Structural Basis and Mechanism of the Inhibition of the Type-3 Copper Protein Tyrosinase from Streptomyces antibioticusby Halide Ions
The inhibition of the type-3 copper enzyme tyrosinase by halide ions was studied by kinetic and paramagnetic 1 H NMR methods. All halides are inhibitors in the conversion of l -3,4-dihydroxyphenylalanine ( l -DOPA) with apparent inhibition constants that follow the order I â < F â ⪠Cl â...
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Veröffentlicht in: | The Journal of biological chemistry 2002-08, Vol.277 (34), p.30436-30444 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The inhibition of the type-3 copper enzyme tyrosinase by halide ions was studied by kinetic and paramagnetic 1 H NMR methods. All halides are inhibitors in the conversion of l -3,4-dihydroxyphenylalanine ( l -DOPA) with apparent inhibition constants that follow the order I â < F â ⪠Cl â < Br â at pH 6.80. The results show that the inhibition arises from the interaction of halide with both the oxidized (affinity F â > Cl â > Br â â« I â ) and reduced (affinity I â > Br â > Cl â â« F â ) enzyme. The paramagnetic 1 H NMR of the oxidized enzyme complexed with the halides is consistent with a direct interaction of halide with the type-3
site and shows that the (Cu-His 3 ) 2 coordination occurs in all halide-bound species. It is surmised that halides bridge both of the copper ions in the active
site. Fluoride and chloride are shown to bind only to the low pH form of oxidized tyrosinase, explaining the strong pH dependence
of the inhibition by these ions. We further show that p- toluic acid and the bidentate transition state analogue, Kojic acid, displace chloride from the oxidized active site, whereas
the monodentate substrate analogue, p- nitrophenol, forms a ternary complex with the enzyme and the chloride ion. On the basis of the experimental results, a model
is formulated for the inhibitor action and for the reaction of diphenols with the oxidized enzyme. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1074/jbc.M202461200 |