Fox K M, Karplus P A
Section of Biochemistry, Molecular and Cell Biology, Cornell University, Ithaca, New York 14853.
Structure. 1994 Nov 15;2(11):1089-105.
Old yellow enzyme (OYE) was the first flavoenzyme purified, but its function is still unknown. Nevertheless, the NADPH oxidase activity, the flavin mononucleotide environment and the ligand-binding properties of OYE have been extensively studied by biochemical and spectroscopic approaches. Full interpretation of these data requires structural information.
The crystal structures of oxidized and reduced OYE at 2 A resolution reveal an alpha/beta-barrel topology clearly related to trimethylamine dehydrogenase. Complexes of OYE with p-hydroxybenzaldehyde, beta-estradiol, and an NADPH analog show all three binding at a common site, stacked on the flavin. The putative NADPH binding mode is novel as it involves primary recognition of the nicotinamide mononucleotide portion.
This work shows that the striking spectral changes seen upon phenol binding are due to close physical association of the flavin and phenolate. It also identifies the structural class of OYE and suggests that if NADPH is its true substrate, then OYE has adopted NADPH dependence during evolution.
老黄色酶(OYE)是首个被纯化的黄素酶,但其功能仍不明确。尽管如此,通过生化和光谱学方法,已对OYE的NADPH氧化酶活性、黄素单核苷酸环境及配体结合特性进行了广泛研究。对这些数据的全面解读需要结构信息。
氧化态和还原态OYE在2 Å分辨率下的晶体结构显示出与三甲胺脱氢酶明显相关的α/β桶状拓扑结构。OYE与对羟基苯甲醛、β-雌二醇及NADPH类似物的复合物显示这三者均结合于一个共同位点,堆积在黄素上。推测的NADPH结合模式很新颖,因为它涉及对烟酰胺单核苷酸部分的初次识别。
这项工作表明,酚类结合时观察到的显著光谱变化是由于黄素和酚盐紧密的物理缔合。它还确定了OYE的结构类别,并表明如果NADPH是其真正底物,那么OYE在进化过程中已形成对NADPH的依赖性。