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Fast Screening of Ligand-Protein Interactions based on Ligand-Induced Protein Stabilization of Gold Nanoparticles

机译:基于配体诱导的金纳米颗粒蛋白质稳定化的配体-蛋白质相互作用的快速筛选

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High throughput screening of small molecular weight (LMW) ligands for protein and sensitive determination of ligand-induced protein stabilization is an important task in drug discovery and in protein structural and functional genomics studies. In this study, gold nanoparticles (AuNPs) and their aggregation property are used to develop a rapid and less equipment intensive assay for screening the interactions between LMW ligands and transcription factors (TFs) and human serum albumin. The assay is based on the fact that the aggregation/discpersion status of AuNPs is very sensitive to the conformation of surrounding proteins, and when a LMW ligand binds to the proteins, it can enhance proteins' salt and thermal stability, and therefore the protective effect on AuNPs from aggregation. Two TFs, i.e. FoxA1 (Forkhead box A1) and AP-2γ (activating enhancer binding protein 2 gamma), and 14 compounds from an NCI compounds library and human serum albumin (HSA) and three known ligands (ibuprofen, warfarin, and phenytoin) are involved to demonstrate the concept and to prove its generality and robustness. With this AuNP method, two strong LMW binders are identified for FoxA1 and AP-2γ; ligand induced protein stabilization is determined. The results have been verified using surface plasmon resonance spectroscopy (SPR) and differential static light scattering (DSLS) techniques. Tryptophan fluorescent measurement is also conducted to provide further information on protein conformational change upon LMW ligand loading as can be observed from AuNPs' UV-vis spectra. FoxA1 and AP-2γ are pivotal in regulating the transcriptional activity of estrogen receptor alpha and controlling the expression of estrogen-responsive breast cancer cells. Identification of drug candidates targeting these two transcription factors could be an alternative in treating breast cancer, in particular those that have become endocrine resistance.
机译:高通量筛选蛋白质的小分子量(LMW)配体以及灵敏地测定配体诱导的蛋白质稳定性是药物发现以及蛋白质结构和功能基因组学研究中的重要任务。在这项研究中,金纳米颗粒(AuNPs)及其聚集特性被用于开发一种快速且设备密集度较低的测定方法,用于筛选LMW配体与转录因子(TFs)和人血清白蛋白之间的相互作用。该测定基于以下事实:AuNP的聚集/分散状态对周围蛋白质的构象非常敏感,并且当LMW配体与蛋白质结合时,它可以增强蛋白质的盐分和热稳定性,因此具有保护作用来自聚合的AuNP。两个TF,即FoxA1(叉头盒A1)和AP-2γ(激活增强剂结合蛋白2γ),以及来自NCI化合物库的14种化合物,人血清白蛋白(HSA)和三个已知的配体(布洛芬,华法林和苯妥英)参与演示该概念并证明其通用性和鲁棒性。用这种AuNP方法,可以鉴定出FoxA1和AP-2γ的两种强LMW结合剂。确定配体诱导的蛋白质稳定。使用表面等离子体共振光谱(SPR)和差分静态光散射(DSLS)技术已验证了结果。还可以进行色氨酸荧光测量,以提供有关LMW配体负载后蛋白质构象变化的更多信息,这可以从AuNPs的UV-vis光谱中观察到。 FoxA1和AP-2γ在调节雌激素受体α的转录活性和控制雌激素反应性乳腺癌细胞的表达中起着关键作用。靶向这两种转录因子的候选药物的鉴定可以作为治疗乳腺癌的一种选择,特别是那些已成为内分泌抗性的乳腺癌。

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