Functional Mimicry of the Active Site of Carboxypeptidase A by a Molecular Imprinting Strategy: Cooperativity of an Amidinium and a Copper Ion in a Transition-State Imprinted Cavity Giving Rise to High Catalytic Activity
- 27 May 2004
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 126 (24) , 7452-7453
- https://doi.org/10.1021/ja048372l
Abstract
A model for the natural enzyme carboxypeptidase A was prepared by molecular imprinting in synthetic polymers. An unusually high activity and efficiency for carbonate hydrolysis could be obtained by imprinting with a stable transition-state analogue template and introducing an amidinium group and a Cu2+ ion-binding site in a defined orientation to each other into the active site. With substrates having a very similar structure to the template, extraordinarily high enhancements of rates of 110 000-fold were obtained of catalyzed to uncatalyzed reaction kcat/kuncat . The efficiency kcat/Km of the molecularly imprinted catalysts compared to that of the nonimprinted control polymers containing the same functional groups was 790-fold higher, a clear indication of a very efficient imprinting procedure.Keywords
This publication has 6 references indexed in Scilit:
- Template zweiter Ordnung: geordnete Schichten aus supramolekularen Quadraten auf einer Chlorid‐bedeckten Cu(100)‐OberflächeAngewandte Chemie, 2004
- From Molecular Diversity to Catalysis: Lessons from the Immune SystemScience, 1995
- Molekulares Prägen (Imprinting) in vernetzten Materialien mit Hilfe von Matrizenmolekülen – auf dem Weg zu künstlichen AntikörpernAngewandte Chemie, 1995
- At the Crossroads of Chemistry and Immunology: Catalytic AntibodiesScience, 1991
- Carboxypeptidase AAccounts of Chemical Research, 1989
- Catalytic antibodiesJournal of the American Chemical Society, 1987