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August 8, 2024Journal of the American Chemical Society22 citationsOpen Access

A De Novo Metalloenzyme for Cerium Photoredox Catalysis

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AKAndreas KleinFLFlorian Leiss-MaierRMRahel Mühlhofer

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Abstract

Cerium photoredox catalysis has emerged as a powerful strategy to activate molecules under mild conditions. Radical intermediates are formed using visible light and simple complexes of the earth-abundant lanthanide. Here, we report an artificial photoenzyme enabling this chemistry inside a protein. We utilize a de novo designed protein scaffold that tightly binds lanthanide ions in its central cavity. Upon visible-light irradiation, the cerium-dependent enzyme catalyzes the radical C-C bond cleavage of 1,2-diols in aqueous solution. Protein engineering led to variants with improved photostability and metal binding behavior. The photoenzyme cleaves a range of aromatic and aliphatic substrates, including lignin surrogates. Surface display of the protein scaffold on

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Klein et al. (2024) studied this question.

synapsesocial.com/papers/68e5cfeeb6db643587565dc8https://doi.org/10.1021/jacs.4c04618
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