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Structural Snapshots from the Oxidative Half-reaction of a Copper Amine Oxidase

机译:铜胺氧化酶的氧化半反应的结构快照

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摘要

The mechanism of molecular oxygen activation is the subject of controversy in the copper amine oxidase family. At their active sites, copper amine oxidases contain both a mononuclear copper ion and a protein-derived quinone cofactor. Proposals have been made for the activation of molecular oxygen via both a Cu(II)-aminoquinol catalytic intermediate and a Cu(I)-semiquinone intermediate. Using protein crystallographic freeze-trapping methods under low oxygen conditions combined with single-crystal microspectrophotometry, we have determined structures corresponding to the iminoquinone and semiquinone forms of the enzyme. Methylamine reduction at acidic or neutral pH has revealed protonated and deprotonated forms of the iminoquinone that are accompanied by a bound oxygen species that is likely hydrogen peroxide. However, methylamine reduction at pH 8.5 has revealed a copper-ligated cofactor proposed to be the semiquinone form. A copper-ligated orientation, be it the sole identity of the semiquinone or not, blocks the oxygen-binding site, suggesting that accessibility of Cu(I) may be the basis of partitioning O2 activation between the aminoquinol and Cu(I).
机译:分子氧激活的机制是铜胺氧化酶家族中一个有争议的主题。铜胺氧化酶在其活性位点同时包含单核铜离子和蛋白质衍生的醌辅因子。已经提出了通过Cu(II)-氨基喹诺催化中间体和Cu(I)-半醌中间体来活化分子氧的提案。在低氧条件下使用蛋白质晶体冷冻捕集方法结合单晶显微分光光度法,我们确定了相应于该酶亚氨基醌和半醌形式的结构。在酸性或中性pH下的甲胺还原显示亚氨基醌的质子化和去质子化形式,并伴有结合的氧,可能是过氧化氢。然而,在pH 8.5时甲胺还原显示出铜连接的辅因子被提议为半醌形式。铜连接的方向(无论是否为半醌唯一身份)会阻断氧结合位点,这表明Cu(I)的可及性可能是在氨基喹诺醇和Cu(I)之间分配O2活化的基础。

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