Oyebamiji Abel K, Olujinmi Faith Eniola, Aworinde Halleluyah O, Oke David G, Akintelu Sunday Adewale, Akintayo Emmanuel T, Akintayo C O, Babalola Jonathan O
Industrial Chemistry Programme, Bowen University, Iwo, Osun State, Nigeria.
Good Health and Wellbeing Research Clusters (SDG 03), Bowen University, PMB 284 Iwo, Nigeria.
Data Brief. 2024 Jul 14;55:110724. doi: 10.1016/j.dib.2024.110724. eCollection 2024 Aug.
In this work, the biochemical activities of seven cyclic peptides were investigated using the approach. The materials used in this work were Spartan 14 for quantum chemical analysis, molecular operating environment software for molecular docking and ADMETSAR 2.0 for pharmacokinetic investigation. The calculated features obtained for each compound were explored and it was observed that the molecules used in this research have potential anti-human insulin-degrading enzyme activities. Also, (3S,6S,9S)-9-(()-1-(benzyloxy)ethyl)-6-methyl-3-(4-methylphenethyl)-1,4,7,10-tetraazacyclododecane-2,5,8,11-tetraone (compound 2) with highest binding affinity (-7.95349026 kcal/mol) possess utmost ability to inhibit human insulin-degrading enzyme (PDB id: 2g56) than other investigated compounds and acarbose (referenced compound). The pharmacokinetic analysis for compound 2 was examined and compared to the predicted report for the referenced compound.
在本研究中,采用该方法对七种环肽的生化活性进行了研究。本研究中使用的材料包括用于量子化学分析的Spartan 14、用于分子对接的分子操作环境软件以及用于药代动力学研究的ADMETSAR 2.0。对每种化合物获得的计算特征进行了探索,观察到本研究中使用的分子具有潜在的抗人胰岛素降解酶活性。此外,具有最高结合亲和力(-7.95349026千卡/摩尔)的(3S,6S,9S)-9-((S)-1-(苄氧基)乙基)-6-甲基-3-(4-甲基苯乙基)-1,4,7,10-四氮杂环十二烷-2,5,8,11-四酮(化合物2)比其他研究的化合物和阿卡波糖(参考化合物)具有最大的抑制人胰岛素降解酶(PDB编号:2g56)的能力。对化合物2进行了药代动力学分析,并与参考化合物的预测报告进行了比较。