Narasimhulu S, Havran L M, Axelsen P H, Winkler J D
Harrison Department for Surgical Research, University of Pennsylvania, Philadelphia 19104, USA.
Arch Biochem Biophys. 1998 May 15;353(2):228-38. doi: 10.1006/abbi.1998.0650.
In the present study, two P450s (P4502B4 and P450cam) have been examined with regard to their interactions with their substrates and products utilizing the characteristic spectral perturbations as criteria for their binding. The results indicate that although there are differences between the two P450s (E) in regard to their precise interactions with their substrates (S) and products (P), the spectral titration data were consistent with the two-site model--E + S<-->ES (K1), E + P<-->EP (K2); EP + S<-->ESP (K3); ES + P<-->ESP (K4) in which S and P bind to E forming ESP. The data were inconsistent with the two-site model in which S and P compete for the same site. As required by the two-site model, the relationship K2K3 = K1K4 was maintained with both P450s at all product concentrations tested, although K3 and K4 decreased considerably when product concentration was increased. The relationship K3 >> K4 was also maintained, indicating that with both enzymes' ESP is formed predominantly by binding of S to EP rather than binding of P to ES, and that ESP dissociates predominantly to ES and P rather than EP and S. In other words, binding of S to EP facilitates the dissociation of P. This indicates that the relative parameter values are compatible for ESP to have functional significance. The possible role of ESP in controlling catalytic rate and catalytic efficiency is discussed.
在本研究中,利用特征光谱扰动作为结合标准,对两种细胞色素P450(P4502B4和P450cam)与它们的底物和产物之间的相互作用进行了研究。结果表明,尽管这两种细胞色素P450(E)在与它们的底物(S)和产物(P)的精确相互作用方面存在差异,但光谱滴定数据与双位点模型一致——E + S<-->ES(K1),E + P<-->EP(K2);EP + S<-->ESP(K3);ES + P<-->ESP(K4),其中S和P与E结合形成ESP。这些数据与S和P竞争同一位点的双位点模型不一致。根据双位点模型的要求,在所有测试的产物浓度下,两种细胞色素P450的K2K3 = K1K4关系均保持成立,尽管当产物浓度增加时,K3和K4显著降低。K3 >> K4的关系也得以维持,这表明对于这两种酶而言,ESP主要是由S与EP结合形成,而非P与ES结合形成,并且ESP主要解离为ES和P,而非EP和S。换句话说,S与EP的结合促进了P的解离。这表明相对参数值对于ESP具有功能意义是兼容的。文中讨论了ESP在控制催化速率和催化效率方面可能发挥的作用。