Nadar Sahaya, Borkar Maheshkumar R, Khan Tabassum
Department of Pharmaceutical Chemistry, SVKM's Dr. Bhanuben Nanavati College of Pharmacy, Mumbai, India.
Department of Pharmaceutical Chemistry, St. John Institute of Pharmacy and Research, Palghar, India.
J Biomol Struct Dyn. 2024 Feb 14:1-11. doi: 10.1080/07391102.2024.2314266.
Focal adhesion kinase (FAK) is an enzyme of paramount importance as it is involved in several critical roles, which are linked to proliferation of cancer cells. FAK is quintessential for cancer cell mitigation, adhesion and survival, downregulation of which interferes with the growth of cancer cells. The expression of FAK is elevated in breast cancer, hepatocellular carcinomas, neuroblastoma cells, demonstrating the need for FAK inhibitors as a potential treatment. Based on an drug screen, the study aimed to identify potential FAK inhibitors. 3180 molecules retrieved from the Zinc database comprising biogenic molecules, FDA-approved drugs and compounds in clinical trials were screened against the FAK enzyme (PDB:2ETM). The XP docking study of the best 51 ligands revealed that ZINC02033589 (Silymarin) showed good binding to FAK with -10.97 kcal/mol dock score followed by ZINC00518397 with -8.23 kcal/mol and ZINC03831112 - 8.07 kcal/mol. The interactions of the top three ligands with FAK were further validated by molecular dynamic simulation study of 100 ns and MM-GBSA calculations. The ΔG of binding of ZINC02033589, ZINC00518397 and ZINC03831112 was found to be -59.09, -45.08 and -48.53 kcal/mol respectively. The study established the fact that among the three molecules, ZINC02033589 showed good stability and binding towards FAK. These results could usher in the development of potential FAK inhibitor entities, that could be persuaded and substantiated by the molecules identified in this study for subsequent synthetic and bioactivity research studies.
粘着斑激酶(FAK)是一种极为重要的酶,因为它参与了多个关键作用,这些作用与癌细胞的增殖相关。FAK对于癌细胞的迁移、黏附和存活至关重要,其下调会干扰癌细胞的生长。FAK在乳腺癌、肝细胞癌、神经母细胞瘤细胞中的表达升高,这表明需要FAK抑制剂作为一种潜在的治疗方法。基于药物筛选,该研究旨在鉴定潜在的FAK抑制剂。从锌数据库中检索出的3180个分子,包括生物源分子、FDA批准的药物和临床试验中的化合物,针对FAK酶(PDB:2ETM)进行了筛选。对最佳的51种配体进行的XP对接研究表明,ZINC02033589(水飞蓟宾)与FAK表现出良好的结合,对接分数为-10.97 kcal/mol,其次是ZINC00518397,对接分数为-8.23 kcal/mol,ZINC03831112为-8.07 kcal/mol。通过100 ns的分子动力学模拟研究和MM-GBSA计算,进一步验证了前三种配体与FAK的相互作用。发现ZINC02033589、ZINC00518397和ZINC03831112的结合自由能分别为-59.09、-45.08和-48.53 kcal/mol。该研究证实了在这三种分子中,ZINC02033589对FAK表现出良好的稳定性和结合性。这些结果可能会推动潜在FAK抑制剂实体的开发,本研究中鉴定出的分子可用于后续的合成和生物活性研究,以支持和证实这一开发。