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基于核磁共振纵向(T1)弛豫测量确定咖啡因在人细胞色素P450 1A2活性位点内的取向。

Orientation of caffeine within the active site of human cytochrome P450 1A2 based on NMR longitudinal (T1) relaxation measurements.

作者信息

Regal K A, Nelson S D

机构信息

Department of Medicinal Chemistry, University of Washington, Seattle 98195, USA.

出版信息

Arch Biochem Biophys. 2000 Dec 1;384(1):47-58. doi: 10.1006/abbi.2000.2073.

Abstract

Longitudinal (T1) relaxation studies were performed in order to examine the interaction of caffeine with the heme of human P450 1A2. Addition of caffeine to this P450 resulted in a small, incomplete conversion of the heme from high spin to low spin, as shown by changes in the optical spectrum. Determination of a relatively large dissociation constant (Ks = 2.6 mM) as well as the relative instability of the P450 after 2 h at room temperature necessitated the performance of these experiments at high concentrations (25 mM) of caffeine. The relaxation measurements on the three sets of methyl hydrogens led to the determination of the corresponding distances between the iron and the methyl groups on the bound caffeine as well as the position and orientation of caffeine within the active site of P450 1A2. The three methyl groups were found to be nearly equidistant from the iron (> or = 4.79-4.89 A), with slight preference for the N-3 position, and thus, the average position of caffeine was parallel to the heme. In vitro incubations with P450 1A2 and 5 mM caffeine led primarily to paraxanthine formation (N-3 demethylation), as expected. However, with 25 mM substrate, the overall extent of oxidation was doubled and there was more equivalent oxidation at each of the four potential sites on caffeine. This latter observation was consistent with the lack of selective positioning of the N-3 methyl group of caffeine relative to the heme.

摘要

进行纵向(T1)弛豫研究,以考察咖啡因与人细胞色素P450 1A2血红素的相互作用。向这种细胞色素P450中添加咖啡因会导致血红素从高自旋向低自旋发生少量、不完全的转变,这可通过光谱变化显示出来。由于测定出相对较大的解离常数(Ks = 2.6 mM)以及细胞色素P450在室温下2小时后相对不稳定,因此需要在高浓度(25 mM)咖啡因条件下进行这些实验。对三组甲基氢的弛豫测量确定了结合的咖啡因上铁与甲基之间的相应距离,以及咖啡因在细胞色素P450 1A2活性位点内的位置和取向。发现这三个甲基与铁的距离几乎相等(≥4.79 - 4.89 Å),对N - 3位置略有偏好,因此咖啡因的平均位置与血红素平行。如预期的那样,用细胞色素P450 1A2和5 mM咖啡因进行体外孵育主要导致副黄嘌呤形成(N - 3去甲基化)。然而,使用25 mM底物时,氧化的总体程度加倍,并且咖啡因四个潜在位点上的氧化更加等效。后一观察结果与咖啡因的N - 3甲基相对于血红素缺乏选择性定位一致。

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