Traf2和nck相互作用激酶(TNIK)新型天然化合物抑制剂的计算研究

Lushun Ma, Rui Li, Zhiwei Yao, Bo Wang, Yong Liu, Chun-xia Liu, Heng Wang, Shuxian Chen, Daqing Sun
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摘要

Traf2和nck相互作用激酶(TNIK)是Wnt/β-catenin信号通路的下游分子。作为β-catenin/T-cell factor 4转录复合体的激活激酶,能充分激活Wnt信号,促进肿瘤细胞的生长和侵袭。我们进行了计算机辅助虚拟筛选和一系列分析,以寻找潜在的TNIK抑制剂。首先,利用LibDock对天然小分子进行分子对接。然后对得分较高的前80名小分子进行ADME(吸附、分布、代谢和排泄)分析和毒性预测。此外,为了进一步确定tnik -配体的亲和力和结合机制,我们对药效团进行了分析,并使用CDOCKER进行更精确的分子对接。最后,采用分子动力学模拟方法评价了自然环境下受体-配体复合物的稳定性。结果表明,天然小分子(ZINC000040976869和ZINC000008214460)与TNIK具有高亲和力和低相互作用能。预计它们具有优异的药理学特性,如高血浆蛋白结合能力和水溶性,无肝毒性,无血脑屏障通透性,耐细胞色素P450 2D6 (CYP2D6)。此外,它们具有较小的啮齿动物致癌性、AMES诱变性和发育毒性潜力。分子动力学模拟表明,两种化合物在不同时间节点上均能实现势能和均方根偏差(RMSD)的稳定。本研究证明ZINC000040976869和ZINC000008214460是理想的靶向抑制TNIK的先导化合物。这些化合物为开发新的结直肠癌靶向药物提供了有价值的思路和信息。
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Computational study on new natural compound inhibitors of Traf2 and Nck-interacting kinase (TNIK)
Traf2 and Nck-interacting kinase (TNIK) is the downstream molecule of Wnt/β-catenin signal pathway. As the activation kinase of β-catenin/T-cell factor 4 transcription complex, it can fully activate Wnt signalling and promote the growth and invasion of tumor cells. We conducted computer-assisted virtual screening and a series of analyses to find potential inhibitors of TNIK. First, LibDock was used for molecular docking of natural small molecules. Then, ADME (Adsorption, Distribution, Metabolism and Excretion) analysis and toxicity prediction were performed on the top 80 small molecules which have higher scores. Additionally, in order to further determine the affinity and binding mechanism of TNIK-ligands, we analyzed the pharmacophores and used CDOCKER for more accurate molecular docking. Last but not least, molecular, dynamics simulation was used to evaluate the stability of receptor-ligand complexes in natural environment. The results showed that natural small molecules (ZINC000040976869 and ZINC000008214460) had high affinity and low interaction energy with TNIK. They were predicted to have excellent pharmacological properties, such as high plasma protein binding capacity and water solubility, no hepatotoxicity, no blood-brain barrier permeability and tolerant with cytochrome P450 2D6 (CYP2D6). In addition, they have less rodent carcinogenicity, AMES mutagenicity, and developmental toxicity potential. Molecular dynamics simulations showed that the two compounds could achieve the stability of potential energy and Root-Mean-Square Deviation (RMSD) at different time nodes. This study proves that ZINC000040976869 and ZINC000008214460 are ideal lead compounds with inhibition targeting to TNIK. These compounds provide valuable ideas and information for the development of new colorectal cancer targeting drugs.
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