Codd Rachel, Astashkin Andrei V, Pacheco Andrew, Raitsimring Arnold M, Enemark John H
Department of Chemistry, University of Arizona, Tucson 85721-0041, USA.
J Biol Inorg Chem. 2002 Mar;7(3):338-50. doi: 10.1007/s00775-001-0303-5. Epub 2001 Nov 8.
The titration of chicken liver sulfite oxidase (SO) with the one-electron reductant Ti(III) citrate, at pH 7.0, results in nearly quantitative selective reduction of the Mo(VI) center to Mo(V), while the b-type heme center remains in the fully oxidized Fe(III) state. The selective reduction of the Mo(VI/V) couple has been established from electronic and EPR spectra. The electronic spectrum of the Fe(III) heme center is essentially unchanged during the titration, and the continuous wave (CW)-EPR spectrum shows the appearance of the well-known Mo(V) signal due to the low pH ( lpH) form of SO. Further confirmation of the selective formation of the Mo(V)/Fe(III) form of SO is provided by the approximately 1:1 ratio of the integrated intensities of the Mo(V) and low-spin Fe(III) EPR signals after addition of one equivalent of Ti(III). The selective generation of the Mo(V)/Fe(III) form of SO is unexpected, considering that previous microcoulometry and flash photolysis investigations have indicated that the Mo(VI/V) and Fe(III/II) couples of SO have similar reduction potentials at pH 7. The nearly quantitative preparation of the one-electron reduced Mo(V)/Fe(III) form of SO by reduction with Ti(III) has enabled the interaction between these two paramagnetic metal centers, which are linked by a flexible loop with no secondary structure, to be investigated for the first time by variable-frequency pulsed electron-electron double resonance (ELDOR) spectroscopy. The ELDOR kinetics were obtained from frozen solutions at 4.2 K at several microwave frequencies by pumping on the narrow Mo(V) signal and observing the effect on the Fe(III) primary echo at both higher and lower frequencies within the microwave C-band region. The ELDOR data indicate that freezing the solution of one-electron reduced SO produces localized regions where the concentration of SO approaches that in the crystal structure, which results in the interpair interactions being the dominant dipolar interaction. However, thorough analysis of the ELDOR decay curves and simulations suggests a distribution of intramolecular Mo...Fe distances, consistent with the proposal of multiple conformations in solution for the flexible loop that connects the Mo and heme domains of SO.
在pH 7.0条件下,用单电子还原剂柠檬酸钛(III)滴定鸡肝亚硫酸盐氧化酶(SO),结果使Mo(VI)中心几乎定量地选择性还原为Mo(V),而b型血红素中心则保持完全氧化的Fe(III)状态。Mo(VI/V)电对的选择性还原已通过电子光谱和电子顺磁共振(EPR)光谱得以证实。在滴定过程中,Fe(III)血红素中心的电子光谱基本不变,连续波(CW)-EPR光谱显示出由于SO的低pH(lpH)形式而出现的著名的Mo(V)信号。加入一当量的Ti(III)后,Mo(V)和低自旋Fe(III)的EPR信号积分强度之比约为1:1,这进一步证实了SO的Mo(V)/Fe(III)形式的选择性形成。考虑到先前的微量库仑法和闪光光解研究表明,在pH 7时SO的Mo(VI/V)和Fe(III/II)电对具有相似的还原电位,因此SO的Mo(V)/Fe(III)形式的选择性生成是出乎意料的。通过用Ti(III)还原几乎定量地制备单电子还原的Mo(V)/Fe(III)形式的SO,使得首次能够通过变频脉冲电子-电子双共振(ELDOR)光谱研究这两个通过无二级结构的柔性环相连的顺磁性金属中心之间的相互作用。通过在4.2 K的冷冻溶液中,在几个微波频率下泵浦窄的Mo(V)信号,并观察对微波C波段区域内更高和更低频率下的Fe(III)初级回波的影响,获得了ELDOR动力学数据。ELDOR数据表明,冷冻单电子还原的SO溶液会产生局部区域,其中SO的浓度接近晶体结构中的浓度,这导致分子间相互作用成为主要的偶极相互作用。然而,对ELDOR衰减曲线的深入分析和模拟表明,分子内Mo...Fe距离存在分布,这与连接SO的Mo和血红素结构域的柔性环在溶液中具有多种构象的提议一致。