Efficient,crosswise catalytic promiscuity among enzymes that catalyze phosphoryl transfer |
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Authors: | Mark F. Mohamed Florian Hollfelder |
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Affiliation: | Department of Biochemistry, University of Cambridge, Cambridge CB2 1GA, EU, United Kingdom |
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Abstract: | The observation that one enzyme can accelerate several chemically distinct reactions was at one time surprising because the enormous efficiency of catalysis was often seen as inextricably linked to specialization for one reaction. Originally underreported, and considered a quirk rather than a fundamental property, enzyme promiscuity is now understood to be important as a springboard for adaptive evolution. Owing to the large number of promiscuous enzymes that have been identified over the last decade, and the increased appreciation for promiscuity's evolutionary importance, the focus of research has shifted to developing a better understanding of the mechanistic basis for promiscuity and the origins of tolerant or restrictive specificity. We review the evidence for widespread crosswise promiscuity amongst enzymes that catalyze phosphoryl transfer, including several members of the alkaline phosphatase superfamily, where large rate accelerations between 106 and 1017 are observed for both native and multiple promiscuous reactions. This article is part of a Special Issue entitled: Chemistry and mechanism of phosphatases, diesterases and triesterases. |
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Keywords: | Phosphatase Catalytic promiscuity Enzyme mechanism Sulfate transfer Sulfatase Linear-free energy relationship |
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