Tajiani Faezeh, Ahmadi Shahin, Lotfi Shahram, Kumar Parvin, Almasirad Ali
Department of Medicinal Chemistry, Faculty of Pharmacy, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.
Department of Pharmaceutical Chemistry, Faculty of Pharmaceutical Chemistry, Tehran Medical Sciences, Islamic Azad University, Tehran, Iran.
BMC Chem. 2023 Jul 26;17(1):87. doi: 10.1186/s13065-023-00999-y.
The QSAR models are employed to predict the anti-proliferative activity of 81 derivatives of flavonol against prostate cancer using the Monte Carlo algorithm based on the index of ideality of correlation (IIC) criterion. CORAL software is employed to design the QSAR models. The molecular structures of flavonols are demonstrated using the simplified molecular input line entry system (SMILES) notation. The models are developed with the hybrid optimal descriptors i.e. using both SMILES and hydrogen-suppressed molecular graph (HSG). The QSAR model developed for split 3 is selected as a prominent model ([Formula: see text]= 0.727, [Formula: see text]= 0.628, [Formula: see text]= 0.642, and [Formula: see text]=0.615). The model is interpreted mechanistically by identifying the characteristics responsible for the promoter of the increase or decrease. The structural attributes as promoters of increase of pIC were aliphatic carbon atom connected to double-bound (C…=…, aliphatic oxygen atom connected to aliphatic carbon (O…C…), branching on aromatic ring (c…(…), and aliphatic nitrogen (N…). The pIC of eight natural flavonols with pIC more than 4.0, were predicted by the best model. The molecular docking is also performed for natural flavonols on the PC-3 cell line using the protein (PDB: 3RUK).
使用基于理想相关指数(IIC)标准的蒙特卡罗算法,QSAR模型用于预测81种黄酮醇衍生物对前列腺癌的抗增殖活性。采用CORAL软件设计QSAR模型。黄酮醇的分子结构使用简化分子线性输入规范(SMILES)表示法进行展示。这些模型是用混合最优描述符开发的,即同时使用SMILES和氢抑制分子图(HSG)。为分割3开发的QSAR模型被选为突出模型([公式:见原文]=0.727,[公式:见原文]=0.628,[公式:见原文]=0.642,以及[公式:见原文]=0.615)。通过识别导致增加或减少的特征,对该模型进行机理解释。作为pIC增加促进因素的结构属性有连接到双键的脂肪族碳原子(C…=…)、连接到脂肪族碳的脂肪族氧原子(O…C…)、芳环上的支链(c…(…)以及脂肪族氮(N…)。用最佳模型预测了8种pIC大于4.0的天然黄酮醇的pIC。还使用蛋白质(PDB:3RUK)在PC - 3细胞系上对天然黄酮醇进行了分子对接。