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Arch Biochem Biophys ; 545: 179-85, 2014 Mar 01.
Article in English | MEDLINE | ID: mdl-24480307

ABSTRACT

5-Lipoxygenase (5-LOX) catalyzes two steps in conversion of arachidonic acid to proinflammatory leukotrienes. Lipoxygenases, including human 5-LOX, consist of an N-terminal C2-like ß-sandwich and a catalytic domain. We expressed the 5-LOX domains separately, these were found to interact in the yeast two-hybrid system. The 5-LOX structure suggested association between Arg(101) in the ß-sandwich and Asp(166) in the catalytic domain, due to electrostatic interaction as well as hydrogen bonds. Indeed, mutagenic replacements of these residues led to loss of two-hybrid interaction. Interestingly, when Arg(101) was mutated to Asp in intact 5-LOX, enzyme activity was increased. Thus, higher initial velocity of the reaction (vinit) and increased final amount of products were monitored for 5-LOX-R101D, at several different assay conditions. In the 5-LOX crystal structure, helix α2 and adjacent loops (including Asp(166)) of the 5-LOX catalytic domain has been proposed to form a flexible lid controlling access to the active site, and lid movement would be determined by bonding of lid residues to the C2-like ß-sandwich. The more efficient catalysis following disruption of the R101-D166 ionic association supports the concept of such a flexible lid in human 5-LOX.


Subject(s)
Arachidonate 5-Lipoxygenase/chemistry , Arachidonate 5-Lipoxygenase/metabolism , Amino Acid Sequence , Arachidonate 5-Lipoxygenase/genetics , Catalytic Domain , Enzyme Activation , Humans , Leukotrienes/metabolism , Models, Molecular , Molecular Sequence Data , Mutagenesis, Site-Directed , Point Mutation , Protein Structure, Tertiary
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