Al-Fahad Dhurgham, Ropón-Palacios G, Omoboyowa Damilola A, Singh Gagandeep, Patil Rajesh B
Department of Pharmaceutical Science, College of Pharmacy, University of Thi-Qar, Nasiriyah, Iraq.
Department of Physics, IBILCE, São Paulo State University (UNESP), RuaCristóvão Colombo, 2265, São José Do Rio Preto, SP, CEP 15054-000, Brazil.
Mol Divers. 2025 Apr;29(2):1525-1539. doi: 10.1007/s11030-024-10931-8. Epub 2024 Jul 20.
Serine/threonine kinase 16 (STK 16) is involved in many facets of cellular regulation; activation of STK 16 plays a crucial role in the migration of cancer cells. Therefore, it is a novel target for the discovery of anticancer agents. Herein, virtual screening and dynamics simulation were used to screen a large library of natural compounds against STK 16 using Schrodinger suit 2021-2 and GROMACS 2021.6. The results predicted five molecules with high binding affinity against the target, with NPC132329 (Arcyriaflavin C) and NPC160898 having higher binding affinity and molecular mechanics generalized born surface area (MM/GBSA), suggesting that it is better than the standard inhibitor. The molecular dymanics (MD) simulation studies showed that the STK 16-NPC132329 complex has the lowest root mean square deviation, and STK 16-NPC160898 was the most stable compared with the standard drug and selective STK 16 inhibitor. The minimal fluctuation was observed in the STK 16-NPC132329 and STK 16-NPC160898 complexes based on the root mean square fluctuation trajectory with NPC132329 and NPC160898 forming 2 and 3 hydrogen bonds respectively with the amino acid residue of the target's binding site. Overall, NPC132329 and NPC160898 are better STK 16 inhibitors than the standard drug and selective inhibitor, which can be further studied to discover novel anticancer drugs.
丝氨酸/苏氨酸激酶16(STK 16)参与细胞调节的多个方面;STK 16的激活在癌细胞迁移中起关键作用。因此,它是发现抗癌药物的一个新靶点。在此,利用Schrodinger suit 2021-2和GROMACS 2021.6对大量天然化合物库进行虚拟筛选和动力学模拟,以筛选针对STK 16的化合物。结果预测出5种与该靶点具有高结合亲和力的分子,其中NPC132329(刺孢黄素C)和NPC160898具有更高的结合亲和力和分子力学广义Born表面积(MM/GBSA),表明其优于标准抑制剂。分子动力学(MD)模拟研究表明,STK 16-NPC132329复合物的均方根偏差最低,与标准药物和选择性STK 16抑制剂相比,STK 16-NPC160898最稳定。基于均方根波动轨迹观察到,STK 16-NPC132329和STK 16-NPC160898复合物的波动最小,其中NPC132329和NPC160898分别与靶点结合位点的氨基酸残基形成2个和3个氢键。总体而言,NPC132329和NPC160898是比标准药物和选择性抑制剂更好的STK 16抑制剂,可进一步研究以发现新型抗癌药物。