State Key Joint Laboratory of ESPC, School of Environment, Tsinghua University, Beijing 100084, China.
School of Ecology and Environmental Science, Zhengzhou University, Zhengzhou 450001, China.
Environ Sci Technol. 2023 Oct 17;57(41):15617-15626. doi: 10.1021/acs.est.3c03223. Epub 2023 Oct 6.
Wastewater treatment plants (WWTPs) are regarded as the main sources of estrogens that reach the aquatic environment. Hence, continuous monitoring of potential estrogenic-active compounds by a biosensor is an appealing approach. However, existing biosensors cannot simultaneously distinguish and quantify estrogenic agonists and antagonists. To overcome the challenge, we developed an estrogen receptor-based biosensor that selectively screened estrogenic agonists and antagonists by introducing rationally designed agonist/antagonist conformation-specific reporters. The double functional conformation-specific reporters consist of a Cy5.5-labeled streptavidin moiety and a peptide moiety, serving as signal recognition and signal transduction elements. In addition, the conformation recognition mechanism was further validated at the molecular level through molecular docking. Based on the two-step "turn-off" strategy, the biosensor exhibited remarkable sensitivity, detecting 17β-estradiol-binding activity equivalent (E-BAE) at 7 ng/L and 4-hydroxytamoxifen-binding activity equivalent (4-OHT-BAE) at 91 ng/L. To validate its practicality, the biosensor was employed in a case study involving wastewater samples from two full-scale WWTPs across different treatment stages to map their estrogenic agonist and antagonist binding activities. Comparison with the yeast two-hybrid bioassay showed a strong liner relationship ( = 0.991, < 0.0001), indicating the excellent accuracy and reliability of this technology in real applications.
污水处理厂(WWTPs)被认为是进入水生环境的雌激素的主要来源。因此,通过生物传感器对潜在的具有雌激素活性的化合物进行连续监测是一种很有吸引力的方法。然而,现有的生物传感器不能同时区分和定量雌激素激动剂和拮抗剂。为了克服这一挑战,我们开发了一种基于雌激素受体的生物传感器,通过引入合理设计的激动剂/拮抗剂构象特异性报告分子,选择性地筛选雌激素激动剂和拮抗剂。双功能构象特异性报告分子由 Cy5.5 标记的链霉亲和素部分和肽部分组成,作为信号识别和信号转导元件。此外,通过分子对接进一步在分子水平上验证了构象识别机制。基于两步“关闭”策略,该生物传感器表现出显著的灵敏度,可检测到 17β-雌二醇结合活性当量(E-BAE)为 7ng/L,4-羟基他莫昔芬结合活性当量(4-OHT-BAE)为 91ng/L。为了验证其实际应用,该生物传感器用于两个全规模 WWTP 不同处理阶段的废水样品的案例研究,以绘制它们的雌激素激动剂和拮抗剂结合活性。与酵母双杂交生物测定法的比较显示出很强的线性关系( = 0.991, < 0.0001),表明该技术在实际应用中的准确性和可靠性很高。