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The Identification of Ligand Features Essential for PXR Activation by Pharmacophore Modeling

机译:通过药效团建模鉴定对PXR激活至关重要的配体特征

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摘要

Drug metabolizing enzymes and transporters are often involved in clinically relevant drug-drug interactions.These functional proteins can be induced by a wide range of xenobiotics.The induction is mediated by a group of receptors known as orphan nuclear receptors.The pregnane X receptor (PXR) is a member of this receptor family and regulates the expression of multiple Cytochrome P450 enzyme families (e.g.CYP 3A and 2B),phase II enzymes (e.g.UDP glucuronosyl transferases),and transporters (e.g.multidrug resistance protein 1).The software package Catalyst was employed to derive pharmacophore models for PXR activation.A structure based pharmacophore hypothesis and several ligand based ones were compared in order to identify ligand receptor interactions essential for receptor activation.The results suggest that hydrogen bonding to Gln285 is indispensable for PXR activation.Most ligands were found to form a second hydrogen bond to His407.Hydrophobic interactions are not essential for receptor activation but contribute to ligand affinity.Highly active compounds share up to five hydrophobic features that allow the ligand to occupy large areas of the predominantly hydrophobic binding pocket.
机译:药物代谢酶和转运蛋白通常参与临床相关的药物相互作用,这些功能蛋白可以被多种异生素诱导,诱导作用由一组称为孤儿核受体的受体介导,孕烷X受体(PXR) )是该受体家族的成员,并调节多个细胞色素P450酶家族(例如CYP 3A和2B),II期酶(例如UDP葡萄糖醛糖基转移酶)和转运蛋白(例如多药耐药蛋白1)的表达。软件包Catalyst用来推导PXR活化的药效团模型。比较了基于结构的药效团假说和几种基于配体的假说,以鉴定受体活化必不可少的配体受体相互作用。结果表明,与Gln285的氢键键合对于PXR活化是必不可少的。被发现在His407上形成了第二个氢键。疏水相互作用对于受体而言不是必需的高活性化合物具有多达五个疏水特征,这些特征使配体占据了疏水结合袋的大部分区域。

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