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Identification of a specific agonist of human TAS2R14 from Radix Bupleuri through virtual screening functional evaluation and binding studies

机译:通过虚拟筛选功能评估和结合研究鉴定了柴胡中人TAS2R14的特异性激动剂

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摘要

Bitter taste receptors (TAS2Rs) have attracted a great deal of interest because of their recently described bronchodilator and anti-inflammatory properties. The aim of this study was to identify natural direct TAS2R14 agonists from Radix Bupleuri that can inhibit mast cell degranulation. A ligand-based virtual screening was conducted on a library of chemicals contained in compositions of Radix Bupleuri, and these analyses were followed by cell-based functional validation through a HEK293-TAS2R14-G16gust44 cell line and IgE-induced mast cell degranulation assays, respectively. Saikosaponin b (SSb) was confirmed for the first time to be a specific agonist of TAS2R14 and had an EC50 value of 4.9 μM. A molecular docking study showed that SSb could directly bind to a TAS2R14 model through H-bond interactions with Arg160, Ser170 and Glu259. Moreover, SSb showed the ability to inhibit IgE-induced mast cell degranulation, as measured with a β-hexosaminidase release model and real-time cell analysis (RTCA). In a cytotoxicity bioassay, SSb showed no significant cytotoxicity to HEK293 cells within 24 hours. This study demonstrated that SSb is a direct TAS2R14 agonist that inhibit IgE-induced mast cell degranulation. Although the target and in vitro bioactivity of SSb were revealed in this study, it still need in vivo study to further verify the anti-asthma activity of SSb.
机译:苦味受体(TAS2Rs)由于其最近描述的支气管扩张剂和抗炎特性而引起了人们的极大兴趣。这项研究的目的是确定来自柴胡的天然直接TAS2R14激动剂,可以抑制肥大细胞脱粒。对柴胡成分中包含的化学物质进行基于配体的虚拟筛选,然后分别通过HEK293-TAS2R14-G16gust44细胞系和IgE诱导的肥大细胞脱粒试验对细胞进行功能验证。 。首次证实Saikosaponin b(SSb)是TAS2R14的特异性激动剂,EC50值为4.9μm。分子对接研究表明,SSb可以通过与Arg160,Ser170和Glu259的H键相互作用直接结合到TAS2R14模型。此外,SSb表现出抑制IgE诱导的肥大细胞脱粒的能力,如β-己糖胺酶释放模型和实时细胞分析(RTCA)所测量。在细胞毒性生物测定中,SSb在24小时内未显示出对HEK293细胞的明显细胞毒性。这项研究表明,SSb是抑制IgE诱导的肥大细胞脱粒的直接TAS2R14激动剂。尽管这项研究揭示了SSb的靶点和体外生物活性,但仍需要进行体内研究以进一步验证SSb的抗哮喘活性。

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