Chemistry and Environmental Division, Manchester Metropolitan University, Manchester, England.
Center for Healthcare Advancement, Innovation and Research, Vellore Institute of Technology University, Chennai Campus, Chennai, India.
J Biomol Struct Dyn. 2024;42(23):12645-12659. doi: 10.1080/07391102.2023.2272745. Epub 2023 Oct 25.
Tetrahydroisoquinolines (THIQs) are a significant class within the broad range of natural compounds known as isoquinoline alkaloids. Natural and manmade drugs based on THIQ have a variety of biological effects that protect against different infectious pathogens and neurological diseases. In this study, two new THIQ derivatives were synthesized and characterized using by X-ray crystallographic analysis. The performed Hirshfeld analysis shows the intermolecular interactions and reactive sites of compounds. The 2D fingerprints reveal dominants H···C interactions up to 8.8% in while 43% H···H elemental interactions are observed in compound . In studied compound , the repulsion energies (k) dominate the other energies where the highest amount of 63.8 kJ/mol is obtained whereas has a significant contribution from E to the total energy of the molecule from the energy framework study. Moreover, the density functional theory study reveals better thermodynamic and electronic stabilities. These compounds have reduced HOMO-LUMO gaps (E) ranging from 3.66 to 3.60 eV, indicating their remarkable conductive and electronic properties. The significant reduction in E also guarantees our synthesized compounds' soft nature and reactivity. Our studied compound's NBO charges and MEPs analysis show electron-rich sites and donor-acceptor mechanism. Our synthesized compounds have remarkable polarizability (α) and hyperpolarizability (β) values (446.23 - 1312.73 au), which indicates their optical and nonlinear optical properties. The density of states spectra further illustrates their notable structural-electronic properties and reduced band gaps. Based on structural activity relationship studies, we found that these tetrahydro-isoquinolines derivatives are potent against microsomal prostaglandin E synthase 1(MPGES1), the docking analysis shows that studied compounds have a good binding affinity with MPGES1, and further ADME/T analysis was carried out for both compounds. In addtion to this molecular dynamics, studies were performed to understand the binding stability of both compounds in protien complex system during 100 ns simulation.Communicated by Ramaswamy H. Sarma.
四氢异喹啉(THIQs)是一类广泛存在的天然化合物,属于异喹啉生物碱。基于 THIQ 的天然和人工药物具有多种生物效应,可以预防各种感染病原体和神经退行性疾病。在这项研究中,我们使用 X 射线晶体学分析合成并表征了两种新的 THIQ 衍生物。进行的 Hirshfeld 分析表明了化合物的分子间相互作用和反应性位点。二维指纹图揭示了在 中高达 8.8%的主导 H···C 相互作用,而在化合物 中观察到 43%的 H···H 元素相互作用。在所研究的化合物中,排斥能(k)支配着其他能量,其中获得的最高量为 63.8 kJ/mol,而 则从能量框架研究中对分子总能量具有显著的 E 贡献。此外,密度泛函理论研究揭示了更好的热力学和电子稳定性。这些化合物的 HOMO-LUMO 能隙(E)减小,范围在 3.66 至 3.60 eV 之间,表明它们具有显著的导电性和电子特性。E 的显著减小也保证了我们合成化合物的软性质和反应性。我们所研究的化合物的 NBO 电荷和 MEP 分析表明存在电子富区和供体-受体机制。我们合成的化合物具有显著的极化率(α)和超极化率(β)值(446.23 至 1312.73 au),表明它们具有光学和非线性光学性质。态密度谱进一步说明了它们显著的结构-电子性质和减小的带隙。基于结构活性关系研究,我们发现这些四氢异喹啉衍生物对微粒体前列腺素 E 合酶 1(MPGES1)具有很强的抑制作用,对接分析表明研究化合物与 MPGES1 具有良好的结合亲和力,并进一步对两种化合物进行了 ADME/T 分析。此外,还进行了分子动力学研究,以了解两种化合物在 100 ns 模拟期间在蛋白质复合物系统中的结合稳定性。