Shimizu Takafumi, Fushimi Taiki, Ohno Rio, Yasuyuki Fujii, Aso Kenta, Jacobs Ursula M, Nureki Osamu, Suhara Yoshitomo, Calabrese Vittorio, Osakabe Naomi
Systems Engineering and Science, Graduate School of Engineering and Science, Shibaura Institute of Technology, Japan.
Functional Control Systems, Graduate School of Engineering and Science, Shibaura Institute of Technology, Japan.
Curr Res Food Sci. 2024 Nov 5;9:100914. doi: 10.1016/j.crfs.2024.100914. eCollection 2024.
Recent studies have indicated that the activation of bitter taste receptors (T2R) expressed in gastrointestinal secretory cells has a regulatory effect on the secretion of gastrointestinal hormones. Polyphenols are known to be ingested at a daily intake of 5 g or more and commonly have a bitter taste. Consequently, the interaction between the bitter taste receptor T2R46 and 490 polyphenols was investigated using simulation techniques. It was demonstrated that W88 and E265 play a pivotal role in the recognition of polyphenols and known ligands by T2R46, with frequent interactions observed, particularly with flavonoids. The results of the quantitative structure-activity relationship (QSAR) analysis demonstrated a high degree of correlation (R = 0.9359) between polyphenols and T2R46 in a model that incorporated molecular interaction field regions and branching scales. Furthermore, known ligands were also found to fit this model (R = 0.9155). These findings suggest that polyphenols may act as T2R46 ligands.
最近的研究表明,胃肠道分泌细胞中表达的苦味受体(T2R)的激活对胃肠激素的分泌具有调节作用。已知多酚的每日摄入量为5克或更多,并且通常具有苦味。因此,使用模拟技术研究了苦味受体T2R46与490种多酚之间的相互作用。结果表明,W88和E265在T2R46识别多酚和已知配体中起关键作用,观察到频繁的相互作用,特别是与黄酮类化合物的相互作用。定量构效关系(QSAR)分析结果表明,在纳入分子相互作用场区域和支化尺度的模型中,多酚与T2R46之间具有高度相关性(R = 0.9359)。此外,还发现已知配体符合该模型(R = 0.9155)。这些发现表明多酚可能作为T2R46配体发挥作用。