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首页> 外文期刊>Journal of Medicinal Chemistry >Charge and substituent effects on affinity and metabolism of benzbromarone-based CYP2C19 inhibitors
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Charge and substituent effects on affinity and metabolism of benzbromarone-based CYP2C19 inhibitors

机译:电荷和取代基对基于苯溴马隆的CYP2C19抑制剂的亲和力和代谢的影响

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Human cytochrome P450 (CYP) 2C19 is one of the most important CYP2C family members responsible for metabolizing commonly prescribed drugs. This research describes synthetic modifications to benzbromarone (Bzbr) to create the most potent CYP2C19 inhibitor ever reported. The most important features enabling analogues of Bzbr to bind to CYP2C19 with high affinity are low acidity (high pK(a) or nonionizability) and hydrophobic substituents adjacent to the phenol moiety. Though CYP2C19 was known to prefer neutral substrates, the extent was perhaps not realized until the anionic, parent compound Bzbr (K-i = 3.7 muM) was compared to a less acidic dimethyl analogue (K-i = 0.033 muM). However, differences in affinity for anionic and neutral Bzbr analogues did not appear to affect the regiospecificity of their metabolism by CYP's 2C19 and 2C9. In addition, some Bzbr analogues were metabolized both on the phenol and benzofuran rings. By using a substrate with a methyl ether in place of the Bzbr phenol, it was shown that some Bzbr analogues must be able to freely reposition after binding and oxidize the more energetically favorable position. Normally, O-demethylation of this methyl ether is favored over benzofuran hydroxylation based on ion current from LC/MS. Deuterium substitution of the methyl ether results in an inverse isotope effect on benzofuran hydroxylation (i.e. increased oxidation of this less favorable site). Likewise, Bzbr-based CoMFA models of CYP2C19 demonstrated no clear preference for any one ligand alignment. This suggests results from this modeling method must be interpreted carefully for each CYP isoform. In summary, Bzbr analogues have demonstrated they can be adapted to other CYP2C enzymes in order to probe isoform-specific properties.
机译:人类细胞色素P450(CYP)2C19是最重要的CYP2C家族成员之一,负责代谢常用处方药。这项研究描述了对苯溴马隆(Bzbr)的合成修饰,以产生有史以来最有效的CYP2C19抑制剂。使Bzbr类似物能够以高亲和力与CYP2C19结合的最重要特征是低酸度(高pK(a)或不可电离性)和与酚部分相邻的疏水取代基。尽管已知CYP2C19更喜欢中性底物,但直到将阴离子母体化合物Bzbr(K-i = 3.7μM)与酸性较低的二甲基类似物(K-i = 0.033μM)相比时,这种程度才可能实现。但是,对阴离子和中性Bzbr类似物的亲和力差异似乎并未影响CYP 2C19和2C9对其代谢的区域特异性。另外,一些Bzbr类似物在苯酚和苯并呋喃环上均被代谢。通过使用带有甲基醚的基质代替Bzbr苯酚,已显示一些Bzbr类似物在结合后必须能够自由地重新定位,并能氧化更有利的位置。通常,基于LC / MS的离子流,该甲醚的O-脱甲基化要优于苯并呋喃羟基化。甲基醚的氘取代导致对苯并呋喃羟基化的同位素反作用(即,该较不利位点的氧化增加)。同样,CYP2C19的基于Bzbr的CoMFA模型显示对任何一种配体比对都没有明确的偏好。这表明必须仔细解释每种CYP同工型的这种建模方法的结果。综上所述,Bzbr类似物已证明它们可以适应于其他CYP2C酶,以探索同工型的特异性。

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