首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Identification of potential tumour-associated carbonic anhydrase isozyme IX inhibitors: atom-based 3D-QSAR modelling, pharmacophore-based virtual screening and molecular docking studies
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Identification of potential tumour-associated carbonic anhydrase isozyme IX inhibitors: atom-based 3D-QSAR modelling, pharmacophore-based virtual screening and molecular docking studies

机译:鉴定潜在肿瘤相关碳酸酐酶同工酶IX抑制剂:基于原子的3D QSAR建模,基于药物的虚拟筛选和分子对接研究

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摘要

Tumour hypoxia results in dramatic changes in the gene expression, proliferation and survival of tumour cells. The tumour cells shift towards anaerobic glycolysis which results in change of pH in their microenvironment. In response to this stress, over expression of carbonic anhydrase IX (CA IX) genes is observed in many solid tumours. So, selective inhibition of CA IX can be a promising target for anti-cancer drugs. In this work in silico tools like atom-based 3D-QSAR modelling, pharmacophore-based virtual screening and molecular docking were used to identify potential CA IX inhibitors. Based on the training set used in the QSAR model, twenty pharmacophore models were generated. Out of these, HHHR_1, AHHR_1, DHHHR_1, AHHHR_1 model was used to screen a database of 1,50,000 compounds retrieved from ZINC 15 database. R-2 and Q(2) was 0.9864 and 0.8799, respectively, for the developed QSAR model. 163 compounds showed a phase screen score above 2.4 in which ZINC02260669 was the highest ranked (screen score, 2.852058) compound in all the four models. Built QSAR model was used to predict the activity of all these 163 compounds and ZINC72370966 showed the highest predicted activity with pKi value of 7.649. These compounds were docked against CA IX (human) protein (PDB ID 5FL6) and molecular docking results showed favourable binding interactions for the best ten identified hits. This work gives design insights and some potential scaffolds which can be developed as CA IX inhibitors. Communicated by Ramaswamy H. Sarma
机译:肿瘤缺氧导致基因表达,增殖和肿瘤细胞存活的显着变化。肿瘤细胞转向厌氧糖醇分解,导致其微环境中pH的变化。响应于这种应力,在许多实体瘤中观察到碳酸酐酶IX(CaI10)基因的表达。因此,选择性抑制Ca IX可以是抗癌药物的有希望的靶标。在基于原子的3D QSAR建模中,基于原子的3D-QSAR建模的这项工作中,用于鉴定潜在的CA IX抑制剂。基于QSAR模型中使用的训练集,产生了二十个药程长模型。除此之外,HHHR_1,AHHR_1,DHHHR_1,AHHHR_1模型用于筛选从ZINC 15数据库检索的1,50,000个化合物的数据库。 R-2和Q(2)分别为0.9864和0.8799,用于开发的QSAR模型。 163种化合物显示出高于2.4的相筛分评分,其中锌02260669是所有四种模型中排名最高的(筛选得分,2.852058)化合物。建造的QSAR模型用于预测所有这些163种化合物和锌72370966的活性,显示出最高的预测活动,PKI值为7.649。将这些化合物对接对Ca IX(人)蛋白(PDB ID 5FL6)和分子对接结果表现出最佳的十个鉴定的命中的结合相互作用。这项工作提供了设计见解和一些可作为Ca IX抑制剂开发的潜在支架。由Ramaswamy H. Sarma沟通

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