Durell S R, Gross E L, Draheim J E
Biophysics Program, Ohio State University, Columbus 43210.
Arch Biochem Biophys. 1988 Nov 15;267(1):217-27. doi: 10.1016/0003-9861(88)90026-4.
The absorption and circular dichroic (CD) spectra of parsley plastocyanin (PC) were measured in order to determine the effects of changes in primary amino acid sequence on both the copper center and protein components of the PC molecule. The near-ultraviolet (uv) absorption and CD spectra of parsley PC were found to be qualitatively similar to those of spinach, poplar, and lettuce PC, except for the near-uv CD spectrum of the reduced form at low pH (ca. pH 5.0). The CD spectrum of reduced parsley PC in the 250-265 nm wavelength region changes from positive to negative ellipticity upon reduction of pH, and is characterized by a pKa value of 5.7. This pKa value is the same as that for the protonation of the histidine 87 copper ligand, observed by NMR, and the change in conformation of the copper center. Similar processes are believed to occur in the other PC species at lower pH values. Thus, the pH-dependent perturbations of the near-uv CD spectra of reduced PC are interpreted as due to transitions in the reduced copper center. The increase in the near-uv absorption spectrum of reduced PC can be divided into pH-independent and pH-dependent portions. The pH-independent portion resembles the absorption spectrum of tetrahedral Cu(I) metallothionein, suggesting the presence of Cu(I)-Cys 84 and/or Cu(I)-Met 92 charge transfer transitions in the near-uv absorption spectra of reduced PC. The pH dependence of the absorption spectrum changes and the pH difference absorption spectrum indicate that tyrosine residues may contribute to at least a part of the pH-dependent portion of the absorption increase of reduced PC.
为了确定一级氨基酸序列的变化对欧芹质体蓝素(PC)分子的铜中心和蛋白质组分的影响,对其吸收光谱和圆二色(CD)光谱进行了测量。发现欧芹PC的近紫外(uv)吸收光谱和CD光谱在定性上与菠菜、杨树和生菜PC的光谱相似,除了在低pH值(约pH 5.0)下还原形式的近紫外CD光谱。在250 - 265 nm波长区域,还原型欧芹PC的CD光谱在pH降低时从正椭圆率变为负椭圆率,其特征pKa值为5.7。这个pKa值与通过核磁共振观察到的组氨酸87铜配体的质子化以及铜中心构象变化的pKa值相同。据信在其他PC物种中,在较低pH值下也会发生类似过程。因此,还原型PC近紫外CD光谱的pH依赖性扰动被解释为是由于还原铜中心的转变。还原型PC近紫外吸收光谱的增加可分为与pH无关和与pH有关的部分。与pH无关的部分类似于四面体Cu(I)金属硫蛋白的吸收光谱,表明在还原型PC的近紫外吸收光谱中存在Cu(I)-Cys 84和/或Cu(I)-Met 92电荷转移跃迁。吸收光谱变化的pH依赖性以及pH差吸收光谱表明,酪氨酸残基可能至少对还原型PC吸收增加的部分pH依赖性部分有贡献。