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Structure and immunogenicity of a peptide vaccine, including the complete HIV-1 gp41 2F5 epitope: implications for antibody recognition mechanism and immunogen design.

机译:肽疫苗的结构和免疫原性,包括完整的HIV-1 gp41 2F5表位:对抗体识别机制和免疫原设计的影响。

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摘要

The membrane-proximal external region (MPER) of gp41 harbors the epitope recognized by the broadly neutralizing anti-HIV 2F5 antibody, a research focus in HIV-1 vaccine development. In this work, we analyze the structure and immunogenic properties of MPERp, a peptide vaccine that includes the following: (i) the complete sequence protected from proteolysis by the 2F5 paratope; (ii) downstream residues postulated to establish weak contacts with the CDR-H3 loop of the antibody, which are believed to be crucial for neutralization; and (iii) an aromatic rich anchor to the membrane interface. MPERp structures solved in dodecylphosphocholine micelles and 25% 1,1,1,3,3,3-hexafluoro-2-propanol (v/v) confirmed folding of the complete 2F5 epitope within continuous kinked helices. Infrared spectroscopy (IR) measurements demonstrated the retention of main helical conformations in immunogenic formulations based on alum, Freund's adjuvant, or two different types of liposomes. Binding to membrane-inserted MPERp, IR, molecular dynamics simulations, and characterization of the immune responses further suggested that packed helical bundles partially inserted into the lipid bilayer, rather than monomeric helices adsorbed to the membrane interface, could encompass effective MPER peptide vaccines. Together, our data constitute a proof-of-concept to support MPER-based peptides in combination with liposomes as stand-alone immunogens and suggest new approaches for structure-aided MPER vaccine development.
机译:gp41的近膜外部区域(MPER)带有被广泛中和的抗HIV 2F5抗体识别的表位,这是HIV-1疫苗开发的研究重点。在这项工作中,我们分析了MPERp的结构和免疫原性,MPERp是一种包括以下内容的肽疫苗:(i)完整的序列被2F5对位保护免受蛋白水解; (ii)推测与抗体的CDR-H3环建立弱接触的下游残基,据信这对于中和至关重要; (iii)富芳族锚固在膜界面上。在十二烷基磷酸胆碱胶束和25%1,1,1,3,3,3-六氟-2-丙醇(v / v)中溶解的MPERp结构证实了完整2F5表位在连续扭结螺旋内的折叠。红外光谱(IR)测量表明,基于明矾,弗氏佐剂或两种不同类型脂质体的免疫原性制剂中主要螺旋构象得以保留。结合插入膜的MPERp,IR,分子动力学模拟和免疫应答的表征进一步表明,部分插入脂质双层的螺旋状束(而不是吸附到膜界面的单体螺旋)可以包含有效的MPER肽疫苗。总之,我们的数据构成了一种概念证据,以支持基于MPER的肽结合脂质体作为独立的免疫原,并为结构辅助的MPER疫苗开发提供了新的方法。

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