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Binding of bovine T194A PrPC by PrPSc-specific antibodies: Potential implications for immunotherapy of familial prion diseases

机译:牛T194A PrPC与PrPSc特异性抗体的结合:对家族性pr病毒疾病的免疫治疗的潜在影响

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Transmissible spongiform encephalopathies (TSE s) are fatal neurodegenerative diseases that are based on the misfolding of a cellular prion protein (PrPC) into an infectious, pathological conformation (PrPSc). There is proof-of-principle evidence that a prion vaccine is possible but this is tempered with concerns of the potential dangers associated with induction of immune responses to a widely-expressed self-protein. By targeting epitopes that are specifically exposed upon protein misfolding, our group developed a vaccine that induces PrPSc-specific antibody responses. Here we consider the ability of this polyclonal antibody (SN6b) to bind to a mutant of PrPC associated with spontaneous prion disease. Polyclonal antibodies were selected to mimic the vaccination outcome and also explore all possible protein conformations of the recombinant bovine prion protein with mutation T194A [bPrP(T194A)]. This mutant is a homolog of the human T183A mutation of PrPC that is associated with early onset of familial dementia. With nanopore analysis, under non-denaturing conditions, we observed binding of the SN6b antibody to bPrP(T194A). This interaction was confirmed through ELISAs as well as immunoprecipitation of the recombinant and cellularly expressed forms of bPrP(T194A). This interaction did not promote formation of a protease resistant conformation of PrP in vitro. Collectively, these findings support the diseasespecific approach for immunotherapy of prion diseases but also suggest that the concept of conformation-specific immunotherapy may be complicated in individuals who are genetically predisposed to PrPC misfolding.
机译:传染性海绵状脑病(TSE s)是致命的神经退行性疾病,其基于细胞protein病毒蛋白(PrPC)错折叠为传染性病理形态(PrPSc)而引起。有原理证明,a病毒疫苗是可行的,但由于担心与对广泛表达的自身蛋白的免疫应答的诱导有关的潜在危险,这种疫苗的使用受到了缓和。通过针对蛋白质错误折叠后特异性暴露的表位,我们的小组开发了一种疫苗,可诱导PrPSc特异性抗体反应。在这里,我们考虑该多克隆抗体(SN6b)结合与自发性ion病毒疾病相关的PrPC突变体的能力。选择多克隆抗体以模拟疫苗接种结果,并探索具有突变T194A [bPrP(T194A)]的重组牛病毒蛋白的所有可能的蛋白质构象。该突变体是与家族性痴呆的早期发作有关的PrPC的人T183A突变的同源物。通过纳米孔分析,在非变性条件下,我们观察到了SN6b抗体与bPrP(T194A)的结合。通过ELISA以及重组和细胞表达形式的bPrP(T194A)的免疫沉淀证实了这种相互作用。这种相互作用不会促进体外PrP的蛋白酶抗性构象的形成。总的来说,这些发现支持针对specific病毒疾病的免疫疗法的疾病特异性方法,但是也表明,在基因上倾向于PrPC错折叠的个体中,构象特异性免疫疗法的概念可能很复杂。

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