Literature DB >> 22129074

Reaction of cis-3-chloroacrylic acid dehalogenase with an allene substrate, 2,3-butadienoate: hydration via an enamine.

Gottfried K Schroeder1, William H Johnson, Jamison P Huddleston, Hector Serrano, Kenneth A Johnson, Christian P Whitman.   

Abstract

cis-3-Chloroacrylic acid dehalogenase (cis-CaaD) catalyzes the hydrolytic dehalogenation of cis-3-haloacrylates to yield malonate semialdehyde. The enzyme processes other substrates including an allene (2,3-butadienoate) to produce acetoacetate. In the course of a stereochemical analysis of the cis-CaaD-catalyzed reaction using this allene, the enzyme was unexpectedly inactivated in the presence of NaBH(4) by the reduction of a covalent enzyme-substrate bond. Covalent modification was surprising because the accumulated evidence for cis-CaaD dehalogenation favored a mechanism involving direct substrate hydration mediated by Pro-1. However, the results of subsequent mechanistic, pre-steady state and full progress kinetic experiments are consistent with a mechanism in which an enamine forms between Pro-1 and the allene. Hydrolysis of the enamine or an imine tautomer produces acetoacetate. Reduction of the imine species is likely responsible for the observed enzyme inactivation. This is the first reported observation of a tautomerase superfamily member functioning by covalent catalysis. The results may suggest that some fraction of the cis-CaaD-catalyzed dehalogenation of cis-3-haloacrylates also proceeds by covalent catalysis.
© 2011 American Chemical Society

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Year:  2011        PMID: 22129074      PMCID: PMC3257395          DOI: 10.1021/ja206873f

Source DB:  PubMed          Journal:  J Am Chem Soc        ISSN: 0002-7863            Impact factor:   15.419


  34 in total

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Authors:  René M de Jong; Paola Bazzacco; Gerrit J Poelarends; William H Johnson; Yoon Jae Kim; Elizabeth A Burks; Hector Serrano; Andy-Mark W H Thunnissen; Christian P Whitman; Bauke W Dijkstra
Journal:  J Biol Chem       Date:  2006-11-22       Impact factor: 5.157

6.  Staphylococcal protease: a proteolytic enzyme specific for glutamoyl bonds.

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7.  Cloning, expression, and characterization of a cis-3-chloroacrylic acid dehalogenase: insights into the mechanistic, structural, and evolutionary relationship between isomer-specific 3-chloroacrylic acid dehalogenases.

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Journal:  Biochemistry       Date:  2004-01-27       Impact factor: 3.162

8.  The X-ray structure of trans-3-chloroacrylic acid dehalogenase reveals a novel hydration mechanism in the tautomerase superfamily.

Authors:  René M de Jong; Wim Brugman; Gerrit J Poelarends; Christian P Whitman; Bauke W Dijkstra
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9.  Penicillanic acid sulfone: an unexpected isotope effect in the interaction of 6 alpha- and 6 beta-monodeuterio and of 6,6-dideuterio derivatives with RTEM beta-lactamase from Escherichia coli.

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  11 in total

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2.  Reactions of Cg10062, a cis-3-Chloroacrylic Acid Dehalogenase Homologue, with Acetylene and Allene Substrates: Evidence for a Hydration-Dependent Decarboxylation.

Authors:  Jamison P Huddleston; William H Johnson; Gottfried K Schroeder; Christian P Whitman
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3.  Resolution of the uncertainty in the kinetic mechanism for the trans-3-Chloroacrylic acid dehalogenase-catalyzed reaction.

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Journal:  Arch Biochem Biophys       Date:  2017-05-10       Impact factor: 4.013

Review 4.  Enzymatic Halogenation and Dehalogenation Reactions: Pervasive and Mechanistically Diverse.

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Review 5.  A century of enzyme kinetic analysis, 1913 to 2013.

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6.  Kinetic and structural characterization of a cis-3-Chloroacrylic acid dehalogenase homologue in Pseudomonas sp. UW4: A potential step between subgroups in the tautomerase superfamily.

Authors:  Jake A LeVieux; Bert-Jan Baas; Tamer S Kaoud; Rebecca Davidson; Patricia C Babbitt; Yan Jessie Zhang; Christian P Whitman
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7.  Stereochemical Consequences of Vinylpyruvate Hydratase-Catalyzed Reactions.

Authors:  William H Johnson; Tyler M M Stack; Stephanie M Taylor; Elizabeth A Burks; Christian P Whitman
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8.  Inhibition of Inosine-5'-monophosphate Dehydrogenase from Bacillus anthracis: Mechanism Revealed by Pre-Steady-State Kinetics.

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9.  A mutational analysis of the active site loop residues in cis-3-Chloroacrylic acid dehalogenase.

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10.  A pre-steady state kinetic analysis of the αY60W mutant of trans-3-chloroacrylic acid dehalogenase: implications for the mechanism of the wild-type enzyme.

Authors:  Jamison P Huddleston; Gottfried K Schroeder; Kenneth A Johnson; Christian P Whitman
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