Issue 4, 2003

Theozyme for antibody aldolases. Characterization of the transition-state analogue

Abstract

A theozyme for antibody aldolases has been studied at the MP2/6-31G** computational level. Formation of two cooperative hydrogen-bonds between the acidic hydrogen atoms of the enamine and of a methanol molecule with the oxygen atom of the aldol acceptor markedly favors the C–C bond-formation associated with the aldol reaction. A comparative analysis of the geometry, the charge distribution and the shape of the molecular electrostatic potential of the transition structure (TS) with the covalent adduct, resulting from the reaction of methylamine and the β-diketone used as a hapten allows us to characterize the transition-state analogue (TSA) generated at immunization. This finding allows us to propose a hapten based on a chiral β-ketosulfoxide that could give the formation of a TSA that addresses the tetrahedral geometry of the TS.

Graphical abstract: Theozyme for antibody aldolases. Characterization of the transition-state analogue

Supplementary files

Additions and corrections

Article information

Article type
Paper
Submitted
28 Oct 2002
Accepted
26 Nov 2002
First published
27 Jan 2003

Org. Biomol. Chem., 2003,1, 637-643

Theozyme for antibody aldolases. Characterization of the transition-state analogue

M. Arnó and L. R. Domingo, Org. Biomol. Chem., 2003, 1, 637 DOI: 10.1039/B209636F

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