Ching Y C, Argade P V, Rousseau D L
Biochemistry. 1985 Aug 27;24(18):4938-46. doi: 10.1021/bi00339a032.
Reduced cyanide-bound cytochrome oxidase in the absence of any oxygen gives a resonance Raman spectrum consistent with that expected for low-spin heme a. Thus, in contrast to prior reports, ligand binding of cytochrome a3 to form a six-coordinate low-spin ferrous heme does not result in any unusual electronic structure, hydrogen bonding, environment, or conformation of the formyl group. It appears unlikely that there are any changes in this group in cytochrome a3 that control the ligand affinity or redox potential in physiological forms of the ferrous enzyme. With the use of our difference spectrometer and by appropriately selecting the laser excitation frequency, we are able to isolate spectrally cytochromes a2+, a3(2+), and a3(2+)(CN-). The addition of a small amount of oxygen to a preparation of the cyanide-bound reduced enzyme results in a complex with the same Raman spectrum as that previously reported to originate from the cyanide-bound reduced complex. Any oxygen present in the sample leads to enzyme turnover resulting in a mixed valence state [a2+a3(3+)(CN-)]. The comparison between the data on the cyanide-bound reduced enzyme and the data on the CO-bound reduced enzyme illustrates that cyanide binding affects only the modes that respond to the spin state of the ferrous iron, while CO binding affects vibrational modes that respond to a pi-electron density change as well.
在无氧情况下,结合氰化物的细胞色素氧化酶减少,其共振拉曼光谱与低自旋血红素a预期的光谱一致。因此,与先前的报道相反,细胞色素a3的配体结合形成六配位低自旋亚铁血红素,不会导致任何异常的电子结构、氢键、环境或甲酰基构象。在亚铁酶的生理形式中,细胞色素a3中该基团似乎不太可能发生任何控制配体亲和力或氧化还原电位的变化。使用我们的差分光谱仪并适当选择激光激发频率,我们能够在光谱上分离出细胞色素a2+、a3(2+)和a3(2+)(CN-)。向结合氰化物的还原酶制剂中加入少量氧气,会形成一种与先前报道的源自结合氰化物的还原复合物具有相同拉曼光谱的复合物。样品中存在的任何氧气都会导致酶周转,从而产生混合价态[a2+a3(3+)(CN-)]。结合氰化物的还原酶数据与结合一氧化碳的还原酶数据之间的比较表明,氰化物结合仅影响对亚铁离子自旋状态有响应的模式,而一氧化碳结合也会影响对π电子密度变化有响应的振动模式。