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Computational identification, characterization and validation of potential antigenic peptide vaccines from hrHPVs E6 proteins using immunoinformatics and computational systems biology approaches

机译:使用免疫信息学和计算系统生物学方法从HRHPVS E6蛋白的潜在抗原肽疫苗的计算鉴定,表征和验证

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摘要

High-risk human papillomaviruses (hrHPVs) are the most prevalent viruses in human diseases including cervical cancers. Expression of E6 protein has already been reported in cervical cancer cases, excluding normal tissues. Continuous expression of E6 protein is making it ideal to develop therapeutic vaccines against hrHPVs infection and cervical cancer. Therefore, we carried out a meta-analysis of multiple hrHPVs to predict the most potential prophylactic peptide vaccines. In this study, immunoinformatics approach was employed to predict antigenic epitopes of hrHPVs E6 proteins restricted to 12 Human HLAs to aid the development of peptide vaccines against hrHPVs. Conformational B-cell and CTL epitopes were predicted for hrHPVs E6 proteins using ElliPro and NetCTL. The potential of the predicted peptides were tested and validated by using systems biology approach considering experimental concentration. We also investigated the binding interactions of the antigenic CTL epitopes by using docking. The stability of the resulting peptide-MHC I complexes was further studied by molecular dynamics simulations. The simulation results highlighted the regions from 46-62 and 65-76 that could be the first choice for the development of prophylactic peptide vaccines against hrHPVs. To overcome the worldwide distribution, the predicted epitopes restricted to different HLAs could cover most of the vaccination and would help to explore the possibility of these epitopes for adaptive immunotherapy against HPVs infections.
机译:高风险的人乳头瘤病毒(HRHPVS)是人类疾病中最普遍的病毒,包括宫颈癌。宫颈癌病例中已经报道了E6蛋白的表达,不包括正常组织。 E6蛋白的连续表达使其成为开发针对HRHPVS感染和宫颈癌的治疗疫苗的理想选择。因此,我们对多种HRHPV进行了META分析以预测最潜在的预防性肽疫苗。在该研究中,使用免疫信息学方法预测HRHPVS E6蛋白的抗原表位,限制为12人HLA,以帮助发育肽疫苗对HRHPVs的肽疫苗。使用椭圆和Netct1预测HRHPVS E6蛋白的构象B细胞和CTL表位。考虑到实验浓度的系统生物学方法,测试并验证了预测肽的潜力。我们还通过使用对接研究了抗原CTL表位的结合相互作用。通过分子动力学模拟进一步研究所得肽-MHC I复合物的稳定性。仿真结果突出显示46-62和65-76的区域,这可能是对HRHPVs进行预防肽疫苗的首选。为了克服全世界分布,限制为不同HLA的预测表位可能会涵盖大部分疫苗接种,并有助于探讨这些表位对HPVS感染的适应性免疫疗法的可能性。

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