Lowe D J, Bray R C
Biochem J. 1978 Mar 1;169(3):471-9. doi: 10.1042/bj1690471.
Magnetic interaction between molybdenum and one of the iron-sulphur centres in milk xanthine oxidase [Lowe, Lynden-Bell & Bray (1972) Biochem. J. 130, 239-249] was studied further, with particular reference to the newly discovered Mo(V) e.p.r.(electron-paramagnetic-resonance) signal, Resting II [Lowe, Barber, Pawlik & Bray (1976) Biochem. J. 155, 81-85]. E.p.r. measurements at 35GHz near to 4.2K showed that the interaction has the same sign at all molybdenum orientations and is ferromagnetic. The predicted splitting of the e.p.r. signal from the reduced iron-sulphur centre, Fe/S I, was observed, Providing positive identification of this as the other interacting species. Chemical modification of the molybdenum environment in xanthine oxidase can change the size of the interaction severalfold, but interaction always remains approximately isotropic. The interaction in turkey liver xanthine dehydrogenase is indistinguishable from that in the oxidase. However, a bacterial xanthine dehydrogenase with different iron-sulphur centres shows rather larger interaction. Guanidinium chloride disturbs the iron-sulphur centres of the oxidase, and when this occurs there is a parallel and relatively small change in the interaction. Removal of flavin from the molecule, or raising the pH to 12.0, changes the interaction slightly without affecting the chromophores themselves. It is concluded that the Fe/S I centre and the Mo are at least 1.0nm and probably nearer 2.5nm apart, and that the conformation of the protein between them is relatively stable up to pH 12.
对牛奶黄嘌呤氧化酶中钼与其中一个铁硫中心之间的磁相互作用进行了进一步研究[洛维、林登 - 贝尔和布雷(1972年)《生物化学杂志》130卷,239 - 249页],特别参考了新发现的钼(V)电子顺磁共振(e.p.r.)信号,即静止II信号[洛维、巴伯、帕夫利克和布雷(1976年)《生物化学杂志》155卷,81 - 85页]。在接近4.2K的35GHz频率下进行的电子顺磁共振测量表明,在所有钼取向时该相互作用具有相同的符号,并且是铁磁性的。观察到了来自还原态铁硫中心Fe/S I的电子顺磁共振信号的预测分裂,从而确定其为另一个相互作用的物种。对黄嘌呤氧化酶中钼环境进行化学修饰可使相互作用的大小改变数倍,但相互作用始终大致呈各向同性。火鸡肝脏黄嘌呤脱氢酶中的相互作用与氧化酶中的无法区分。然而,具有不同铁硫中心的细菌黄嘌呤脱氢酶显示出相当大的相互作用。氯化胍会干扰氧化酶的铁硫中心,此时相互作用会有平行且相对较小的变化。从分子中去除黄素或将pH值提高到12.0会使相互作用略有变化,但不会影响发色团本身。得出的结论是,Fe/S I中心与钼之间的距离至少为1.0nm,可能更接近2.5nm,并且在pH值达到12之前它们之间蛋白质的构象相对稳定。