Davydov R M, Greshner Z, Rukpaul' K
Mol Biol (Mosk). 1979 Nov-Dec;13(6):1397-406.
It was shown that ferrocytochrome P450 forms a nonequilibrium state if ferrocytochrome P450 and its complexes are reduced in freezed water-glycerol solutions by thermolysed electrons, arising during gamma-radiolysis of the matrix at 77 degrees K. Unlike the equilibrium form of ferrocytochrome P450 with the heme iron at the high-spin state the reduced nonequilibrium form of the protein contains the heme iron at a low-spin state. The absorption spectrum of ferrocytochrome P450 in the nonequilibrium state is characterized by alpha and beta-bands at 562 and 534 nm, respectively, whereas the magnetic circular dichroism spectra exhibit type A effect at 562 nm. Upon temperature increasing the nonequilibrium state is relaxed to the equilibrium one. Type 1 substrates had practically no influence on the spectral characteristic of the nonequilibrium form of ferrocytochrome P450. Binding of type 2 substrates results in an essential decrease of the intensity ratio of the alpha- and beta-bands (A alpha/A beta) and is accompanied by a red-shift of the alpha-band and corresponding magnetic circular dichroism effect. It was shown that mercaptoethanol complex of hemoglobin, formed by reduction at 77 degrees K is spectrally similar to the nonequilibrium ferrocytochrome P450 complex with type 2 substrates. From analysis of experimental data one can conclude that (i) the ligand environment of heme iron in oxidased and reduced cytochrome P450 are different; (ii) the sixth axial ligand of the heme iron in the oxidised protein is probably a water molecule (OH-) attached by a hydrogen bond to the neighbouring histidine. It is assumed that a similar nonequilibrium form of cytochrome P450 can be formed in physiological conditions.
研究表明,如果在77K下γ射线辐解基质时产生的热解电子在冷冻的水 - 甘油溶液中使亚铁细胞色素P450及其复合物还原,亚铁细胞色素P450会形成非平衡态。与血红素铁处于高自旋态的亚铁细胞色素P450的平衡形式不同,该蛋白质的还原非平衡形式中血红素铁处于低自旋态。非平衡态亚铁细胞色素P450的吸收光谱分别以562和534nm处的α和β带为特征,而磁圆二色光谱在562nm处表现出A类效应。随着温度升高,非平衡态会弛豫到平衡态。1型底物对亚铁细胞色素P450非平衡形式的光谱特征几乎没有影响。2型底物的结合导致α和β带的强度比(Aα/Aβ)显著降低,并伴随着α带的红移和相应的磁圆二色效应。研究表明,在77K下通过还原形成的血红蛋白巯基乙醇复合物在光谱上与2型底物的非平衡亚铁细胞色素P450复合物相似。从实验数据分析可以得出:(i)氧化型和还原型细胞色素P450中血红素铁的配体环境不同;(ii)氧化型蛋白质中血红素铁的第六个轴向配体可能是通过氢键与相邻组氨酸相连的水分子(OH-)。据推测,在生理条件下可能会形成类似的细胞色素P450非平衡形式。