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Structural and Thermodynamic Consequences of 1-(4-Chlorophenyl)imidazole Binding to Cytochrome P450 2B4

机译:1-(4-氯苯基)咪唑与细胞色素P450 2B4结合的结构和热力学后果

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摘要

The crystal structure of P450 2B4 bound with 1-(4-chlorophenyl)imidazole (1-CPI) has been determined to delineate the structural basis for the observed differences in binding affinity and thermodynamics relative to 4-(4-chlorophenyl)imidazole (4-CPI). Compared with the previously reported 4-CPI complex, there is a shift in the 1-CPI complex of the protein backbone in helices F and I, repositioning the side chains of Phe-206, Phe-297, and Glu-301, and leading to significant reshaping of the active site. Phe-206 and Phe-297 exchange positions, with Phe-206 becoming a ligand-contact residue, while Glu-301, rather than hydrogen bonding to the ligand, flips away from the active site and interacts with His-172. As a result the active site volume expands from 200 Å3 in the 4-CPI complex to 280 Å3 in the 1-CPI complex. Based on the two structures, it was predicted that a Phe-206->Ala substitution would alter 1-CPI but not 4-CPI binding. Isothermal titration calorimetry experiments indicated that this substitution had no effect on the thermodynamic signature of 4-CPI binding to 2B4. In contrast, relative to wild-type 1-CPI binding to F206A showed significantly less favorable entropy but more favorable enthalpy. This result is consistent with loss of the aromatic side chain and possible ordering of water molecules, now able to interact with Glu-301 and exposed residues in the I-helix. Hence, thermodynamic measurements support the active site rearrangement observed in the crystal structure of the 1-CPI complex and illustrate the malleability of the active site with the fine tuning of residue orientations and thermodynamic signatures.
机译:已确定与1-(4-氯苯基)咪唑(1-CPI)结合的P450 2B4的晶体结构为描述相对于4-(4-氯苯基)咪唑的结合亲和力和热力学差异提供了结构基础(4 -CPI)。与先前报道的4-CPI复合物相比,螺旋F和I中蛋白质骨架的1-CPI复合物发生了变化,重新定位了Phe-206,Phe-297和Glu-301的侧链,并导致重塑活动站点。 Phe-206和Phe-297交换位置,Phe-206变成配体接触残基,而Glu-301而不是氢键合到配体上,从活性位点翻转出来并与His-172相互作用。结果,活动站点的容量从4-CPI复合物中的200Å 3 扩展到1-CPI复合物中的280Å 3 。基于这两种结构,可以预测Phe-206-> Ala取代会改变1-CPI,但不会改变4-CPI结合。等温滴定量热法实验表明,这种取代对4-CPI与2B4结合的热力学特征没有影响。相比之下,相对于野生型1-CPI,与F206A的结合表现出明显不那么有利的熵,却表现出更有利的焓。该结果与芳族侧链的丧失和水分子可能的有序一致,水分子现在能够与Glu-301和I-螺旋中的暴露残基相互作用。因此,热力学测量结果支持了在1-CPI配合物的晶体结构中观察到的活性位点重排,并说明了活性位点的延展性与残基取向和热力学特征的微调。

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