Department of Chemistry, Faculty of Mathematics and Natural Sciences, Universitas Padjadjaran, Sumedang, 45363, Indonesia.
Department of Food Sciences, Faculty of Food Sciences and Technology, Universiti Putra Malaysia, 43400 UPM, Serdang, Selangor, Malaysia.
J Mol Model. 2024 Jul 9;30(8):260. doi: 10.1007/s00894-024-06060-6.
Diabetes mellitus (DM) is a metabolic disorder disease that causes hyperglycemia conditions and associated with various chronic complications leading to mortality. Due to high toxicity of conventional diabetic drugs, the exploration of natural compounds as alternative diabetes treatments has been widely carried out. Previous in silico studies have highlighted berberine, a natural compound, as a promising alternative in antidiabetic therapy, potentially acting through various pathways, including the inhibition of the FOXO1 transcription factor in the gluconeogenesis pathway. However, the specific mechanism by which berberine interacts with FOXO1 remains unclear, and research in this area is relatively limited. Therefore, this study aims to determine the stability of berberine structure with FOXO1 based on RMSD, RMSF, binding energy, and trajectory analysis to determine the potential of berberine to inhibit the gluconeogenesis pathway. This research was conducted by in silico method with molecular docking using AutoDock4.2 and molecular dynamics study using Amber20, then visualized by VMD.
Docking between ligand and FOXO1 receptor was carried out with Autodock4.2. For molecular dynamics simulations, the force fields of DNA.OL15, protein.ff14SB, gaff2, and tip3p were used.
糖尿病(DM)是一种代谢紊乱疾病,会导致高血糖状态,并伴有各种慢性并发症,导致死亡率升高。由于传统糖尿病药物毒性较高,因此广泛探索天然化合物作为替代糖尿病治疗的方法。先前的计算机研究已经强调了小檗碱,一种天然化合物,作为抗糖尿病治疗的有前途的替代物,可能通过多种途径发挥作用,包括抑制糖异生途径中的 FOXO1 转录因子。然而,小檗碱与 FOXO1 相互作用的具体机制尚不清楚,并且该领域的研究相对有限。因此,本研究旨在基于均方根偏差 (RMSD)、均方根波动 (RMSF)、结合能和轨迹分析确定小檗碱与 FOXO1 的结构稳定性,以确定小檗碱抑制糖异生途径的潜力。这项研究是通过使用 AutoDock4.2 的计算机模拟方法进行分子对接和使用 Amber20 的分子动力学研究,然后使用 VMD 进行可视化来完成的。
使用 Autodock4.2 进行配体与 FOXO1 受体之间的对接。对于分子动力学模拟,使用了 DNA.OL15、protein.ff14SB、gaff2 和 tip3p 的力场。