Soininen R, Kalkkinen N
Acta Chem Scand B. 1977;31(7):604-8. doi: 10.3891/acta.chem.scand.31b-0604.
The effect of pH on the oxidized Pseudomonas cytochrome c peroxidase molecule was studied by measuring the peroxidatic activity, the sedimentation velocity, the circular dichroic spectra in the far UV and Soret regions, and the optical absorption spectra of the enzyme in the pH range 2.5-13.0 at a constant ionic strength (micron = 0.1). The enzyme was stable in a narrow pH region, pH 6.0 - 7.4. In the low pH range the gross tertiary structure was observed to change quite simultaneously with the enzymatic activity and secondary structure. The optical absorption spectra indicated that there were no coordinated internal protein liqands in the 6th coordination positions of the heme prosthetic groups at the lowest pH studied. In the high pH range the secondary structure and the protein environment of hemes were observed to remain stable after the tertiary structure had changed and the activity had decreased. According to the optical absorption spectra the 6th internal protein ligands of hemes were retained at the highest pH studied.
通过在恒定离子强度(μ = 0.1)下测量pH值在2.5 - 13.0范围内的过氧化物酶活性、沉降速度、远紫外和索雷特区域的圆二色光谱以及该酶的光吸收光谱,研究了pH对氧化型假单胞菌细胞色素c过氧化物酶分子的影响。该酶在较窄的pH区域(pH 6.0 - 7.4)内稳定。在低pH范围内,观察到总体三级结构与酶活性和二级结构几乎同时发生变化。光吸收光谱表明,在所研究的最低pH值下,血红素辅基的第6个配位位置不存在配位的内部蛋白质配体。在高pH范围内,观察到在三级结构发生变化且活性降低后,血红素的二级结构和蛋白质环境保持稳定。根据光吸收光谱,在所研究的最高pH值下,血红素的第6个内部蛋白质配体得以保留。