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In silico analyzing the molecular interactions of plant-derived inhibitors against E6AP p53 and c-Myc binding sites of HPV type 16 E6 oncoprotein

机译:在硅中分析HPV型16 E6癌蛋白的E6APP53和C-MYC结合位点的植物衍生抑制剂的分子相互作用

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摘要

Human papillomaviruses (HPV) are a group of strong human carcinogen viruses considered to be the fourth leading cause of mortality among women in the world. HPV is the most important cause of cervical cancer, which is the second most common cancer in women living in low and middle-income countries. To date, there is no effective cure for an ongoing HPV infection; therefore, it is required to investigate anticancer drugs against this life-threatening infection. In this study, we collected more than 100 plant-derived compounds with anti-cancer and antiviral potentials from a variety of papers. Smile formats of these compounds (ligand), were harvested from PubChem database and examined based on the absorption, distribution, metabolism, excretion, and toxicity properties by programs such as Swiss ADME, admetSAR, and pkCSM. Twenty compounds, which were likely to be the HPV16E6 inhibitor, were selected for docking calculations. We examined these natural inhibitors against the HPV16 E6 oncogenic protein. Eventually, three of these compounds were used as the most potent inhibitors (Ginkgetin ( ), Hypericin and Apigetrin) were probably used as the possible source of cancer treatment caused by E6 oncoprotein. In this research, we conducted the docking calculations by Autodock 4.2.6 software. Docking analysis showed the interaction of these plant-originated inhibitors with E6AP, p53, and Myc binding sites on the E6 oncoprotein which support the normal function of E6AP, p53, and Myc.
机译:人乳头瘤病毒(HPV)是一群强大的人类致癌病毒,被认为是世界上女性死亡率的第四个主要原因。 HPV是宫颈癌最重要的原因,这是生活在低收入和中等收入国家的妇女中最常见的癌症。迄今为止,持续的HPV感染没有有效治愈;因此,需要调查抗癌药物免受这种危及生命的感染。在这项研究中,我们从各种论文中收集了超过100种植物衍生的化合物,抗癌和抗病毒潜力。这些化合物(配体)的微笑形式从Pubchem数据库中收获,并根据瑞士Adme,票据,票据和PKCSM等课程检查的课程检查,毒性属性。选择20种可能是HPV16E6抑制剂的化合物用于对接计算。我们将这些天然抑制剂检查了对HPV16 E6致癌蛋白质的。最终,这些化合物中的三种用作最有效的抑制剂(Ginkgetin(),金刚素和Apigetrin)可能被用作由E6癌蛋白引起的癌症治疗的可能源。在本研究中,我们通过Autodock 4.2.6软件进行了对接计算。对接分析表明,这些植物源种抑制剂与E6AP,P53和MyC结合位点对E6癌蛋白的均结合位点的相互作用,其支持E6AP,P53和MYC的正常功能。

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