Perttilä U, Sievers G
Biochim Biophys Acta. 1980 Jul 24;624(1):316-28. doi: 10.1016/0005-2795(80)90250-0.
Artificial leghemoglobins were reconstituted from apoleghemoglobin and meso-, deutero- and diacetyldeuteroheme. Absorption and circular dichroism spectra of their high-spin and low-spin derivatives in the ferrous and ferric forms were recorded in the ultraviolet and visible wavelength regions. The substitution of the 2,4-side-chains of heme induced changes in the optical activity, reflecting alterations in the heme environment. The effect on the conformation of aromatic amino acid residues around heme obviously correlates with the sixth axial ligand and the spin state of iron. Absorption and CD spectra of the aquoferric derivatives of artificial myoglobins were recorded in comparison. Strongly electron-withdrawing acetyl side-chains at the 2,4-positions of diacetyldeuteroheme caused a change in the absorption spectra of aquoferric leghemoglobin and myoglobin towards low spin. On the basis of the spectra it was suggested that the displacement of the ferric iron from the pyrrole plane in leghemoglobin derivatives would be smaller than in the corresponding myoglobin derivatives.
人工血红蛋白由脱辅基血红蛋白与中血红素、氘代血红素和二乙酰基氘代血红素重构而成。在紫外和可见光波长区域记录了它们亚铁和高铁形式的高自旋和低自旋衍生物的吸收光谱和圆二色光谱。血红素2,4-侧链的取代引起了光学活性的变化,反映了血红素环境的改变。对血红素周围芳香族氨基酸残基构象的影响显然与第六个轴向配体和铁的自旋状态相关。作为对比,记录了人工肌红蛋白水合高铁衍生物的吸收光谱和圆二色光谱。二乙酰基氘代血红素2,4-位上具有强吸电子性的乙酰侧链,导致水合高铁豆血红蛋白和肌红蛋白的吸收光谱向低自旋方向变化。基于光谱分析,有人提出豆血红蛋白衍生物中高铁离子从吡咯平面的位移比相应的肌红蛋白衍生物要小。