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Modification of leukotriene A(4) hydrolase/aminopeptidase by sulfhydryl-blocking reagents: differential effects on dual enzyme activities by methyl-methane thiosulfonate.
- Source :
-
Archives of biochemistry and biophysics [Arch Biochem Biophys] 1999 Aug 01; Vol. 368 (1), pp. 131-8. - Publication Year :
- 1999
-
Abstract
- The presence of a cysteine residue at or near the active site of leukotriene A(4) hydrolase (EC 3.3.2.6) was suggested by inactivation of the enzyme with sulfhydryl-blocking reagents and by protection against inactivation afforded by substrates and competitive inhibitors. The aminopeptidase activity was more susceptible to inactivation than the epoxide hydrolase activity. The sulfhydryl-modifying reagent methyl-methane thiosulfonate reacted with one thiol as judged by kinetic data and titration with 5, 5'-dithiobis-2-nitrobenzoate. Inactivation was a time- and dose-dependent process of apparent pseudo-first-order and maximal at 80-85%. The inactivation rate was nonsaturable and strongly influenced by ion strength. The second-order rate constant increased from 0.9 to 4.3 M(-1) s(-1) in the presence of 0.2 M NaCl. Albumin, a stimulator of the aminopeptidase activity, increased apparent inactivation rates by shifting pK(a) for the modification from 8.2 to 7.8. The inactivated enzyme partially regained activity upon treatment with beta-mercaptoethanol. Peptide substrates and competitive inhibitors protected against inactivation. Bestatin, a competitive inhibitor, afforded complete protection with a K(D) = 0.15 microM, similar to K(i) = 0.17 microM for inhibition of peptidase activity. Treated enzyme had an unchanged K(m) but a reduced V(max). The epoxide hydrolase activity was only weakly affected by methyl-methane thiosulfonate with a maximal inactivation of 15-20% after prolonged treatment. Pretreatment of leukotriene A(4) hydrolase with the reagent did not protect against mechanism-based inactivation by its lipid substrate, leukotriene A(4). On the other hand, leukotriene B(4) was a competitive inhibitor of aminopeptidase activity and protected against modification by methyl-methane thiosulfonate. Our results suggest the presence of a cysteine at or close to subsite S'(1) of the active site of leukotriene A(4) hydrolase and that modification of this residue interferes with the function of the aminopeptidase activity, but not the epoxide hydrolase activity. This is the first report to distinguish the two catalytic activities of leukotriene A(4) hydrolase by chemical means.<br /> (Copyright 1999 Academic Press.)
- Subjects :
- Binding, Competitive
Catalytic Domain
Enzyme Reactivators pharmacology
Epoxide Hydrolases metabolism
Humans
Hydrogen-Ion Concentration
In Vitro Techniques
Kinetics
Mercaptoethanol pharmacology
Methyl Methanesulfonate pharmacology
Recombinant Proteins antagonists & inhibitors
Recombinant Proteins chemistry
Recombinant Proteins metabolism
Substrate Specificity
Epoxide Hydrolases antagonists & inhibitors
Epoxide Hydrolases chemistry
Methyl Methanesulfonate analogs & derivatives
Sulfhydryl Reagents pharmacology
Subjects
Details
- Language :
- English
- ISSN :
- 0003-9861
- Volume :
- 368
- Issue :
- 1
- Database :
- MEDLINE
- Journal :
- Archives of biochemistry and biophysics
- Publication Type :
- Academic Journal
- Accession number :
- 10415120
- Full Text :
- https://doi.org/10.1006/abbi.1999.1289