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比较人细胞色素 P450 2B6 和兔细胞色素 P450 2B4 体外代谢噻氯匹定。

Comparison of in vitro metabolism of ticlopidine by human cytochrome P450 2B6 and rabbit cytochrome P450 2B4.

机构信息

Skaggs School of Pharmacy and Pharmaceutical Sciences, University of California, San Diego, La Jolla, California, USA.

出版信息

Drug Metab Dispos. 2011 Mar;39(3):539-50. doi: 10.1124/dmd.110.037101. Epub 2010 Dec 14.

Abstract

A recent X-ray crystal structure of a rabbit cytochrome P450 2B4 (CYP2B4)-ticlopidine complex indicated that the compound could be modeled with either the thiophene or chlorophenyl group oriented toward the heme prosthetic group. Subsequent NMR relaxation and molecular docking studies suggested that orientation with the chlorophenyl ring closer to the heme was the preferred one. To evaluate the predictive value of these findings, the oxidation of ticlopidine by reconstituted CYP2B4 was studied and compared with CYP2B6, in which the thiophene portion of the molecule likely orients toward the heme. In vitro incubation of ticlopidine with both enzymes yielded the same set of metabolites: 7-hydroxyticlopidine (M1), 2-oxoticlopidine (M2), 5-(2-chlorobenzyl)thieno[3,2-c]pyridin-5-ium metabolite (M3), 5-(2-chlorobenzyl)thieno[3,2-c]pyridin-5-ium metabolite (M4), ticlopidine N-oxide (M5), and ticlopidine S-oxide dimer, a dimerization product of ticlopidine S-oxide (M6). The rates of metabolite formation deviated markedly from linearity with time, consistent with the known inactivation of CYP2B6 by ticlopidine. Fitting to a first-order equation yielded similar rate constants (k(obs)) for both enzymes. However, the amplitude (R(max)) of M1 and M6 formation was 4 to 5 times higher for CYP2B6 than CYP2B4, indicating a greater residence time of ticlopidine with its thiophene ring closer to heme in CYP2B6. In contrast, CYP2B4 formed M4 and M5 in more abundance than CYP2B6, indicating an alternate orientation. Overall, the results suggest that the preferential orientation of ticlopidine in the active site of CYP2B4 predicted by X-ray crystallography and NMR studies is unproductive and that ticlopidine likely reorients within CYP2B4 to a more productive mode.

摘要

最近,兔细胞色素 P450 2B4(CYP2B4)-ticlopidine 复合物的 X 射线晶体结构表明,该化合物可以用噻吩或氯苯基基团定向于血红素辅基。随后的 NMR 弛豫和分子对接研究表明,氯苯基环更接近血红素的取向是首选的。为了评估这些发现的预测价值,研究了重组 CYP2B4 对 ticlopidine 的氧化作用,并与 CYP2B6 进行了比较,在 CYP2B6 中,分子的噻吩部分可能定向于血红素。体外孵育 ticlopidine 与两种酶都产生了相同的一组代谢物:7-羟基 ticlopidine(M1)、2-氧代 ticlopidine(M2)、5-(2-氯苄基)噻吩并[3,2-c]吡啶-5-翁代谢物(M3)、5-(2-氯苄基)噻吩并[3,2-c]吡啶-5-翁代谢物(M4)、ticlopidine N-氧化物(M5)和 ticlopidine S-氧化物二聚体,ticlopidine S-氧化物的二聚化产物(M6)。代谢物形成的速率与时间明显偏离线性,与 ticlopidine 对 CYP2B6 的已知失活一致。拟合到一阶方程得到了两种酶相似的速率常数(k(obs))。然而,M1 和 M6 形成的幅度(R(max))对于 CYP2B6 比 CYP2B4 高 4 到 5 倍,表明 ticlopidine 与 CYP2B6 中更接近血红素的噻吩环的停留时间更长。相比之下,CYP2B4 形成 M4 和 M5 的量比 CYP2B6 多,表明存在替代取向。总的来说,结果表明,X 射线晶体学和 NMR 研究预测的 CYP2B4 活性位点中 ticlopidine 的优先取向是无效的,并且 ticlopidine 可能在 CYP2B4 中重新定向到更有效的模式。

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