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Quinone Reductase 2 Is a Catechol Quinone Reductase*S⃞

机译:醌还原酶2是邻苯二酚醌 还原酶*S⃞

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摘要

The functions of quinone reductase 2 have eluded researchers for decades even though a genetic polymorphism is associated with various neurological disorders. Employing enzymatic studies using adrenochrome as a substrate, we show that quinone reductase 2 is specific for the reduction of adrenochrome, whereas quinone reductase 1 shows no activity. We also solved the crystal structure of quinone reductase 2 in complexes with dopamine and adrenochrome, two compounds that are structurally related to catecholamine quinones. Detailed structural analyses delineate the mechanism of quinone reductase 2 specificity toward catechol quinones in comparison with quinone reductase 1; a side-chain rotational difference between quinone reductase 1 and quinone reductase 2 of a single residue, phenylalanine 106, determines the specificity of enzymatic activities. These results infer functional differences between two homologous enzymes and indicate that quinone reductase 2 could play important roles in the regulation of catecholamine oxidation processes that may be involved in the etiology of Parkinson disease.
机译:尽管遗传多态性与各种神经系统疾病有关,但醌还原酶2的功能已​​被研究人员忽略了数十年。利用使用肾上腺色素作为底物的酶学研究,我们显示醌还原酶2对减少肾上腺色素具有特异性,而醌还原酶1没有活性。我们还解决了与多巴胺和肾上腺色素(两种与儿茶酚胺醌结构相关的化合物)形成复合物的醌还原酶2的晶体结构。详细的结构分析描述了与醌还原酶1相比,醌还原酶2对儿茶酚醌的特异性机理。单个残基苯丙氨酸106的醌还原酶1和醌还原酶2之间的侧链旋转差异决定了酶活性的特异性。这些结果推断出两种同源酶之间的功能差异,并表明醌还原酶2在儿茶酚胺氧化过程的调节中可能起重要作用,该过程可能与帕金森病的病因有关。

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