Ramadhan Dwi Syah Fitra, Dewi Ratnasari, Asikin Asyhari, Daswi Dwi Rachmawaty, Adam Adriyani, Fakih Taufik Muhammad
Department of Pharmacy, Poltekkes Kemenkes Makassar, South Sulawesi, Indonesia.
Department of Nutrition and Dietetics, Poltekkes Kemenkes Makassar, South Sulawesi, Indonesia.
Curr Res Struct Biol. 2024 Jan 5;7:100125. doi: 10.1016/j.crstbi.2024.100125. eCollection 2024.
The EGFR-C797S resistance mutation to third-generation drugs has been overcome by fourth-generation inhibitors, allosteric inhibitors, namely EAI045 and has reached phase 3 clinical trials, so the Allosteric Site is currently an attractive target for development. In this study, researchers are interested in knowing the activity of metabolite compounds from marine natural ingredients Clathria Sp. against the Allosteric Site of EGFR computationally. The methods used include molecular docking using Autodock4 software and Molecular Dynamics simulation performed using GROMACS software. The research began with the preparation of metabolite samples from Clathria Sp. through the KnapSack database site and the preparation of EGFR receptors that have been complexed with allosteric inhibitors, namely proteins with PDB code 5D41. Each compound was docked to the Allosteric Site of the natural ligand and then molecular dynamics simulations were performed on the compound with the best docking energy compared to the natural ligand. From the docking results, the Clathrin_A compound showed the lowest binding energy compared to other metabolites, and the value was close to the natural ligand. Then from the molecular dynamics results, the clathrin_A compound shows good stability and resembles the natural ligand, which is analyzed through RMSD, RMSF, SASA, Rg, and PCA, and shows the binding free energy from MMPBSA analysis which is close to the natural ligand. It can be concluded, Clathrin_A compound has potential as an allosteric inhibitor.
第四代抑制剂,即变构抑制剂EAI045,已克服了表皮生长因子受体(EGFR)-C797S对第三代药物的耐药性突变,并且已进入3期临床试验,因此变构位点目前是一个具有吸引力的开发靶点。在本研究中,研究人员有兴趣通过计算机计算了解来自海洋天然成分Clathria Sp.的代谢物化合物对EGFR变构位点的活性。所使用的方法包括使用Autodock4软件进行分子对接以及使用GROMACS软件进行分子动力学模拟。研究首先通过KnapSack数据库网站制备Clathria Sp.的代谢物样品,并制备已与变构抑制剂复合的EGFR受体,即PDB代码为5D41的蛋白质。将每种化合物对接至天然配体的变构位点,然后对与天然配体相比具有最佳对接能量的化合物进行分子动力学模拟。从对接结果来看,与其他代谢物相比,网格蛋白_A化合物显示出最低的结合能,且该值接近天然配体。然后从分子动力学结果来看,网格蛋白_A化合物显示出良好的稳定性且类似于天然配体,这通过均方根偏差(RMSD)、均方根波动(RMSF)、溶剂可及表面积(SASA)、回旋半径(Rg)和主成分分析(PCA)进行分析,并通过MMPBSA分析显示出接近天然配体的结合自由能。可以得出结论,网格蛋白_A化合物具有作为变构抑制剂的潜力。