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大鼠肝脏亚硫酸盐氧化酶钨衍生物的电子顺磁共振

Electron paramagnetic resonance of the tungsten derivative of rat liver sulfite oxidase.

作者信息

Johnson J L, Rajagopalan K V

出版信息

J Biol Chem. 1976 Sep 25;251(18):5505-11.

PMID:9389
Abstract

Sulfite oxidase purified from livers of tungsten-treated rats has been used for EPR studies of tungsten substituted at the molybdenum site of the enzyme in a fraction of the molecules. The EPR signal of W(V) in sulfite oxidase is quite similar to that of Mo(V) in its line shape and in its sensitivity to the presence of anions such as phosphate and fluoride. Hyperfine interaction with a dissociable proton is also observed in both signals. The pH-dependent alteration in line shape exhibited by the Mo(V) EPR signal of the rat liver enzyme. Incomplete reduction of the tungsten center at pH 9 is indicated by attenuated signal intensity at this pH. The W(V) signal has g values lower than those of the Mo(V) signal, has a much broader resonance envelope, and is much less readily saturated by increasing microwave power. Kinetic studies on the reduction of the heme and tungsten centers of sulfite oxidase have shown that reduction of de-molybdo forms of sulfite oxidase by sulfite is catalyzed by the residual traces of native molybdenum-containing molecules. Reduction is accomplished by electron transfer involving intermolecular heme-heme interaction. The W(V) signal is generated only after all the heme centers are reduced. The rate and extent of heme reduction at pH 9 are the same as at pH 7. Studies on the reoxidation of W(V) and reduced heme by O2 and by cytochrome c suggest that the cytochrome b5 of sulfite oxidase is the site of electron transfer to cytochrome c, whereas oxidase activity is the property of the molybdenum center. It appears that the tungsten center in sulfite oxidase is incapable of oxidizing sulfite.

摘要

从经钨处理的大鼠肝脏中纯化得到的亚硫酸盐氧化酶,已被用于对该酶分子中一部分钼位点被钨取代后的电子顺磁共振(EPR)研究。亚硫酸盐氧化酶中W(V)的EPR信号在其线形以及对磷酸根和氟离子等阴离子存在的敏感性方面,与Mo(V)的EPR信号非常相似。在这两种信号中还观察到与可解离质子的超精细相互作用。大鼠肝脏酶的Mo(V) EPR信号呈现出pH依赖性的线形变化。在pH 9时钨中心不完全还原,表现为该pH下信号强度减弱。W(V)信号的g值低于Mo(V)信号,具有更宽的共振包络,并且通过增加微波功率更不容易饱和。对亚硫酸盐氧化酶血红素和钨中心还原的动力学研究表明,亚硫酸盐对脱钼形式的亚硫酸盐氧化酶的还原是由残留的痕量天然含钼分子催化的。还原是通过涉及分子间血红素 - 血红素相互作用的电子转移来完成的。只有在所有血红素中心都被还原后才会产生W(V)信号。pH 9时血红素还原的速率和程度与pH 7时相同。对W(V)和还原型血红素被O2和细胞色素c再氧化的研究表明,亚硫酸盐氧化酶的细胞色素b5是向细胞色素c进行电子转移的位点,而氧化酶活性是钼中心的特性。似乎亚硫酸盐氧化酶中的钨中心无法氧化亚硫酸盐。

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