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分子建模模拟研究揭示了针对 HPV E6 蛋白的新潜在抑制剂。

Molecular modeling simulation studies reveal new potential inhibitors against HPV E6 protein.

机构信息

Centro de Nanociencias y Nanotecnología, Universidad Nacional Autonoma de Mèxico, Ensenada, Baja California, México.

Departamento de Ciencias Químicas, Facultad de Ciencias Exactas, Universidad Andres Bello, Sede Concepción, Chile.

出版信息

PLoS One. 2019 Mar 15;14(3):e0213028. doi: 10.1371/journal.pone.0213028. eCollection 2019.

Abstract

High-risk strains of human papillomavirus (HPV) have been identified as the etiologic agent of some anogenital tract, head, and neck cancers. Although prophylactic HPV vaccines have been approved; it is still necessary a drug-based treatment against the infection and its oncogenic effects. The E6 oncoprotein is one of the most studied therapeutic targets of HPV, it has been identified as a key factor in cell immortalization and tumor progression in HPV-positive cells. E6 can promote the degradation of p53, a tumor suppressor protein, through the interaction with the cellular ubiquitin ligase E6AP. Therefore, preventing the formation of the E6-E6AP complex is one of the main strategies to inhibit the viability and proliferation of infected cells. Herein, we propose an in silico pipeline to identify small-molecule inhibitors of the E6-E6AP interaction. Virtual screening was carried out by predicting the ADME properties of the molecules and performing ensemble-based docking simulations to E6 protein followed by binding free energy estimation through MM/PB(GB)SA methods. Finally, the top-three compounds were selected, and their stability in the E6 docked complex and their effect in the inhibition of the E6-E6AP interaction was corroborated by molecular dynamics simulation. Therefore, this pipeline and the identified molecules represent a new starting point in the development of anti-HPV drugs.

摘要

高危型人乳头瘤病毒(HPV)已被确定为某些肛门生殖器、头部和颈部癌症的病因。尽管已批准预防性 HPV 疫苗;但仍需要针对感染及其致癌作用的药物治疗。E6 癌蛋白是 HPV 最受研究的治疗靶点之一,它被确定为 HPV 阳性细胞中细胞永生化和肿瘤进展的关键因素。E6 通过与细胞泛素连接酶 E6AP 的相互作用促进肿瘤抑制蛋白 p53 的降解。因此,阻止 E6-E6AP 复合物的形成是抑制感染细胞活力和增殖的主要策略之一。在此,我们提出了一种用于鉴定 E6-E6AP 相互作用的小分子抑制剂的计算流程。通过预测分子的 ADME 特性并对 E6 蛋白进行基于集合的对接模拟,然后通过 MM/PB(GB)SA 方法估算结合自由能,进行虚拟筛选。最后,选择了前三名化合物,并通过分子动力学模拟验证了它们在 E6 对接复合物中的稳定性及其对 E6-E6AP 相互作用的抑制作用。因此,该流水线和鉴定出的分子代表了开发抗 HPV 药物的新起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5d5f/6420176/a2ebd382b606/pone.0213028.g001.jpg

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