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1,3,4-噻二唑类(R)-香芹酮合成物针对特定肿瘤蛋白标志物的多靶点分子对接和动力学模拟研究:两种非对映异构体的计算机研究。

Multitargeted molecular docking and dynamics simulation studies of 1,3,4-thiadiazoles synthesised from (R)-carvone against specific tumour protein markers: An In-silico study of two diastereoisomers.

机构信息

Laboratory of Organic Synthesis and Physico-Molecular Chemistry, Department of Chemistry, Faculty of Sciences Semlalia, Université Cadi Ayyad, BP PO Box 2390, Marrakech 40001, Morocco.

Laboratory of Organic Synthesis and Physico-Molecular Chemistry, Department of Chemistry, Faculty of Sciences Semlalia, Université Cadi Ayyad, BP PO Box 2390, Marrakech 40001, Morocco.

出版信息

Comput Biol Chem. 2024 Oct;112:108159. doi: 10.1016/j.compbiolchem.2024.108159. Epub 2024 Jul 23.

Abstract

In the present work, we describe the synthesis of new 1,3,4-thiadiazole derivatives from natural (R)-carvone in three steps including, dichloro-cyclopropanation, a condensation with thiosemicarbazide and then a 1,3-dipolar cycloaddition reaction with various nitrilimines. the targeted compounds were structurally identified by H & C NMR and HRMS analyses. The cytotoxic assay demonstrated that some synthesized novel compounds were potent on certain cancer cell lines. Molecular modeling studies were undertaken to rationalize the wet lab study results. Furthermore, molecular docking was performed to unveil the binding potential of the most active derivatives, 3a and 6c, to caspase-3 and COX-2. The stabilities of the protein-compound complexes obtained from the docking were evaluated using MD simulation. Furthermore, FMO and related parameters of the active compounds and their stereoisomers were examined through DFT studies. The docking study showed compound 6c had a higher binding potential than caspase-3. However, the binding strength of 6c was found to be less than that of the standard drug, doxorubicin, as it formed lower conventional hydrogen bonds. On the other hand, compound 3a had a higher binding potential to COX-2. However, the binding potential 3a was much lower than that of the standard COX-2 inhibitor, celecoxib. The MD simulation demonstrated that the caspase-3-6c complex was less stable than the caspase-3-doxorubicin complex. In contrast, the COX-2-3a complex was stable, and 3a was anticipated to remain inside the protein's binding pocket. The DFT study showed that 3a had higher chemical stability than 6c. The electron exchange capacity, chemical stability, and molecular orbital distributions of the stereoisomers of the active compounds were also found to be alike.

摘要

在本工作中,我们描述了从天然(R)-香芹酮通过三步合成新的 1,3,4-噻二唑衍生物,包括二氯环丙烷化、与硫代氨基脲缩合,然后与各种亚硝酰基进行 1,3-偶极环加成反应。目标化合物通过 H 和 C NMR 和 HRMS 分析进行了结构鉴定。细胞毒性试验表明,一些合成的新型化合物对某些癌细胞系具有很强的活性。进行了分子建模研究以合理化湿实验室研究结果。此外,进行了分子对接以揭示最活性衍生物 3a 和 6c 与 caspase-3 和 COX-2 的结合潜力。通过 MD 模拟评估了从对接获得的蛋白质-化合物复合物的稳定性。此外,通过 DFT 研究检查了活性化合物及其立体异构体的分子对接和相关参数。对接研究表明,化合物 6c 对 caspase-3 具有更高的结合潜力。然而,6c 的结合强度被发现低于标准药物阿霉素,因为它形成了较少的常规氢键。另一方面,化合物 3a 对 COX-2 具有更高的结合潜力。然而,3a 的结合潜力远低于标准 COX-2 抑制剂塞来昔布。MD 模拟表明,caspase-3-6c 复合物不如 caspase-3-阿霉素复合物稳定。相反,COX-2-3a 复合物是稳定的,预计 3a 将留在蛋白质的结合口袋内。DFT 研究表明,3a 比 6c 具有更高的化学稳定性。还发现活性化合物的立体异构体的电子交换能力、化学稳定性和分子轨道分布相似。

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