Herdiansyah Mochammad A, Rizaldy Rafli, Alifiansyah Mochamad Rt, Fetty Amelia Jt, Anggraini Dhea, Agustina Niken, Alfian Fariz R, Setianingsih Primanita Nm, Elfianah Verah, Aulia Halimatus S, Putra Justitia Erp, Ansori Arif Nm, Kharisma Viol D, Jakhmola Vikash, Purnobasuki Hery, Pratiwi Intan A, Rebezov Maksim, Shmeleva Svetlana, Bonkalo Tatyana, Kovalchuk Dmitriy F, Zainul Rahadian
Department of Biology, Faculty of Science and Technology, Universitas Airlangga, Surabaya, Indonesia.
Department of Chemistry, Faculty of Science and Technology, Universitas Airlangga, Surabaya, Indonesia.
Narra J. 2024 Aug;4(2):e775. doi: 10.52225/narra.v4i2.775. Epub 2024 Aug 14.
Ferulic acid (4-hydroxy-3-methoxycinnamic acid) is a phytochemical compound that is commonly found in conjugated forms within mono-, di-, polysaccharides and other organic compounds in cell walls of grain, fruits, and vegetables. This compound is highly abundant in the palm oil waste. The aim of the study was to predict the anticancer activity of ferulic acid against the breast cancer cell lines (MCF-7) receptors through a computational analysis. MCF-7 receptors with PDB IDs of 1R5K, 2IOG, 4IV2, 4IW6, 5DUE, 5T92, and 5U2B were selected based on the Simplified Molecular Input Line Entry System (SMILES) similarity of the native ligand. Thereafter, the protein was prepared on Chimera 1.16 and docked with ferulic acid on Autodock Vina 1.2.5. The ligand-protein complex interaction was validated by computing the root mean square fluctuation (RMSF) and radius of gyration (Rg) through molecular dynamic simulation. In addition, an absorption, distribution, metabolism, excretion, and toxicity (ADMET) prediction was performed on ferulic acid using the pkCSM platform. The molecular docking revealed that the ferulic acid could interact with all receptors as indicated by the affinity energy <-5 kcal/mol. The compound had the most optimum interaction with receptor 2IOG (affinity energy=-6.96 kcal/mol), involving hydrophobic interaction (n=12) and polar hydrogen interaction (n=4). The molecular dynamic simulation revealed that the complex had an RMSF of 1.713 Å with a fluctuation of Rg value around 1.000 Å. The ADMET properties of ferulic acid suggested that the compound is an ideal drug candidate. In conclusion, this study suggested that ferulic acid, which can be isolated from palm oil waste, has the potential to interact with MCF-7 receptors.
阿魏酸(4-羟基-3-甲氧基肉桂酸)是一种植物化学化合物,通常以共轭形式存在于谷物、水果和蔬菜细胞壁中的单糖、二糖、多糖及其他有机化合物中。这种化合物在棕榈油废料中含量很高。本研究的目的是通过计算分析预测阿魏酸对乳腺癌细胞系(MCF-7)受体的抗癌活性。基于天然配体的简化分子输入线输入系统(SMILES)相似性,选择了PDB ID为1R5K、2IOG、4IV2、4IW6、5DUE、5T92和5U2B的MCF-7受体。此后,在Chimera 1.16上对蛋白质进行制备,并在Autodock Vina 1.2.5上与阿魏酸进行对接。通过分子动力学模拟计算均方根波动(RMSF)和回转半径(Rg),验证配体-蛋白质复合物的相互作用。此外,使用pkCSM平台对阿魏酸进行吸收、分布、代谢、排泄和毒性(ADMET)预测。分子对接显示,阿魏酸可以与所有受体相互作用,亲和能<-5 kcal/mol。该化合物与受体2IOG的相互作用最为最佳(亲和能=-6.96 kcal/mol),涉及疏水相互作用(n=12)和极性氢相互作用(n=4)。分子动力学模拟显示,该复合物的RMSF为1.713 Å,Rg值波动在1.000 Å左右。阿魏酸的ADMET性质表明该化合物是理想的候选药物。总之,本研究表明,可从棕榈油废料中分离得到的阿魏酸具有与MCF-7受体相互作用的潜力。