The changes of the synchronous fluorescence spectra and the electrochemical behaviour of cytochrome c with the urea concentration are studied. It has been found that with the increase of urea concentration, there occu...The changes of the synchronous fluorescence spectra and the electrochemical behaviour of cytochrome c with the urea concentration are studied. It has been found that with the increase of urea concentration, there occur sequentially the deaggregation of cytochrome c molecules, the increase of exposure extent of the heme group to the solvent, the disruption of Fe-S bond of the heme group and the change in the electrochemical behaviour of cytochrome c. It is suggested that the reason why the electrochemical reaction of cytochrome c is irreversible is that cytochrome c molecules exist in the concentrated solution as oligomers which are electrochemically inactive.展开更多
利用荧光光谱和圆二色谱研究了细胞色素 c氧化酶 Cu A 结构域蛋白的稳定性。结果表明 ,随着溶液p H值的升高 ,Cu A 结构域蛋白的稳定性降低。随着温度的升高 ,Cu A结构域蛋白的二级结构遭到破坏。脱金属形式蛋白的热稳定性减小 ,表明双...利用荧光光谱和圆二色谱研究了细胞色素 c氧化酶 Cu A 结构域蛋白的稳定性。结果表明 ,随着溶液p H值的升高 ,Cu A 结构域蛋白的稳定性降低。随着温度的升高 ,Cu A结构域蛋白的二级结构遭到破坏。脱金属形式蛋白的热稳定性减小 ,表明双核金属铜中心的存在对 Cu A展开更多
基金Project supported by the National Natural Science Foundation of Chinathe National Institute of Health(GM 35108)
文摘The changes of the synchronous fluorescence spectra and the electrochemical behaviour of cytochrome c with the urea concentration are studied. It has been found that with the increase of urea concentration, there occur sequentially the deaggregation of cytochrome c molecules, the increase of exposure extent of the heme group to the solvent, the disruption of Fe-S bond of the heme group and the change in the electrochemical behaviour of cytochrome c. It is suggested that the reason why the electrochemical reaction of cytochrome c is irreversible is that cytochrome c molecules exist in the concentrated solution as oligomers which are electrochemically inactive.