Hille R, Stewart R C
J Biol Chem. 1984 Feb 10;259(3):1570-6.
The interaction of xanthine oxidase with the substrate analog 8-bromoxanthine has been examined in an effort to determine the nature of interaction of purines with the active site of the enzyme. It is found that 8-bromoxanthine is an inhibitor of xanthine oxidase with a Ki of approximately 400 microM; inhibition is uncompetitive with respect to xanthine and noncompetitive with respect to molecular oxygen. While 8-bromoxanthine has only a slight effect on the reaction of reduced enzyme with oxygen, it dramatically slows the rate of enzyme reduction by xanthine, suggesting that inhibition does involve the interaction of 8-bromoxanthine with the molybdenum center of the enzyme. KD determinations for binding of 8-bromoxanthine to oxidized and reduced xanthine oxidase indicate that the inhibitor binds preferentially to the fully reduced form of the molybdenum center (MoIV), with dissociation constants of 1.5 mM and 18 microM for oxidized and reduced enzyme, respectively. This preferential binding to the reduced form of the enzyme is manifested in a significant increase in the oxidation-reduction potentials of the molybdenum center as determined by potentiometric titrations with 8-bromoxanthine complexed with xanthine oxidase. The shape of the Mov EPR signal observed in the course of these titrations as well as a comparison with results of reductive titrations and KD determinations with uric acid and xanthine indicate that 8-bromoxanthine interacts with the molybdenum center of xanthine oxidase in a way that is typical of purine substrates and products, despite the presence of the bulky Br group. The inhibitor thus has a potential as a probe of enzyme-substrate interactions, particularly using the technique of x-ray absorption spectroscopy.
为了确定嘌呤与黄嘌呤氧化酶活性位点的相互作用性质,对黄嘌呤氧化酶与底物类似物8-溴黄嘌呤的相互作用进行了研究。发现8-溴黄嘌呤是黄嘌呤氧化酶的一种抑制剂,其抑制常数(Ki)约为400微摩尔;对黄嘌呤而言,抑制作用为非竞争性,对分子氧而言为反竞争性。虽然8-溴黄嘌呤对还原型酶与氧的反应影响很小,但它显著减慢了黄嘌呤使酶还原的速率,这表明抑制作用确实涉及8-溴黄嘌呤与酶的钼中心的相互作用。8-溴黄嘌呤与氧化型和还原型黄嘌呤氧化酶结合的解离常数测定表明,该抑制剂优先与钼中心的完全还原形式(MoIV)结合,氧化型和还原型酶的解离常数分别为1.5毫摩尔和18微摩尔。通过用与黄嘌呤氧化酶络合的8-溴黄嘌呤进行电位滴定测定,这种对还原型酶的优先结合表现为钼中心氧化还原电位的显著增加。在这些滴定过程中观察到的Mov电子顺磁共振信号的形状,以及与尿酸和黄嘌呤的还原滴定结果和解离常数测定结果的比较表明,尽管存在庞大的Br基团,但8-溴黄嘌呤以嘌呤底物和产物典型的方式与黄嘌呤氧化酶的钼中心相互作用。因此,该抑制剂有潜力作为酶-底物相互作用的探针,特别是使用X射线吸收光谱技术。