Fatima Shehnaz, Agarwal Subhash Mohan
a Bioinformatics Division , ICMR-National Institute of Cancer Prevention and Research , Noida , India.
J Recept Signal Transduct Res. 2018 Aug;38(4):299-306. doi: 10.1080/10799893.2018.1494740. Epub 2018 Sep 11.
EGFR is an important drug target in cancer. However, the ineffectiveness of first generation inhibitors due to the occurrence of a secondary mutation (T790M) results in the relapse of the disease. Identification of reversible inhibitors against T790M/L858R double mutants (TMLR) thus is a foremost requirement. In this study, various 2 D and 3 D Quantitative Structure-Activity Relationship models were built for amino-pyrimidine compounds with their known biological activity against TMLR mutants. The model developed using multiple linear regression statistical method via stepwise forward-backward variable selection technique showed the best results in terms of internal and external predictivity. The 2D-QSAR model indicated that the presence of electronegative atom, H-bond donors, moderate slogp, count of number of N atoms separated from O (T_N_O_4), 4pathClusterCount and number of S atom connected with two single bonds (SssSE-index), is required for increasing the inhibitory potential of compounds. Also, the 3D-QSAR model suggested that electronegative group at certain positions along with the presence of bulky groups is beneficial for good inhibition activity of the compounds. Thus, the QSAR models developed in the present work can be used for predicting the TMLR bioactivity of a new series of amino-pyrimidine derivatives. To the best of the author's knowledge, this is the first study which deals with the development of 2 D and 3D-QSAR models for double mutant TMLR inhibitors.
表皮生长因子受体(EGFR)是癌症治疗中的一个重要药物靶点。然而,由于继发性突变(T790M)的出现,第一代抑制剂失效,导致疾病复发。因此,鉴定针对T790M/L858R双突变体(TMLR)的可逆抑制剂是首要需求。在本研究中,针对已知对TMLR突变体具有生物活性的氨基嘧啶化合物,构建了各种二维和三维定量构效关系模型。通过逐步向前-向后变量选择技术,使用多元线性回归统计方法开发的模型在内部和外部预测性方面显示出最佳结果。二维定量构效关系模型表明,为了提高化合物的抑制潜力,需要存在电负性原子、氢键供体、适度的辛醇/水分配系数、与氧原子分隔的氮原子数(T_N_O_4)、4路径聚类计数以及与两个单键相连的硫原子数(SssSE指数)。此外,三维定量构效关系模型表明,特定位置的电负性基团以及大体积基团的存在有利于化合物具有良好的抑制活性。因此,本研究中开发的定量构效关系模型可用于预测一系列新的氨基嘧啶衍生物的TMLR生物活性。据作者所知,这是第一项针对双突变体TMLR抑制剂开发二维和三维定量构效关系模型的研究。