Newcomb Martin, Halgrimson James A, Horner John H, Wasinger Erik C, Chen Lin X, Sligar Stephen G
Department of Chemistry, University of Illinois, 845 West Taylor Street, Chicago, IL 60607, USA.
Proc Natl Acad Sci U S A. 2008 Jun 17;105(24):8179-84. doi: 10.1073/pnas.0708299105. Epub 2008 Jan 3.
The cytochrome P450 enzyme CYP119, its compound II derivative, and its nitrosyl complex were studied by iron K-edge x-ray absorption spectroscopy. The compound II derivative was prepared by reaction of the resting enzyme with peroxynitrite and had a lifetime of approximately 10 s at 23 degrees C. The CYP119 nitrosyl complex was prepared by reaction of the enzyme with nitrogen monoxide gas or with a nitrosyl donor and was stable at 23 degrees C for hours. Samples of CYP119 and its derivatives were studied by x-ray absorption spectroscopy at temperatures below 140 (K) at the Advanced Photon Source of Argonne National Laboratory. The x-ray absorption near-edge structure spectra displayed shifts in edge and pre-edge energies consistent with increasing effective positive charge on iron in the series native CYP119 < CYP119 nitrosyl complex < CYP119 compound II derivative. Extended x-ray absorption fine structure spectra were simulated with good fits for k = 12 A(-1) for native CYP119 and k = 13 A(-1) for both the nitrosyl complex and the compound II derivative. The important structural features for the compound II derivative were an iron-oxygen bond length of 1.82 A and an iron-sulfur bond length of 2.24 A, both of which indicate an iron-oxygen single bond in a ferryl-hydroxide, Fe(IV)OH, moiety.
通过铁 K 边 X 射线吸收光谱法研究了细胞色素 P450 酶 CYP119、其化合物 II 衍生物及其亚硝酰配合物。化合物 II 衍生物是通过静止酶与过氧亚硝酸盐反应制备的,在 23℃下的寿命约为 10 秒。CYP119 亚硝酰配合物是通过酶与一氧化氮气体或亚硝酰供体反应制备的,在 23℃下可稳定存在数小时。在阿贡国家实验室的先进光子源处,在低于 140(K)的温度下通过 X 射线吸收光谱法研究了 CYP119 及其衍生物的样品。X 射线吸收近边结构光谱显示,边能量和边前能量发生了位移,这与天然 CYP119 < CYP119 亚硝酰配合物 < CYP119 化合物 II 衍生物系列中铁上有效正电荷的增加一致。对于天然 CYP119,扩展 X 射线吸收精细结构光谱在 k = 12 Å⁻¹ 时拟合良好,对于亚硝酰配合物和化合物 II 衍生物则在 k = 13 Å⁻¹ 时拟合良好。化合物 II 衍生物的重要结构特征是铁 - 氧键长为 1.82 Å 和铁 - 硫键长为 2.24 Å,这两者都表明在铁(IV)氢氧化物 Fe(IV)OH 部分中存在铁 - 氧单键。