Reactions of 4-Oxalocrotonate Tautomerase and YwhB with 3-Halopropiolates: Analysis and Implications
- 30 December 2003
- journal article
- Published by American Chemical Society (ACS) in Biochemistry
- Vol. 43 (3) , 748-758
- https://doi.org/10.1021/bi035495u
Abstract
4-Oxalocrotonate tautomerase (4-OT) and YwhB, a 4-OT homologue found in Bacillus subtilis, exhibit a low level hydratase activity that converts trans-3-haloacrylates to acetaldehyde, presumably through a malonate semialdehyde intermediate. The mechanism for the initial transformation of the 3-haloacrylate to malonate semialdehyde involves Pro-1 as well as an arginine, two residues that play critical roles in the 4-OT-catalyzed isomerization reaction and the YwhB-catalyzed tautomerization reaction. These residues are also critical for the trans-3-chloroacrylic acid dehalogenase (CaaD)-catalyzed conversion of trans-3-haloacrylates to malonate semialdehyde. Recently, 3-bromo- and 3-chloropropiolate, the acetylene analogues of 3-haloacrylates, were characterized as potent irreversible inhibitors of CaaD due to the covalent modification of the catalytic proline. In view of these observations, an investigation of the behavior of 4-OT and YwhB with the 3-halopropiolates was undertaken. The results show that these compounds are potent irreversible inhibitors of 4-OT and YwhB with Pro-1 being the sole site of covalent modification by 3-bromopropiolate. The inactivation process could involve the enzyme-catalyzed addition of water to the 3-halopropiolate yielding an acyl halide, which would inactivate the enzyme or be initiated by the nucleophilic attack of Pro-1 at the C-3 position of the 3-halopropiolate in a Michael type reaction. The presence of the halogen along with Arg-11 could facilitate both reactions with the latter causing the polarization of the α,β-unsaturated acids. The 3-halopropiolates are the first identified inhibitors of YwhB and confirm the importance of Pro-1 in its mechanism. In addition, the results set the stage for the use of these compounds as mechanistic probes of the primary as well as low level activities of 4-OT and YwhB.Keywords
This publication has 9 references indexed in Scilit:
- The 4-oxalocrotonate tautomerase family of enzymes: how nature makes new enzymes using a β–α–β structural motifArchives of Biochemistry and Biophysics, 2002
- trans -3-Chloroacrylic Acid Dehalogenase from Pseudomonas pavonaceae 170 Shares Structural and Mechanistic Similarities with 4-Oxalocrotonate TautomeraseJournal of Bacteriology, 2001
- Microbial DehalogenasesPublished by Elsevier ,1999
- The Contribution of the Substrate's Carboxylate Group to the Mechanism of 4-Oxalocrotonate TautomeraseBioorganic Chemistry, 1998
- Stereochemical and Isotopic Labeling Studies of 2-Oxo-hept-4-ene-1,7-dioate Hydratase: Evidence for an Enzyme-Catalyzed Ketonization Step in the Hydration ReactionJournal of the American Chemical Society, 1998
- Understanding Enzyme SuperfamiliesJournal of Biological Chemistry, 1997
- Total Chemical Synthesis and Catalytic Properties of the Enzyme Enantiomers L- and D-4-Oxalocrotonate TautomeraseJournal of the American Chemical Society, 1995
- Chemical and enzymic ketonization of 2-hydroxymuconate, a conjugated enolJournal of the American Chemical Society, 1991
- ENZYME RECRUITMENT IN EVOLUTION OF NEW FUNCTIONAnnual Review of Microbiology, 1976