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Antigenic presentation of heterologous epitopes engineered into the outer surface-exposed helix 4 loop region of human papillomavirus L1 capsomeres

机译:工程化的人乳头瘤病毒L1 capsomeres外表面暴露的螺旋4环区域中的异源表位的抗原呈递。

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Background Human papillomavirus (HPV) L1 capsid proteins can self-assemble into pentamers (capsomeres) that are immunogenic and can elicit neutralizing antibodies. Structural modelling of L1 inter-pentameric interactions predicts that helix 4 (h4) of each of the five L1 monomers project laterally and outwards from the pentamer. We sought to utilize HPV L1 capsomeres as a vaccine platform by engineering heterologous epitopes within L1 derivatives deleted for h4 domain. Results We used baculovirus – infected Trichoplusia ni cells and ultracentrifugation to synthesize and purify three 16L1 derivatives: one bearing a short deletion (amino acids 404–436) encompassing the h4 domain, and two others, each bearing a conserved neutralizing epitope of the human respiratory syncytial virus (RSV) fusion (F) protein (residues 255–278 and 423–436) that was substituted for the deleted L1 h4 domain residues. Each of the three capsomere derivatives was recognized by anti-L1 antibodies, while two bearing the RSV F-derived moieties were recognized by anti-RSV F antibodies. All three L1 derivatives formed ring-like structures that were similar in morphology and size to those described for native 16L1 capsomeres. When injected into mice, each of the capsomere derivatives was immunogenic with respect to L1 protein, and immunization with chimeric L1-RSV F pentamers resulted in RSV non-neutralizing antisera that recognized purified RSV F protein in immunoblots. Conclusion HPV L1 monomers bearing heterologous epitopes within the L1 h4 region can self-assemble into capsomeres that elicit antibody response against such non-HPV encoded epitopes. Thus, the L1 h4 region can function as a novel antigen display site within the L1 pentamer, which in turn may serve as a potential vaccine template.
机译:背景技术人类乳头瘤病毒(HPV)L1衣壳蛋白可以自组装成具有免疫原性并可以引发中和抗体的五聚体(capsomeres)。 L1五元相互作用的结构模型预测,五个L1单体中每一个的螺旋4(h4)从五聚体横向和向外突出。我们试图通过工程化为h4结构域缺失的L1衍生物中的异源表位来利用HPV L1 capsomeres作为疫苗平台。结果我们使用杆状病毒感染的Trichoplusia ni细胞并超速离心来合成和纯化三种16L1衍生物:一种带有短缺失(氨基酸404-436),涵盖h4结构域,另外两种则带有人类呼吸道保守的中和表位合胞病毒(RSV)融合(F)蛋白(255-278和423-436残基),可替代缺失的L1 h4结构域残基。三个Capsomere衍生物中的每一个都被抗L1抗体识别,而两个带有RSV F衍生的部分被抗RSV F抗体识别。所有这三个L1衍生物均形成环状结构,其形态和大小与天然16L1帽壳的描述相似。当注射入小鼠体内时,每种Capsomere衍生物均对L1蛋白具有免疫原性,并且用嵌合L1-RSV F五聚体进行免疫可导致RSV非中和抗血清,该血清识别免疫印迹中的纯化RSV F蛋白。结论在L1 h4区域内带有异源表位的HPV L1单体可自组装成衣壳体,引发针对此类非HPV编码表位的抗体反应。因此,L1 h4区可以充当L1五聚体中的新抗原展示位点,进而可以用作潜在的疫苗模板。

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