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A molecular dynamics study of loop fluctuation in human papillomavirus type 16 virus-like particles: A possible indicator of immunogenicity

机译:人乳头瘤病毒16型病毒样颗粒中环波动的分子动力学研究:免疫原性的可能指标

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Immunogenicity varies between the human papillomavirus (HPV) L1 monomer assemblies of various sizes (e.g., monomers, pentamers or whole capsids). The hypothesis that this can be attributed to the intensity of fluctuations of important loops containing neutralizing epitopes for the various assemblies is proposed for HPV L1 assemblies. Molecular dynamics simulations were utilized to begin testing this hypothesis. Fluctuations of loops that contain critical neutralizing epitopes (especially FG loop) were quantified via root-mean-square fluctuation and features in the frequency spectrum of dynamic changes in loop conformation. If this fluctuation-immunogenicity hypothesis is a universal aspect of immunogenicity (i.e., immune system recognition of an epitope within a loop is more reliable when it is presented via a more stable delivery structure), then fluctuation measures can serve as one predictor of immunogenicity as part of a computer-aided vaccine design strategy. (C) 2011 Elsevier Ltd. All rights reserved.
机译:在各种大小的人乳头瘤病毒(HPV)L1单体组件之间(例如单体,五聚体或整个衣壳),免疫原性会有所不同。对于HPV L1组件,提出了可以归因于包含各种组件中和性表位的重要环的波动强度的假设。利用分子动力学模拟开始检验该假设。包含关键中和表位的环(尤其是FG环)的波动通过均方根波动和环构象动态变化的频谱特征进行定量。如果这种波动-免疫原性假设是免疫原性的普遍方面(即,当通过更稳定的递送结构呈现时,对环内表位的免疫系统识别更加可靠),则波动量度可以作为免疫原性的一个预测指标,例如计算机辅助疫苗设计策略的一部分。 (C)2011 Elsevier Ltd.保留所有权利。

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