Sharonov Iu A
Mol Biol (Mosk). 1986 Mar-Apr;20(2):440-50.
Magnetic circular dichroism spectra (MCD) of reduced cytochromes P450 and P420 from rabbit liver microsomes have been recorded and analyzed for the 350-600 nm spectral region in the temperature interval from 2 to 290 K. The shape, intensity and temperature dependence of the MCD of reduced P450 in the Soret region are quite different from that of other high-spin ferrous hemoproteins, whose heme iron is coordinated to the imidazole of histidine (deoxymyoglobin, deoxyhemoglobin, reduced peroxidase and cytochrome c oxidase). Assuming that in the reduced P450 as well as in its CO-complex the protein-derived ligand is mercaptide (RS-) the differences can be explained by the existence of two electronic transitions in the Soret region: the common for hemoproteins pi----pi porphyrin transition and sulfur to porphyrin charge-transfer transition, p+(Sp)----eg (pi). The unusual spectral characteristics of the CO-complex of P450 have been ascribed earlier to strong configurational interaction of these two transitions. From the similarities of the Soret MCD and their temperature dependences for the reduced P420 and for other high-spin ferrous hemoproteins one can conclude that heme iron of the reduced P420 is high-spin and is coordinated to the imidazole of histidine. The zero-field splitting parameter D of the spin Hamiltonian has been estimated from the MCD temperature dependences. The obtained splitting of approximately 30 cm-1 for P450 and of approximately 10 cm-1 for P420 exceeds that for myoglobin and hemoglobin (approximately 5 cm-1).
已记录并分析了兔肝微粒体中还原型细胞色素P450和P420在2至290K温度区间内350 - 600nm光谱区域的磁圆二色光谱(MCD)。还原型P450在Soret区域的MCD形状、强度和温度依赖性与其他高自旋亚铁血红素蛋白(其血红素铁与组氨酸的咪唑配位,如脱氧肌红蛋白、脱氧血红蛋白、还原型过氧化物酶和细胞色素c氧化酶)有很大不同。假设在还原型P450及其CO复合物中,蛋白质衍生的配体是硫醇盐(RS - ),则这些差异可以通过Soret区域存在两个电子跃迁来解释:血红素蛋白共有的π→π卟啉跃迁以及硫到卟啉的电荷转移跃迁,p + (Sp)→eg(π)。P450的CO复合物异常的光谱特征此前已归因于这两个跃迁的强构型相互作用。从还原型P420和其他高自旋亚铁血红素蛋白的Soret MCD及其温度依赖性的相似性可以得出结论,还原型P420的血红素铁是高自旋的,并且与组氨酸的咪唑配位。自旋哈密顿量的零场分裂参数D已根据MCD温度依赖性进行了估计。对于P450获得的约30cm - 1的分裂和对于P420获得的约10cm - 1的分裂超过了肌红蛋白和血红蛋白(约5cm - 1)的分裂。