Direct Observation of an Enamine Intermediate in Amine Catalysis

An enamine intermediate is believed to be the central feature of biological catalysts, such as aldolases and small molecule amine organocatalysts. Despite decades of investigation of naturally occurring aldolase enzymes and recent studies on designed aldolase antibodies and organocatalysts, direct s...

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Veröffentlicht in:Journal of the American Chemical Society 2009-12, Vol.131 (51), p.18206-18207
Hauptverfasser: Zhu, Xueyong, Tanaka, Fujie, Lerner, Richard A, Barbas III, Carlos F, Wilson, Ian A
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container_end_page 18207
container_issue 51
container_start_page 18206
container_title Journal of the American Chemical Society
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creator Zhu, Xueyong
Tanaka, Fujie
Lerner, Richard A
Barbas III, Carlos F
Wilson, Ian A
description An enamine intermediate is believed to be the central feature of biological catalysts, such as aldolases and small molecule amine organocatalysts. Despite decades of investigation of naturally occurring aldolase enzymes and recent studies on designed aldolase antibodies and organocatalysts, direct structural observation of an enamine intermediate has proven to be rare. Herein, we report the observation of a stable enamine intermediate in the crystal structure of an aldolase antibody 33F12 in complex with a 1,3-diketone derivative. This enamine complex structure provides strong evidence that fewer residues are essential for amine catalysis within the hydrophobic environments of this catalytic antibody than speculated for natural aldolase enzymes and should serve to guide future studies aimed at the rational design of these types of catalysts, as well as organocatalysts. Indeed, enamine catalysis in proteins might be more simplistic than previously imagined.
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subjects Aldehyde-Lyases - chemistry
Amines - chemistry
Antibodies - chemistry
Catalysis
Crystallization
Ketones - chemistry
title Direct Observation of an Enamine Intermediate in Amine Catalysis
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