Wibowo Syahputra, Widyarti Sri, Sabarudin Akhmad, Soeatmadji Djoko Wahono, Sumitro Sutiman Bambang
Department of Biology, Faculty of Mathematics and Natural Sciences, Brawijaya University Jl. Veteran, Malang 65145, East Java, Indonesia.
Department of Chemistry, Faculty of Mathematics and Natural Sciences, Brawijaya University, Jl. Veteran, Malang 65145, East Java, Indonesia.
Heliyon. 2021 Mar 24;7(3):e06548. doi: 10.1016/j.heliyon.2021.e06548. eCollection 2021 Mar.
Glycated human serum albumin (gHSA) undergoes conformational changes of proteins caused by free radicals. The glycation process results in a reduced ability of albumin as an endogenous scavenger in diabetes mellitus type 2 (T2DM) patients. Astaxanthin (ASX) has been shown to prevent gHSA from experiencing unfolding events and improve protein stability of gHSA and HSA through molecular dynamics. In this study, astaxanthin is complexed with transition metal ions such as copper (Cu) and zinc (Zn) in two modes (M) and (2M). Complexing astaxanthin with Cu and Zn is expected to increase astaxanthin's ability as an endogenous scavenger than in native form. This research aims to characterize the antiradical property of ASX, ASX-Cu and ASX-2Cu, ASX-Zn, and ASX-2Zn with density functional theory (DFT) and to compare the capability to prevent conformational changes on glycated albumin through molecular dynamics simulation. DFT as implemented in Gaussian 09W, was used for all calculations. Analysis of data using GaussView 6.0. LANL2D2Z basis set and B3LYP density functional used for frequency analysis and optimization. The AutoDock Vina implemented in PyRx 0.8 is used to and receptor-ligand interactions analysis with the DS 2016 Client. YASARA for molecular dynamic simulation with 15,000 ps as running time. DFT analyzes such as energy gaps, HOMO, and LUMO patterns and electronic properties have shown that ASX-metal ions complex is better than ASX in native state as antioxidants. These results are also supported by the molecular dynamics simulation (RMSD backbone, RMSDr, RMSFr, and movie visualization), where the addition of ASX-metal ions complex on gHSA are better than ASX as a single compound in preventing gHSA from possible unfolding and maintaining protein molecule stability.
糖化人血清白蛋白(gHSA)会发生由自由基引起的蛋白质构象变化。糖化过程导致白蛋白作为内源性清除剂的能力在2型糖尿病(T2DM)患者中降低。虾青素(ASX)已被证明可防止gHSA发生解折叠事件,并通过分子动力学提高gHSA和HSA的蛋白质稳定性。在本研究中,虾青素以两种模式(M)和(2M)与过渡金属离子如铜(Cu)和锌(Zn)络合。预计虾青素与Cu和Zn络合后作为内源性清除剂的能力会比其天然形式有所增强。本研究旨在用密度泛函理论(DFT)表征ASX、ASX-Cu和ASX-2Cu、ASX-Zn以及ASX-2Zn的抗自由基特性,并通过分子动力学模拟比较它们防止糖化白蛋白构象变化的能力。高斯09W中实现的DFT用于所有计算。使用GaussView 6.0分析数据。LANL2D2Z基组和B3LYP密度泛函用于频率分析和优化。PyRx 0.8中实现的AutoDock Vina用于与DS 2016客户端进行受体-配体相互作用分析。YASARA用于分子动力学模拟,运行时间为15000皮秒。DFT分析如能隙、最高占据分子轨道(HOMO)和最低未占据分子轨道(LUMO)模式以及电子性质表明,ASX-金属离子络合物作为抗氧化剂比天然状态的ASX更好。分子动力学模拟(主链均方根偏差、RMSDr、RMSFr和动画可视化)也支持这些结果,即在防止gHSA可能的解折叠和维持蛋白质分子稳定性方面,向gHSA中添加ASX-金属离子络合物比添加单一化合物ASX效果更好。