Biocatalytic Pathway Selection in Transient Tripeptide Nanostructures

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Abstract

Structural adaption in living systems is achieved by competing catalytic pathways that drive assembly and disassembly of molecular components under the influence of chemical fuels. We report on a simple mimic of such a system that displays transient, sequence-dependent formation of supramolecular nanostructures based on biocatalytic formation and hydrolysis of self-assembling tripeptides. The systems are catalyzed by α-chymotrypsin and driven by hydrolysis of dipeptide aspartyl-phenylalanine-methyl ester (the sweetener aspartame, DF-OMe). We observed switch-like pathway selection, with the kinetics and consequent lifetime of transient nanostructures controlled by the peptide sequence. In direct competition, kinetic (rather than thermodynamic) component selection is observed..

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Pappas, C. G., Sasselli, I. R., & Ulijn, R. V. (2015). Biocatalytic Pathway Selection in Transient Tripeptide Nanostructures. Angewandte Chemie - International Edition, 54(28), 8119–8123. https://doi.org/10.1002/anie.201500867

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