cyp2a6抑制剂的鉴定,以减轻植物化学尼古丁的有害影响。

IF 1.4 Q4 ONCOLOGY Journal of Cancer Metastasis and Treatment Pub Date : 2021-01-01 Epub Date: 2021-04-14 DOI:10.20517/2394-4722.2020.143
Navneet Goyal, Jayalakshmi Sridhar, Camilla Do, Melyssa Bratton, Shahensha Shaik, Quan Jiang, Maryam Foroozesh
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引用次数: 2

摘要

目的:在这项研究中,我们的目标是研究P4502A6对尼古丁代谢的抑制作用,以此作为减少烟草使用从而预防吸烟相关癌症的一种手段。尼古丁是一种植物化学物质,是一种令人上瘾的兴奋剂,是吸烟者对烟草依赖的原因。烟草中的许多其他植物化学物质,包括多环芳烃、N-亚硝胺和芳香胺,都是强效的系统致癌物。在美国,每年约有五分之一的人死于吸烟。尼古丁的血浆浓度由吸烟者的吸烟行为维持在一个小范围内。尼古丁被细胞色素P450s 2A6和2A13代谢为可替宁。这种代谢导致尼古丁血浆水平下降,进而导致吸烟增加,并增加对烟草致癌物质的接触。方法:以植物化学物质尼古丁为先导结构,考虑到其与P4502A6结合口袋的相互作用,设计并合成了新的吡啶衍生物作为该酶的潜在选择性机制抑制剂。结果:本文讨论了吡啶环上具有不同取代基和取代位置的两类新型吡啶类化合物的设计和合成,以及它们对细胞色素P4502A6的抑制活性及其与活性位点的相互作用。在吡啶环的3位用含咪唑或炔丙基醚的基团取代显示出与P4502A6活性位点的最佳相互作用。结论:吡啶类化合物的3位取代基为咪唑或炔丙基醚,是有发展前景的先导化合物。氢键相互作用被确定为对P450 2A6活性位点内这些分子的有效结合至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Identification of CYP 2A6 inhibitors in an effort to mitigate the harmful effects of the phytochemical nicotine.

Aim: In this study, our goal was to study the inhibition of nicotine metabolism by P450 2A6, as a means for reduction in tobacco use and consequently the prevention of smoking-related cancers. Nicotine, a phytochemical, is an addictive stimulant, responsible for the tobacco-dependence in smokers. Many of the other phytochemicals in tobacco, including polycyclic aromatic hydrocarbons, N-nitrosamines, and aromatic amines, are potent systemic carcinogens. Tobacco smoking causes about one of every five deaths in the United States annually. Nicotine plasma concentration is maintained by the smokers' smoking behavior within a small range. Nicotine is metabolized by cytochrome P450s 2A6 and 2A13 to cotinine. This metabolism causes a decrease in nicotine plasma levels, which in turn leads to increased tobacco smoking, and increased exposure to the tobacco carcinogens.

Methods: Using the phytochemical nicotine as a lead structure, and taking its interactions with the P450 2A6 binding pocket into consideration, new pyridine derivatives were designed and synthesized as potential selective mechanism-based inhibitors for this enzyme.

Results: The design and synthesis of two series of novel pyridine-based compounds, with varying substituents and substitution locations on the pyridine ring, as well as their inhibitory activities on cytochrome P450 2A6 and their interactions with its active site are discussed here. Substitutions at position 3 of the pyridine ring with an imidazole or propargyl ether containing group showed the most optimal interactions with the P4502A6 active site.

Conclusion: The pyridine compounds with an imidazole or propargyl ether containing substituent on position 3 were found to be promising lead compounds for further development. Hydrogen-bonding interactions were determined to be crucial for effective binding of these molecules within the P450 2A6 active site.

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CiteScore
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自引率
5.30%
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460
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