Abstract
The mechanism ofproton exchange in a metal-ligand enzyme active site mimic (compound 1) is described through amide hydrogen-deuterium exchange kinetics. The type and ratio of cationic guest to host in solution affect the rate of isotope exchange, suggesting that the rate of exchange is driven by a host whose cavity is occupied by water. Rate constants for acid-, base-, and watermediated proton exchange vary by orders of magnitude depending on the guest, and differ by up to 200 million-fold relative to an alanine polypeptide. These results suggest that the unusual microenvironment of the cavity of 1 can dramatically alter the reactivity of associated water by magnitudes comparable to that of enzymes.
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Hart-Cooper, W. M., Sgarlata, C., Perrin, C. L., Toste, F. D., Bergman, R. G., & Raymond, K. N. (2015). Protein-like proton exchange in a synthetic host cavity. Proceedings of the National Academy of Sciences of the United States of America, 112(50), 15303–15307. https://doi.org/10.1073/pnas.1515639112
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