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Three-dimensional model of cytochrome P450 human aromatase.

机译:细胞色素P450人芳香化酶的三维模型。

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摘要

A three-dimensional (3-D) structure of human aromatase (CYP 19) was modeled on the basis of the crystal structure of rabbit CYP2C5, the first solved X-ray structure of an eukaryotic cytochrome P450 and was evaluated by docking S-fadrozole and the steroidal competitive inhibitor (19R)-10-thiiranylestr-4-ene-3,17-dione, into the enzyme active site. According to a previous pharmacophoric hypothesis described in the literature, the cyano group of S-fadrozole partially mimics the steroid backbone C(17) carbonyl group of (19R)-10-thiiranylestr-4-ene-3,17-dione, and was oriented in a favorable position for H-bonding with the newly identified positively charged residues Lys 119 and Arg435. In addition, this model is consistent with the recent combined mutagenesis/modeling studies already published concerning the roles ofAsp309 and His480 in the aromatization of the steroid A ring.
机译:根据兔CYP2C5的晶体结构,真核细胞色素P450的第一个解析的X射线结构,对人类芳香酶(CYP 19)的三维(3-D)结构进行建模,并通过对接S-fadrozole进行评估和甾族竞争性抑制剂(19R)-10-thiiranylestr-4-ene-3,17-dione进入酶的活性位点。根据文献中描述的先前的药效学假设,S-fadrozole的氰基部分模拟(19R)-10-thiiranylestr-4-ene-3,17-dione的甾族骨架C(17)羰基,并且是在新鉴定出的带正电的残基Lys 119和Arg435处,H取向有利于与氢键键合。另外,该模型与已经发表的关于Asp309和His480在类固醇A环的芳构化中的作用的最近的结合的诱变/建模研究相一致。

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