Inter- and intramolecular aldol reactions promiscuously catalyzed by a proline-based tautomerase

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Abstract

The enzyme 4-oxalocrotonate tautomerase (4-OT), which in nature catalyzes a tautomerization step as part of a catabolic pathway for aromatic hydrocarbons, was found to promiscuously catalyze different types of aldol reactions. These include the self-condensation of propanal, the cross-coupling of propanal and benzaldehyde, the cross-coupling of propanal and pyruvate, and the intramolecular cyclizations of hexanedial and heptanedial. Mutation of the catalytic amino-terminal proline (P1A) greatly reduces 4-OT's aldolase activities, whereas mutation of another active site residue (F50A) strongly enhances 4-OT's aldolase activities, indicating that aldolization is an active site process. This catalytic promiscuity of 4-OT could be exploited as starting point to create tailor-made, artificial aldolases for challenging self- and cross-aldolizations.

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Rahimi, M., Geertsema, E. M., Miao, Y., Van Der Meer, J. Y., Van Den Bosch, T., De Haan, P., … Poelarends, G. J. (2017). Inter- and intramolecular aldol reactions promiscuously catalyzed by a proline-based tautomerase. Organic and Biomolecular Chemistry, 15(13), 2809–2816. https://doi.org/10.1039/c7ob00302a

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