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细胞色素P-450芳香酶的“慢结合”第六配体抑制剂。19-硫代甲基和19-叠氮基雄烯二酮的研究。

'Slow-binding' sixth-ligand inhibitors of cytochrome P-450 aromatase. Studies with 19-thiomethyl- and 19-azido-androstenedione.

作者信息

Wright J N, Slatcher G, Akhtar M

机构信息

Department of Biochemistry, University of Southampton, U.K.

出版信息

Biochem J. 1991 Feb 1;273 ( Pt 3)(Pt 3):533-9. doi: 10.1042/bj2730533.

Abstract

The progress curves for the inhibition of aromatase by 19-thiomethylandrostenedione and 19-azidoandrostenedione were found to be non-linear where the extent of inhibition increased with time. Further experiments enabled these compounds to be classified as 'slow-binding' inhibitors of aromatase. The phenomenon was attributed to the formation of an initial E.I complex that rearranged to another species (E.I*) in which the interaction between the enzyme and inhibitor had been maximized, giving rise to tighter binding. When 19-thiomethylandrostenedione was used as the inhibitor the t0.5 (half-time) for the dissociation of E.I* was calculated to be 12.6 min with Ki and Ki* values of 2.4 and 1.4 nM respectively. In the case of 19-azidoandrostenedione, the two separate dissociation constants were not determined, and a single Ki value of 5 nM was obtained. The conclusions drawn from kinetic studies were confirmed by absorption spectrometry, when time-dependent formation of complexes between aromatase and either 19-thiomethylandrostenedione or 19-azidoandrostenedione were observed by the formation of 'Type II' spectra. The two complexes respectively had maxima at 429 and 418 nm. The spectral data suggested that the two inhibitors interact with the haem iron of aromatase, forming hexaco-ordinated species for which structural models are presented.

摘要

发现19-硫甲基雄烯二酮和19-叠氮基雄烯二酮对芳香化酶抑制作用的进展曲线呈非线性,抑制程度随时间增加。进一步的实验使这些化合物被归类为芳香化酶的“慢结合”抑制剂。该现象归因于最初的E.I复合物的形成,其重排为另一种物质(E.I*),其中酶与抑制剂之间的相互作用已最大化,从而产生更紧密的结合。当使用19-硫甲基雄烯二酮作为抑制剂时,E.I解离的t0.5(半衰期)经计算为12.6分钟,Ki和Ki值分别为2.4和1.4 nM。对于19-叠氮基雄烯二酮,未确定两个单独的解离常数,仅获得了5 nM的单一Ki值。当通过“II型”光谱的形成观察到芳香化酶与19-硫甲基雄烯二酮或19-叠氮基雄烯二酮之间随时间形成复合物时,动力学研究得出的结论通过吸收光谱法得到了证实。这两种复合物的最大吸收峰分别在429和418 nm处。光谱数据表明,这两种抑制剂与芳香化酶的血红素铁相互作用,形成了六配位的物质,并给出了其结构模型。

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本文引用的文献

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