Farrar J A, Formicka G, Zeppezauer M, Thomson A J
Centre for Metalloprotein Spectroscopy and Biology, School of Chemical Sciences, University of East Anglia, Norwich, UK.
Biochem J. 1996 Jul 15;317 ( Pt 2)(Pt 2):447-56. doi: 10.1042/bj3170447.
Replacement of the catalytic Zn(II) in horse liver alcohol dehydrogenase (HLADH) with copper produces a mononuclear Cu(II) chromophore with a ligand set consisting of two cysteine sulphurs, one histidine nitrogen plus one further atom. The fourth ligand to the metal ion and the conformation of the protein may be altered by addition of exogenous ligands and/or the cofactor NADH. Absorbance, CD, low-temperature magnetic CD (MCD) and EPR spectra are presented of copper-substituted HLADH samples in both 'open' and 'closed' conformations and in the presence and absence of the exogenous ligands pyrazole and DMSO. The EPR spectra indicate a strong, predominantly axial field about the copper(II) ion with high copper-thiol (cysteine) covalence. The optical and MCD spectra are interpreted in terms of four d-d transitions to low energy, also reflecting the axial ligand field, and four charge-transfer transitions to copper(II) between 30000 and 16000 cm-1 arising from the two cysteine sulphur atoms which give two pairs of oppositely signed MCD C-terms. These transitions are polarized mainly in the axial plane defined by Cys-46, Cys-174 and His-67. The binary complex formed with pyrazole displays quite different EPR and optical spectra which can be understood in terms of a rotation of the copper hole-orbital away from the axial plane thus decreasing sharply the copper-thiol covalence. The magneto-optical spectra in the presence and absence of DMSO are indistinguishable.
用铜取代马肝醇脱氢酶(HLADH)中的催化锌(II)会产生一种单核铜(II)发色团,其配体组由两个半胱氨酸硫原子、一个组氨酸氮原子以及另一个原子组成。金属离子的第四个配体以及蛋白质的构象可能会因添加外源配体和/或辅因子NADH而改变。本文给出了处于“开放”和“封闭”构象、存在和不存在外源配体吡唑和二甲基亚砜(DMSO)的铜取代HLADH样品的吸光度、圆二色性(CD)、低温磁圆二色性(MCD)和电子顺磁共振(EPR)光谱。EPR光谱表明,围绕铜(II)离子存在一个强的、主要为轴向的场,且铜-硫醇(半胱氨酸)共价性较高。根据四个低能的d-d跃迁对光学和MCD光谱进行了解释,这些跃迁也反映了轴向配体场,以及在30000至16000 cm-1之间发生的从两个半胱氨酸硫原子到铜(II)的四个电荷转移跃迁,这两个半胱氨酸硫原子产生了两对符号相反的MCD C项。这些跃迁主要在由Cys-46、Cys-174和His-67定义的轴向平面内极化。与吡唑形成的二元配合物显示出截然不同的EPR和光谱,这可以通过铜空轨道从轴向平面旋转来理解,从而使铜-硫醇共价性急剧降低。存在和不存在DMSO时的磁光光谱无法区分。