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一种使用知名小蛋白支架进行人白细胞介素-10(hIL-10)和爱泼斯坦-巴尔病毒白细胞介素-10(ebvIL-10)抑制剂计算机辅助设计的工作流程。

A workflow for in silico design of hIL-10 and ebvIL-10 inhibitors using well-known miniprotein scaffolds.

作者信息

Dueñas Salvador, Aguila Sergio A, Pimienta Genaro

机构信息

Departamento de Innovación Biomédica, División de Biología Experimental y Aplicada, Centro de Investigación y Educación Superior de Ensenada, Carretera Ensenada-Tijuana 3918, Zona Playitas, Ensenada, Baja California, C.P. 22860, Mexico.

Centro de Nanociencias y Nanotecnologia, Universidad Nacional Autonoma de Mexico, Km. 107 carretera Tijuana-Ensenada, Ensenada, Baja California, C.P. 22860, Mexico.

出版信息

J Mol Model. 2017 Apr;23(4):118. doi: 10.1007/s00894-017-3276-1. Epub 2017 Mar 14.

Abstract

The over-expression of immune-suppressors such as IL-10 is a crucial landmark in both tumor progression, and latent viral and parasite infection. IL-10 is a multifunctional protein. Besides its immune-cell suppressive function, it also promotes B-cell tumorigenesis of lymphomas and melanoma. Human pathogens like unicellular parasites and viruses that remain latent inside B cells promote the over-expression of hIL-10 upon infection, which inhibits cell-mediated immune surveillance, and at the same time mediates B cell proliferation. The B-cell specific oncogenic latent virus Epstein-Barr virus (EBV) encodes a viral homologue of hIL-10 (ebvIL-10), expressed during lytic viral proliferation. Once expressed, ebvIL-10 inhibits cell-mediated immune surveillance, assuring EBV re-infection. During long-term latency, EBV-infected B cells over-express hIL-10 to assure B-cell proliferation, occasionally inducing EBV-mediated lymphomas. The amino acid sequences of hIL-10 and ebvIL-10 are more than 80% identical and thus have a very similar tridimensional structure. Based on their published crystallographic structures bound to their human receptor IL10R1, we report a structure-based design of hIL-10 and ebvIL-10 inhibitors based on 3 loops from IL10R1 that establish specific hydrogen bonds with the two IL10s. We have grafted these loops onto a permissible loop in three well-known miniprotein scaffolds-the Conus snail toxin MVIIA, the plant-derived trypsin inhibitor EETI, and the human appetite modulator AgRP. Our computational workflow described in detail below was invigorated by the negative and positive controls implemented, and therefore paves the way for future in vitro and in vivo validation assays of the IL-10 inhibitors engineered.

摘要

诸如白细胞介素 - 10(IL - 10)等免疫抑制因子的过度表达是肿瘤进展以及潜伏性病毒和寄生虫感染的关键标志。IL - 10是一种多功能蛋白质。除了其免疫细胞抑制功能外,它还促进淋巴瘤和黑色素瘤的B细胞肿瘤发生。像单细胞寄生虫和病毒这样潜伏在B细胞内的人类病原体在感染后会促进hIL - 10的过度表达,这会抑制细胞介导的免疫监视,同时介导B细胞增殖。B细胞特异性致癌潜伏病毒爱泼斯坦 - 巴尔病毒(EBV)编码hIL - 10的病毒同源物(ebvIL - 10),在病毒裂解增殖期间表达。一旦表达,ebvIL - 10就会抑制细胞介导的免疫监视,确保EBV再次感染。在长期潜伏期间,EBV感染的B细胞会过度表达hIL - 10以确保B细胞增殖,偶尔会诱发EBV介导的淋巴瘤。hIL - 10和ebvIL - 10的氨基酸序列有超过80%的同一性,因此具有非常相似的三维结构。基于它们与人类受体IL10R1结合的已发表晶体结构,我们报告了基于IL10R1的3个环的hIL - 10和ebvIL - 10抑制剂的基于结构的设计,这些环与两种IL10建立了特定的氢键。我们已将这些环嫁接到三种著名的微型蛋白质支架中的一个允许环上,这三种支架分别是芋螺毒素MVIIA、植物来源的胰蛋白酶抑制剂EETI和人类食欲调节剂AgRP。下面详细描述的我们的计算工作流程因实施的阴性和阳性对照而得到加强,因此为未来对工程化的IL - 10抑制剂进行体外和体内验证试验铺平了道路。

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