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大肠杆菌铁细胞色素b562溶液分子和电子结构的1H NMR研究:完整的组氨酸/甲硫氨酸配体存在S = 1/2与S = 5/2自旋平衡的证据。

1H NMR study of the solution molecular and electronic structure of Escherichia coli ferricytochrome b562: evidence for S = 1/2 in equilibrium S = 5/2 spin equilibrium for intact His/Met ligation.

作者信息

Wu J Z, La Mar G N, Yu L P, Lee K B, Walker F A, Chiu M L, Sligar S G

机构信息

Department of Chemistry, University of California, Davis 95616.

出版信息

Biochemistry. 1991 Feb 26;30(8):2156-65. doi: 10.1021/bi00222a020.

Abstract

The solution 500-MHz 1H NMR spectral parameters for ferricytochrome b562, a soluble 12-kDa electron carrier from Escherichia coli with axial His/Met coordination, are shown to be strongly influenced by protein concentration and ionic strength at low pH and 25 degrees C in a manner consistent with significant aggregation at low ionic strength. At high ionic strength a well-resolved 1H NMR spectrum reveals over 40 hyperfine-shifted resonances which arise from two isomeric species in the ratio 2:1. 2D COSY and NOESY maps at 25 degrees C for the hyperfine-shifted resonances allow the assignment of a number of axial His resonances and all heme peripheral substituent peaks. The resulting asymmetric heme contact shift patterns, together with the halving of the number of lines when reconstituting with 2-fold symmetric hemin, demonstrate the molecular basis of the solution heterogeneity to be heme orientational disorder. The strongly upfield-shifted axial Met-7 resonances, characteristic of low-spin ferricytochromes c with His/Met ligation, appear upfield only at very low temperatures. At elevated temperatures, all resonances, in particular those of the axial Met, move strongly downfield. Detailed analysis of the deviation from Curie behavior for different functional groups demonstrates the presence of a low spin in equilibrium high spin equilibrium with an intact His-Fe-Met coordination. The weaker axial field in ferricytochrome b562, relative to the purely low-spin ferricytochromes c, is attributed to a perturbed iron-Met bond. The contact shifts for a coordinated Met in the high-spin state are estimated. A link between equatorial hemin and axial ligand interactions is indicated by a differential population of the high-spin form for the two hemin orientations.

摘要

细胞色素b562是一种来自大肠杆菌的可溶性12 kDa电子载体,通过轴向His/Met配位,其500-MHz 1H NMR光谱参数在低pH值和25℃下受到蛋白质浓度和离子强度的强烈影响,这种影响方式与低离子强度下的显著聚集相一致。在高离子强度下,一个分辨率良好的1H NMR光谱显示出40多个超精细位移共振峰,这些共振峰来自比例为2:1的两种异构体。25℃下超精细位移共振峰的二维COSY和NOESY图谱允许对一些轴向His共振峰和所有血红素周边取代基峰进行归属。由此产生的不对称血红素接触位移模式,以及用2倍对称血红素重建时谱线数量减半的情况,证明了溶液异质性的分子基础是血红素取向无序。轴向Met-7共振峰强烈向高场位移,这是低自旋细胞色素c与His/Met配位的特征,仅在非常低的温度下才出现在高场。在升高的温度下,所有共振峰,特别是轴向Met的共振峰,都强烈向低场移动。对不同官能团偏离居里行为的详细分析表明,存在一个与完整的His-Fe-Met配位处于平衡的低自旋-高自旋平衡。相对于纯低自旋细胞色素c,细胞色素b562中较弱的轴向场归因于铁-Met键的扰动。估计了高自旋态下配位Met的接触位移。两种血红素取向的高自旋形式的不同布居表明了赤道血红素和轴向配体相互作用之间的联系。

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