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3-Keto-5-aminohexanoate Cleavage Enzyme

Authors :
Marco Bellinzoni
François Artiguenave
Pedro M. Alzari
Anne Zaparucha
Carine Vergne
Georges N. Cohen
Raquel C. de Melo-Minardi
Nadia Perchat
Alain Perret
Karine Bastard
Jean Weissenbach
Marcel Salanoubat
Tristan Wagner
Source :
Journal of Biological Chemistry. 286:27399-27405
Publication Year :
2011
Publisher :
Elsevier BV, 2011.

Abstract

The exponential increase in genome sequencing output has led to the accumulation of thousands of predicted genes lacking a proper functional annotation. Among this mass of hypothetical proteins, enzymes catalyzing new reactions or using novel ways to catalyze already known reactions might still wait to be identified. Here, we provide a structural and biochemical characterization of the 3-keto-5-aminohexanoate cleavage enzyme (Kce), an enzymatic activity long known as being involved in the anaerobic fermentation of lysine but whose catalytic mechanism has remained elusive so far. Although the enzyme shows the ubiquitous triose phosphate isomerase (TIM) barrel fold and a Zn2+ cation reminiscent of metal-dependent class II aldolases, our results based on a combination of x-ray snapshots and molecular modeling point to an unprecedented mechanism that proceeds through deprotonation of the 3-keto-5-aminohexanoate substrate, nucleophilic addition onto an incoming acetyl-CoA, intramolecular transfer of the CoA moiety, and final retro-Claisen reaction leading to acetoacetate and 3-aminobutyryl-CoA. This model also accounts for earlier observations showing the origin of carbon atoms in the products, as well as the absence of detection of any covalent acyl-enzyme intermediate. Kce is the first representative of a large family of prokaryotic hypothetical proteins, currently annotated as the “domain of unknown function” DUF849.

Details

ISSN :
00219258
Volume :
286
Database :
OpenAIRE
Journal :
Journal of Biological Chemistry
Accession number :
edsair.doi...........e58fa0cc7986e36a032018c8aa2a76e8
Full Text :
https://doi.org/10.1074/jbc.m111.253260