通过抑制Sirtuin-1(SIRT1)候选抗癌药物硫脲衍生物的计算研究

R. Ruswanto, R. Mardianingrum, Arry Yanuar
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引用次数: 5

摘要

癌症是一种由身体器官或组织中异常细胞的不受控制的生长引起的疾病,这是世界上第二大死亡原因。Sirtuin-1是发现和开发抗癌药物的靶点之一。SIRT1可以作为肿瘤抑制剂或肿瘤启动子,这取决于其在特定信号通路中的靶点或特定癌症。本研究旨在研究硫脲衍生物通过抑制组蛋白脱乙酰酶与SIRT1(PDB ID:4I5I)的相互作用。三种硫脲衍生物与受体的分子对接(MGLTools.1.5.6)和分子动力学(Desmond 2019)已在计算机上进行了研究。此外,还测试了利平斯基五律的药代动力学参数、毒性和选择。分子对接结果表明,与其他硫脲衍生物相比,化合物b([2-(甲基氨基甲硫基氨基甲酰基)苯基]苯甲酸酯)的∆G值最低,为−9.29 kcal/mol,KI值为0.156µM,并通过30 ns的分子动力学测试得到证明,在相互作用中起积极作用的氨基酸包括残基PheA:297。就药代动力学和毒性而言,化合物b优于天然配体。通过进一步的研究,预测化合物b将被用作抗癌候选物。
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Computational Studies of Thiourea Derivatives as Anticancer Candidates through Inhibition of Sirtuin-1 (SIRT1)
Cancer is a disease that starts from the uncontrolled growth of abnormal cells in the organs or tissues of the body, which is the second leading cause of death in the world. One of the targets in discovering and developing anticancer drugs is Sirtuin-1. SIRT1 can act as a tumor suppressor or tumor promoter depending on its target in a particular signalling pathway or on particular cancer. This study aimed to study the interaction of a thiourea derivative with SIRT1 (PDB ID:4I5I) through its inhibition of histone deacetylase. Research has been carried out in silico with molecular docking (MGLTools.1.5.6) and molecular dynamics (Desmond 2019) of three thiourea derivatives to the receptor. In addition, pharmacokinetic parameters, toxicity, and selection of Lipinski's Rule of Five were also tested. Molecular docking results showed that compound b ([2-(methylcarbamothioylcarbamoyl)phenyl]benzoate) had the lowest ∆G value of −9.29 kcal/mol with a KI value of 0.156 µM compared to other thiourea derivatives and was proven by molecular dynamics tests for 30 ns and amino acids that play an active role in the interaction include the residue PheA:297. In terms of pharmacokinetics and toxicity, compound b is better than natural ligands. Compound b is predicted to be used as an anticancer candidate through further research.
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