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为填充底物结合口袋中的额外空间而设计的细胞色素P450cam底物类似物的结合得到改善。

Improved binding of cytochrome P450cam substrate analogues designed to fill extra space in the substrate binding pocket.

作者信息

Helms V, Deprez E, Gill E, Barret C, Hui Bon Hoa G, Wade R C

机构信息

European Molecular Biology Laboratory, Heidelberg, Germany.

出版信息

Biochemistry. 1996 Feb 6;35(5):1485-99. doi: 10.1021/bi951817l.

Abstract

Cytochrome P450cam catalyzes the 5-exo-hydroxylation of camphor. Camphor analogues were designed to fill an empty region of the substrate binding pocket with the expectation that they would bind more tightly than camphor itself due to increased van der Waals interactions with the protein and the displacement of any solvent occupying this site. A series of compounds (endo-borneol methyl ether, endo-borneol propyl ether, endo-borneol allyl ether and endo-borneol dimethyl allyl ether) were synthesized with substituents at the camphor carbonyl oxygen. The spin conversion and thermodynamic properties of this series of compounds were measured for wild type and Y96F mutant cytochrome P450cam and were interpreted in the context of molecular dynamics simulations of the camphor analogues in the P450 binding site and in solution. Compounds with a 3-carbon chain substituent were predicted to match the size of the unoccupied region most optimally and thus bind best. Consistent with this prediction, the borneol allyl ether binds to cytochrome P450cam with highest affinity with a Kd = 0.6 +/- 0.1 microM (compared to a Kd = 1.7 +/- 0.2 microM for camphor under the same experimental conditions). Binding of the camphor analogues to the Y96F mutant is much enhanced over the binding of camphor, indicating that hydrogen bonding plays a less important role in binding of these analogues. Binding enthalpies calculated from the simulations, taking all solvent contributions into account, agree very well with experimental binding enthalpies. Binding affinity is not however correlated with the calculated binding enthalpy because the binding of the substrate analogues is characterized by enthalpy-entropy compensation. The new compounds are useful probes for further studies of the mechanism of cytochrome P450cam due to their high binding affinities and high spin properties.

摘要

细胞色素P450cam催化樟脑的5-外向羟基化反应。设计樟脑类似物以填充底物结合口袋的一个空区域,预期由于与蛋白质的范德华相互作用增加以及占据该位点的任何溶剂的取代,它们会比樟脑本身结合得更紧密。合成了一系列在樟脑羰基氧处带有取代基的化合物(内冰片甲基醚、内冰片丙基醚、内冰片烯丙基醚和内冰片二甲基烯丙基醚)。测量了该系列化合物对于野生型和Y96F突变型细胞色素P450cam的自旋转换和热力学性质,并结合樟脑类似物在P450结合位点和溶液中的分子动力学模拟进行了解释。预测具有3碳链取代基的化合物能最优化地匹配未占据区域的大小,因此结合最佳。与该预测一致,冰片烯丙基醚以最高亲和力结合细胞色素P450cam,Kd = 0.6 ± 0.1微摩尔(相比之下,在相同实验条件下樟脑的Kd = 1.7 ± 0.2微摩尔)。樟脑类似物与Y96F突变体的结合比樟脑的结合增强很多,表明氢键在这些类似物的结合中起的作用较小。考虑所有溶剂贡献后,从模拟计算得到的结合焓与实验结合焓非常吻合。然而,结合亲和力与计算得到 的结合焓不相关,因为底物类似物的结合具有焓 - 熵补偿特征。由于新化合物具有高结合亲和力和高自旋性质,它们是进一步研究细胞色素P450cam机制的有用探针。

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