Sabatucci Annalaura, Simonetti Monica, Tortolani Daniel, Angelucci Clotilde B, Dainese Enrico, Maccarrone Mauro
Faculty of Bioscience, and Technology for Food Agriculture and Environment, University of Teramo, Teramo, Italy.
Faculty of Veterinary Medicine, University of Teramo, Teramo, Italy.
Cannabis Cannabinoid Res. 2019 Mar 13;4(1):42-50. doi: 10.1089/can.2018.0051. eCollection 2019.
Fatty acid amide hydrolase (FAAH) is a membrane-bound homodimeric enzyme that gets in contact with a lipophilic substrate in the lipid bilayer, and then cleaves it into water soluble products. FAAH plays a critical role in modulating content and biological activity of endocannabinoids (eCBs), and its function is affected by membrane lipids. Increasing evidence suggests that also steroids can modulate endocannabinoid signaling, both in the central nervous system and at the periphery. In this study, we interrogated the effect of six steroids with relevant biological activity (testosterone, hydrocortisone, estradiol, pregnenolone, progesterone, and cortisone) on the membrane binding ability of rat FAAH. The experimental data analysis obtained by Fluorescence Resonance Energy Transfer Spectroscopy was paralleled by computational docking analysis. Our data revealed distinct effects of the different steroids on the interaction of rat FAAH with model membranes. Among them, pregnenolone was found to be the most effective in raising rat FAAH affinity for model membranes. A possible binding pocket for steroid molecules was identified by docking analysis in the membrane-embedded region of the enzyme; such a pocket could account for the observed increase of the membrane affinity in the presence of the tested molecules. Overall, the results point to steroids as new regulators of FAAH interaction with membranes, which may impact the biological activity of eCBs.
脂肪酸酰胺水解酶(FAAH)是一种膜结合的同二聚体酶,它在脂质双层中与亲脂性底物接触,然后将其切割成水溶性产物。FAAH在调节内源性大麻素(eCBs)的含量和生物活性方面起着关键作用,其功能受膜脂影响。越来越多的证据表明,类固醇在中枢神经系统和外周也能调节内源性大麻素信号传导。在本研究中,我们探究了六种具有相关生物活性的类固醇(睾酮、氢化可的松、雌二醇、孕烯醇酮、孕酮和可的松)对大鼠FAAH膜结合能力的影响。通过荧光共振能量转移光谱法获得的实验数据分析与计算对接分析并行。我们的数据揭示了不同类固醇对大鼠FAAH与模型膜相互作用的不同影响。其中,孕烯醇酮被发现是提高大鼠FAAH对模型膜亲和力最有效的物质。通过对接分析在酶的膜嵌入区域确定了类固醇分子的一个可能结合口袋;这样一个口袋可以解释在测试分子存在下观察到的膜亲和力增加。总体而言,结果表明类固醇是FAAH与膜相互作用的新调节剂,这可能会影响eCBs的生物活性。