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A Protoporphyrin IX-Based Model for Cytochrome P-450 Iron-Binding Inhibitors: SAM1 Calculations of Structure and Complexation Enthalpy

机译:基于原卟啉IX的细胞色素P-450铁结合抑制剂模型:结构和络合焓的SAM1计算

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摘要

A methyl diester protoporphyrin IX complex with ferric ion in a low-spin doublet state and with ethyl sulfide as a constant axial ligand, is proposed as a model system for examining cytochrome P-450 Fe-binding inhibitors, e.g., imidazoles and pyridines, which can coordinate as a second axial ligand. The SAM1 semiempirical method was used to calculate optimized structures and complexation enthalpies for a variety of organic ligands, as well as for the resting state aquo complex, under the assumption that such inhibitors are stronger Fe ligands than a water molecule in the enzyme's resting state and thereby block the P-450 catalytic cycle. The SAM1 structures agree qualitatively with X-ray structures of P-450_cam with bound ligands, and are in reasonable agreement regarding details such as Fe-ligand bond lengths. The enthalpy results and structures provide insights into how the inhibitory potency of imidazoles is decreased by substituents around the divalent nitrogen. In particular, a substituted imidazole may still intrinsically be able to bind to the resting state iron but with a lowered binding energy, so that it is thermodynamically unable to displace the bound water molecule. Qualitative predictions based on SAM1 binding enthalpies are in accord with experimental structural and inhibitory data.
机译:提出了一种以低旋转双峰态的三价铁离子和以乙基硫化物作为恒定轴向配体的甲基二酯原卟啉配合物作为模型系统,用于研究细胞色素P-450 Fe结合抑制剂,例如咪唑和吡啶可以作为第二轴向配位体进行配位SAM1半经验方法用于计算各种有机配体以及静止状态水络合物的优化结构和络合焓,假定此类抑制剂在酶的静止状态比水分子具有更强的Fe配体。从而阻止了P-450的催化循环。 SAM1结构与具有结合配体的P-450_cam的X射线结构在质量上是一致的,并且在细节方面(如铁-配体键长)是合理的。焓的结果和结构提供了关于咪唑的抑制能力如何被二价氮周围的取代基降低的见解。特别地,取代的咪唑可能仍然本质上能够与静止态的铁结合,但是结合能降低,因此在热力学上不能置换结合的水分子。基于SAM1结合焓的定性预测与实验结构和抑制数据一致。

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