College of Biotechnology & Food Science, Tianjin University of Commerce, Tianjin 300134, China.
Tianjin Key Laboratory of Food Biotechnology, Tianjin 300134, China.
Molecules. 2023 Apr 7;28(8):3286. doi: 10.3390/molecules28083286.
Endogenous and exogenous estrogens are widely present in food and food packaging, and high levels of natural estrogens and the misuse or illegal use of synthetic estrogens can lead to endocrine disorders and even cancer in humans. Therefore, it is consequently important to accurately evaluate the presence of food-functional ingredients or toxins with estrogen-like effects. In this study, an electrochemical sensor based on G protein-coupled estrogen receptors (GPERs) was fabricated by self-assembly, modified by double-layered gold nanoparticles, and used to measure the sensing kinetics for five GPER ligands. The interconnected allosteric constants () of the sensor for 17β-estradiol, resveratrol, G-1, G-15, and bisphenol A were 8.90 × 10, 8.35 × 10, 8.00 × 10, 5.01 × 10, and 6.65 × 10 mol/L, respectively. The sensitivity of the sensor for the five ligands followed the order of 17β-estradiol > bisphenol A > resveratrol > G-15 > G-1. The receptor sensor also demonstrated higher sensor sensitivity for natural estrogens than exogenous estrogens. The results of molecular simulation docking showed that the residues Arg, Glu, His, and Asn of GPER mainly formed hydrogen bonds with -OH, C-O-C, or -NH-. In this study, simulating the intracellular receptor signaling cascade with an electrochemical signal amplification system enabled us to directly measure GPER-ligand interactions and explore the kinetics after the self-assembly of GPERs on a biosensor. This study also provides a novel platform for the accurate functional evaluation of food-functional components and toxins.
内源性和外源性雌激素广泛存在于食物和食品包装中,高水平的天然雌激素和合成雌激素的滥用或非法使用会导致人类内分泌紊乱,甚至癌症。因此,准确评估具有类雌激素作用的食物功能成分或毒素的存在是非常重要的。在这项研究中,通过自组装制备了一种基于 G 蛋白偶联雌激素受体 (GPER) 的电化学传感器,并用双层金纳米粒子进行了修饰,用于测量五种 GPER 配体的传感动力学。传感器对 17β-雌二醇、白藜芦醇、G-1、G-15 和双酚 A 的互变异构常数()分别为 8.90×10、8.35×10、8.00×10、5.01×10 和 6.65×10 mol/L。传感器对五种配体的灵敏度依次为 17β-雌二醇>双酚 A>白藜芦醇>G-15>G-1。该受体传感器对天然雌激素的传感器灵敏度也高于外源性雌激素。分子模拟对接结果表明,GPER 的残基 Arg、Glu、His 和 Asn 主要与-OH、C-O-C 或-NH-形成氢键。在这项研究中,通过电化学信号放大系统模拟细胞内受体信号级联,我们能够直接测量 GPER-配体相互作用,并在生物传感器上探索自组装后的动力学。这项研究还为食物功能成分和毒素的准确功能评估提供了一个新的平台。