, six-, seven-, and eight-membered lactams with stereochemical preference conferred by the enzyme active site. After formation of a prochiral radical, the enzyme guides the delivery of a h  ...[more]

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