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Probing the Catalytic Mechanism of Copper Amine Oxidase from Arthrobacter globiformis with Halide Ions

机译:用卤化物离子探索球形节杆菌铜胺氧化酶的催化机理

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摘要

The catalytic reaction of copper amine oxidase proceeds through a ping-pong mechanism comprising two half-reactions. In the initial half-reaction, the substrate amine reduces the Tyr-derived cofactor, topa quinone (TPQ), to an aminoresorcinol form (TPQamr) that is in equilibrium with a semiquinone radical (TPQsq) via an intramolecular electron transfer to the active-site copper. We have analyzed this reductive half-reaction in crystals of the copper amine oxidase from Arthrobacter globiformis. Anerobic soaking of the crystals with an amine substrate shifted the equilibrium toward TPQsq in an “on-copper” conformation, in which the 4-OH group ligated axially to the copper center, which was probably reduced to Cu(I). When the crystals were soaked with substrate in the presence of halide ions, which act as uncompetitive and noncompetitive inhibitors with respect to the amine substrate and dioxygen, respectively, the equilibrium in the crystals shifted toward the “off-copper” conformation of TPQamr. The halide ion was bound to the axial position of the copper center, thereby preventing TPQamr from adopting the on-copper conformation. Furthermore, transient kinetic analyses in the presence of viscogen (glycerol) revealed that only the rate constant in the step of TPQamr/TPQsq interconversion is markedly affected by the viscogen, which probably perturbs the conformational change. These findings unequivocally demonstrate that TPQ undergoes large conformational changes during the reductive half-reaction.
机译:铜胺氧化酶的催化反应通过包含两个半反应的乒乓机制进行。在最初的半反应中,底物胺通过分子内电子转移至活性基团,将Tyr衍生的辅因子topa醌(TPQ)还原为与半醌自由基(TPQsq)平衡的氨基间苯二酚形式(TPQamr)。现场铜。我们已经分析了球形节杆菌的铜胺氧化酶晶体中的这种还原性半反应。用胺底物对晶体进行好氧浸泡后,其平衡呈“铜上”构型向TPQsq移动,其中4-OH基团轴向连接至铜中心,可能被还原为Cu(I)。当在卤素离子的存在下用基质浸泡晶体时,卤离子分别对胺基质和双氧起非竞争性和非竞争性抑制剂的作用,晶体中的平衡向TPQamr的“铜外”构象转移。卤离子结合到铜中心的轴向位置,从而防止TPQamr采用铜上构象。此外,在存在粘滞剂(甘油)的情况下进行瞬态动力学分析表明,粘滞剂仅显着影响TPQamr / TPQsq相互转化步骤中的速率常数,这可能会干扰构象变化。这些发现明确表明,TPQ在还原性半反应过程中经历了较大的构象变化。

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