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Bioactivation of Fluorinated 2-Aryl-benzothiazole Anti-tumor Molecules by Human Cytochrome P450s 1A1 and 2W1 and Deactivation by Cytochrome P450 2S1

机译:氟化2-芳基 - 苯并噻唑的抗肿瘤分子由人细胞色素p450的1a1和2W1和失活的生物活化由细胞色素p450 2s1

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摘要

Both 2-(4-amino-3-methylphenyl)-5-fluorobenzothiazole (5F 203) and 5-fluoro-2-(3,4-dimethoxyphenyl)-benzothiazole (GW 610) contain the benzothiazole pharmacophore and possess potent and selective in vitro antitumor properties. Prior studies suggested the involvement of cytochrome P450 (P450) 1A1 and 2W1-mediated bioactivation in the antitumor activities and P450 2S1-mediated deactivation of 5F 203 and GW 610. In the present study, the biotransformation pathways of 5F 203 and GW 610 by P450s 1A1, 2W1, and 2S1 were investigated and the catalytic parameters of P450 1A1- and 2W1-catalyzed oxidation were determined in steady-state kinetic studies. The oxidations of 5F 203 catalyzed by P450s 1A1 and 2W1 yielded different products, and formation of a hydroxylamine was observed for the first time in the latter process. Liquid chromatography-mass spectrometry (LC-MS) analysis with the synthetic hydroxylamine and also a P450 2W1/5F 203 incubation mixture indicated the formation of dGuo adduct via a putative nitrenium intermediate. P450 2W1-catalyzed oxidation of GW 610 was 5-fold more efficient than the P450 1A1-catalyzed reaction. GW 610 underwent a two-step oxidation process catalyzed by P450 1A1 or 2W1: a regiospecific O-demethylation and a further hydroxylation. Glutathione (GSH) conjugates of 5F 203 and GW 610, presumably through a quninoneimine and a 1,2-quinone intermediate, respectively, were detected. These results demonstrate that human P450s 1A1 and 2W1 mediate 5F 203 and GW 610 bioactivation to reactive intermediates and lead to GSH conjugates and a dGuo adduct, which may account for the antitumor activities of 5F 203 and GW 610 and also be involved in cell toxicity. P450 2S1 can catalyze the reduction of the hydroxylamine to the amine 5F 203 under anaerobic conditions and, to a lesser extent, under aerobic conditions, thus attenuating the anticancer activity.
机译:2-(4-氨基-3-甲基苯基)-5-氟苯并噻唑(5F 203)和5-氟-2-(3,4-二甲氧基苯基)-苯并噻唑(GW 610)均含有苯并噻唑药效基团并在其中具有强效和选择性体外抗肿瘤特性。先前的研究表明,细胞色素P450(P450)1A1和2W1介导的生物活化参与了5F 203和GW 610的抗肿瘤活性和P450 2S1介导的失活。在本研究中,P450介导了5F 203和GW 610的生物转化途径。研究了1A1、2W1和2S1,并在稳态动力学研究中确定了P450 1A1和2W1催化氧化的催化参数。 P450 1A1和2W1催化的5F 203氧化产生不同的产物,并且在随后的过程中首次观察到羟胺的形成。用合成的羟胺以及P450 2W1 / 5F 203孵育混合物进行液相色谱-质谱(LC-MS)分析,表明通过假定的nitr中间体形成dGuo加合物。 GW 610的P450 2W1催化氧化效率是P450 1A1催化反应的5倍。 GW 610经过P450 1A1或2W1催化的两步氧化过程:区域特异性O-脱甲基和进一步的羟基化。检测到5F 203和GW 610的谷胱甘肽(GSH)共轭物,可能分别通过喹诺酮亚胺和1,2-醌中间体。这些结果表明,人P450 1A1和2W1介导5F 203和GW 610生物活化为反应性中间体,并导致GSH缀合物和dGuo加合物,这可能解释了5F 203和GW 610的抗肿瘤活性,并且还涉及细胞毒性。 P450 2S1可以在厌氧条件下(在较小程度上,在有氧条件下)将羟胺还原为胺5F 203,从而减弱其抗癌活性。

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  • 作者

    Kai Wang; F. Peter Guengerich;

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  • 年(卷),期 -1(25),8
  • 年度 -1
  • 页码 1021/tx3001994
  • 总页数 24
  • 原文格式 PDF
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