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新型 2-(芳氧基)-3-苯基丙酸作为过氧化物酶体增殖物激活受体α/γ双重激动剂,能够上调线粒体肉碱穿梭系统基因表达。

New 2-(aryloxy)-3-phenylpropanoic acids as peroxisome proliferator-activated receptor α/γ dual agonists able to upregulate mitochondrial carnitine shuttle system gene expression.

机构信息

Dipartimento di Farmacia-Scienze del Farmaco and ‡Laboratorio di Biochimica e Biologia Molecolare, Dipartimento di Bioscienze, Biotecnologie e Biofarmaceutica, Università degli Studi di Bari "Aldo Moro", 70126 Bari, Italy.

出版信息

J Med Chem. 2013 Jan 10;56(1):60-72. doi: 10.1021/jm301018z. Epub 2012 Dec 18.

Abstract

The preparation of a series of 2-(aryloxy)-3-phenylpropanoic acids, resulting from the introduction of different substituents into the biphenyl system of the previously reported peroxisome proliferator-activated receptor α/γ (PPARα/γ) dual agonist 1, allowed the identification of new ligands with higher potency on PPARα and fine-tuned moderate PPARγ activity. For the most promising stereoisomer (S)-16, X-ray and calorimetric studies in PPARγ revealed, at high ligand concentration, the presence of two molecules simultaneously bound to the receptor. On the basis of these results and docking experiments in both receptor subtypes, a molecular explanation was provided for its different behavior as a full and partial agonist of PPARα and PPARγ, respectively. The effects of (S)-16 on mitochondrial acylcarnitine carrier and carnitine-palmitoyl-transferase 1 gene expression, two key components of the carnitine shuttle system, were also investigated, allowing the hypothesis of a more beneficial pharmacological profile of this compound compared to the less potent PPARα agonist fibrates currently used in therapy.

摘要

我们制备了一系列 2-(芳氧基)-3-苯基丙酸,这些化合物是通过在前报道的过氧化物酶体增殖物激活受体 α/γ(PPARα/γ)双重激动剂 1 的联苯系统中引入不同取代基得到的,从而鉴定出对 PPARα 具有更高活性且对 PPARγ 具有精细调节的中等活性的新型配体。对于最有前途的立体异构体(S)-16,在 PPARγ 中的 X 射线和量热研究表明,在高浓度配体存在下,同时有两个分子与受体结合。基于这些结果和在两种受体亚型中的对接实验,为其作为 PPARα 和 PPARγ 的完全激动剂和部分激动剂的不同行为提供了分子解释。(S)-16 对线粒体酰基辅酶 A 载体和肉碱棕榈酰转移酶 1 基因表达的影响也进行了研究,这两种基因是肉碱穿梭系统的两个关键组成部分,这使得该化合物具有比目前用于治疗的低效力 PPARα 激动剂贝特类药物更有益的药理学特征的假设。

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