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首页> 外文期刊>Analytical methods >Characterization of the binding between phthalate esters and mouse PPAR alpha for the development of a fluorescence polarization-based competitive binding assay
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Characterization of the binding between phthalate esters and mouse PPAR alpha for the development of a fluorescence polarization-based competitive binding assay

机译:邻苯二甲酸酯和小鼠PPARα之间结合的表征,用于开发基于荧光偏振的竞争性结合测定

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摘要

The binding of phthalate esters (PAEs) to peroxisome proliferator-activated receptor alpha (PPAR alpha) has been investigated by using fluorescence polarization (FP) in combination with molecular modeling techniques. The FP competitive binding assay is based on a mouse-derived recombinant PPARa ligand binding domain (LBD) and a fluorescent-labeled fatty acid (C4-BODIPY-C9). A soluble mPPAR alpha-LBD protein derivative, named mPPAR alpha-LBD*, was expressed and purified. By using C4-BODIPY-C9 as a probe, 10 common PAEs with different carbon chain lengths and functional groups were assessed for their binding affinities with mPPAR alpha-LBD*, respectively. PAEs displace the probe from the C4-BODIPY-C9-mPPAR alpha-LBD* complex, resulting in lower polarization values. FP assay showed that PAEs compete for the C4-BODIPY-C9 binding sites in a concentration-dependent manner, and the potency of the tested PAEs increases with increasing side chain length. Molecular docking suggested that the length and hydrophobicity of the side chain of PAEs have contributed a lot to the ligand-receptor binding, and there are four prominent interactions observed to stabilize the PAEs-mPPAR alpha-LBD* binding. In addition, comparison of docking scores vs. experimental binding affinities yielded a good correlation (R-2 = 0.948). The most active DEHP (K-d = 19.6 +/- 1.7 mu M) has the lowest ranking on docking scores. The fluorescence polarization-based competitive binding assay can potentially be used for high-throughput screening of PAEs, which may serve as an assistant of chromatographic techniques.
机译:邻苯二甲酸酯(PAEs)与过氧化物酶体增殖物激活受体α(PPARα)的结合已通过使用荧光偏振(FP)结合分子建模技术进行了研究。 FP竞争性结合测定基于小鼠衍生的重组PPARa配体结合域(LBD)和荧光标记的脂肪酸(C4-BODIPY-C9)。表达并纯化了名为mPPAR alpha-LBD *的可溶性mPPAR alpha-LBD蛋白衍生物。通过使用C4-BODIPY-C9作为探针,分别评估了10个具有不同碳链长度和官能团的常见PAE与mPPARα-LBD*的结合亲和力。 PAE将探针从C4-BODIPY-C9-mPPARα-LBD*复合物中置换出来,从而导致较低的极化值。 FP分析显示,PAE以浓度依赖的方式竞争C4-BODIPY-C9结合位点,并且随着侧链长度的增加,测试的PAE的效能也随之提高。分子对接表明,PAEs侧链的长度和疏水性对配体-受体的结合起了很大的作用,并且观察到四个突出的相互作用可以稳定PAEs-mPPARα-LBD*的结合。此外,对接得分与实验结合亲和力的比较产生了良好的相关性(R-2 = 0.948)。最活跃的DEHP(K-d = 19.6 +/- 1.7μM)在对接分数上排名最低。基于荧光偏振的竞争性结合测定可潜在地用于PAE的高通量筛选,可作为色谱技术的助手。

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