首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >Halides inhibition of multicopper oxidases studied by FTIR spectroelectrochemistry using azide as an active infrared probe
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Halides inhibition of multicopper oxidases studied by FTIR spectroelectrochemistry using azide as an active infrared probe

机译:用叠氮化物作为活性红外探针卤化FTIR光谱电化学研究的多杯氧化酶的抑制

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An infrared spectroelectrochemical study of Trametes hirsuta laccase and Magnaporthe oryzae bilirubin oxidase has been performed using azide, an inhibitor of multicopper oxidases, as an active infrared probe incorporated into the T2/T3 copper cluster of the enzymes. The redox potential-controlled measurements indicate that N-3 (-) stretching IR bands of azide ion bound to the T2/T3 cluster are only detected for the oxidized enzymes, confirming that azide only binds to Cu2+. Moreover, the process of binding/dissociation of azide ion is shown to be reversible. The interaction of halide anions, which also inhibit multicopper oxidases, with the active site of the enzymes was studied by measuring the changes in the azide FTIR bands. Enzymes inhibited by azide respond differently upon addition of fluoride or chloride ions to the sample solution inhibited by azide. Fluoride ions compete with azide for binding at one of the T2/T3 Cu ions, whereas competition from chloride ions is much less evident.
机译:使用叠氮化物,多氧化物氧化酶的抑制剂进行Trametes Hirsuta Laccase和Magnaporthe Oryzae胆红素氧化酶的红外光谱电化学研究,作为酶的T2 / T3铜簇中的活性红外探针进行。氧化还原电位控制测量表明仅检测氧化酶的N-3( - )拉伸与T2 / T3簇结合的叠氮离子的带状带状物,证实叠氮化物仅与Cu2 +结合。此外,叠氮离子的结合/解离方法被证明是可逆的。通过测量叠氮化物FTIR带中的变化,研究了卤化卤阴离子的相互作用,其中还抑制多氧化物氧化酶的酶的活性位点。在向叠氮化物抑制的样品溶液中加入氟化物或氯离子时,叠氮化物抑制的酶随不同的反应。氟离子与叠氮化物竞争以在T2 / T3 Cu离子之一结合,而来自氯离子的竞争不太明显。

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