首页> 外文期刊>Journal of Physical Chemistry & Biophysics >Conformational Study of Cannabinoid Docking to Cannabinoid Receptor 1(CB1) via Linear and Nonlinear Circular Dichroism
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Conformational Study of Cannabinoid Docking to Cannabinoid Receptor 1(CB1) via Linear and Nonlinear Circular Dichroism

机译:通过线性和非线性圆二色性将大麻素对接至大麻素受体1(CB1)的构象研究

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The exact mechanism of binding of (-)-trans-Δ9-tetrahydrocannabinol (the main psychoactive component of marijuana) to the cannabinoid receptor, CB1, is unknown. Conformational information of the cannabinoids may give insight to this mechanism and the elicited effects of consumption. Herein, we report on the theoretical conformational study of Δ9-tetrahydrocannabinol (Δ9-THC) and cannabidiol (CBD), the psychoactive and a non-psychoactive compound found in marijuana, respectively, using electronic circular dichroism (ECD) and two-photon circular dichroism (TPCD). The compounds were optimized in vacuo and in the receptor site using DFT and B3LYP with the 6-311G** basis set and spectra were calculated using the same level of theory, but with the 6-311++G** basis set. First, we present and discuss the comparison of experimental and theoretical ECD spectra of (-)-trans-Δ9-THC and CBD in methanol solution in order to corroborate our theoretical approach. Second, we show, theoretically, the enhanced sensitivity of TPCD compared with ECD to conformational changes of cannabinoids upon docking, giving rise to a potential application in vivo. Finally, the comparative analysis of the theoretical TPCD spectra of Δ9-THC and CBD show distinct fingerprints in the far-UV region for two conformers of each molecule, which may help to understand the specific binding mechanisms of these species to the cannabinoid receptors and to describe the difference in psychological effects upon consumption. Our results show the complementarity of these two spectroscopic techniques and the potential of TPCD to determine the conformational changes of cannabinoids upon docking to the CB1 receptor.
机译:(-)-反式-Δ9-四氢大麻酚(大麻的主要精神活性成分)与大麻素受体CB1结合的确切机理尚不清楚。大麻素的构象信息可能有助于了解这种机制以及所引起的消费影响。在这里,我们报告使用电子圆二色性(ECD)和双光子圆二色性分别在大麻中发现的精神活性和非精神活性化合物Δ9-四氢大麻酚(Δ9-THC)和大麻二酚(CBD)的理论构象研究二向色性(TPCD)。使用DFT和B3LYP(6-311G **基集)在真空中和受体位点对化合物进行优化,并使用相同的理论水平(但使用6-311 ++ G **基集)计算光谱。首先,我们介绍和讨论在甲醇溶液中(-)-反式-Δ9-THC和CBD的实验和理论ECD光谱的比较,以证实我们的理论方法。其次,从理论上讲,我们显示,与ECD相比,TPCD对大麻素对接后构象变化的敏感性增强,从而在体内具有潜在的应用前景。最后,对Δ9-THC和CBD的理论TPCD光谱进行的比较分析显示,每个分子的两个构象异构体在远紫外线区域具有独特的指纹,这可能有助于了解这些物质与大麻素受体的特异性结合机制,并描述消费对心理影响的差异。我们的结果显示了这两种光谱技术的互补性,以及TPCD在对接CB1受体后确定大麻素构象变化的潜力。

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