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Novel urushiol derivatives as HDAC8 inhibitors: rational design, virtual screening, molecular docking and molecular dynamics studies

机译:新型尿精衍生物作为HDAC8抑制剂:理性设计,虚拟筛选,分子对接和分子动力学研究

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Three series of novel urushiol derivatives were designed by introducing a hydroxamic acid moiety into the tail of an alkyl side chain and substituents with differing electronic properties or steric bulk onto the benzene ring and alkyl side chain. The compounds' binding affinity toward HDAC8 was screened by Glide docking. The highest-scoring compounds were processed further with molecular docking, MD simulations, and binding free energy studies to analyze the binding modes and mechanisms. Ten compounds had Glide scores of -8.2 to -10.2, which revealed that introducing hydroxy, carbonyl, amino, or methyl ether groups into the alkyl side chain or addition of -F, -Cl, sulfonamide, benzamido, amino, or hydroxy substituents on the benzene ring could significantly increase binding affinity. Molecular docking studies revealed that zinc ion coordination, hydrogen bonding, and hydrophobic interactions contributed to the high calculated binding affinities of these compounds toward HDAC8. MD simulations and binding free energy studies showed that all complexes possessed good stability, as characterized by low RMSDs, low RMSFs of residues, moderate hydrogen bonding and zinc ion coordination and low values of binding free energies. Hie147, Tyr121, Phe175, Hip110, Phe119, Tyr273, Lys21, Gly118, Gln230, Leu122, Gly269, and Gly107 contributed favorably to the binding; and Van der Waals and electrostatic interactions provided major contributions to the stability of these complexes. These results show the potential of urushiol derivatives as HDAC8 binding lead compounds, which have great therapeutic potential in the treatment of various malignancies, neurological disorders, and human parasitic diseases.
机译:通过将羟肟酸部分引入烷基侧链的尾部和具有不同电子性质或空间体积的苯环和烷基侧链上的取代基来设计三系列新的尿精衍生物。通过滑动对接筛选化合物对HDAC8的结合亲和力。通过分子对接,MD模拟和结合自由能研究,进一步加工最高评分化合物以分析结合模式和机制。十种化合物具有-8.2至-10.2的滑动评分,显示将羟基,羰基,氨基或甲基醚基引入烷基侧链或加入-f,-Cl,磺酰胺,苯甲酰氨基,氨基或羟基取代基苯环可以显着增加结合亲和力。分子对接研究表明,锌离子配位,氢键和疏水相互作用导致这些化合物对HDAC8的高计算结合亲和力。 MD模拟和绑定能量研究表明,所有复合物都具有良好的稳定性,其特征在于低RMSD,残基的低RMSFS,中等氢键和锌离子配位以及粘合剂的低值。 HIE147,TYR121,PHE175,HIP110,PHE119,TYR273,LYS21,GLY118,GLN230,LEU122,GLY269和GLY107有利地为结合贡献;和van der Waals和静电相互作用为这些复合物的稳定性提供了主要贡献。这些结果表明毛细血管衍生物作为HDAC8结合铅化合物的潜力,其在治疗各种恶性肿瘤,神经疾病和人寄生疾病方面具有很大的治疗潜力。

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