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Epitope scanning indicates structural differences in brain-derived monomeric and aggregated mutant prion proteins related to genetic prion diseases

机译:表位扫描表明与遗传病毒疾病有关的脑源性单体和聚集突变pr病毒蛋白的结构差异

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pGenetic Creutzfeldt–Jakob disease, Gerstmann–Str?ussler–Scheinker syndrome, fatal familial insomnia and prion protein cerebral amyloid angiopathy are clinically and neuropathologically distinct neurodegenerative diseases linked to mutations in the iPRNP/i gene encoding the cellular prion protein (PrPsupC/sup). How sequence variants of iPRNP/i encode the information to specify these disease phenotypes is not known. It is suggested that each mutation produces a misfolded variant of PrPsupC/sup with specific neurotoxic properties. However, structural studies of recombinant PrP did not detect major differences between wild-type and mutant molecules, pointing to the importance of investigating mutant PrPs from mammalian brains. We used surface plasmon resonance and a slot-blot immunoassay to analyse the antibody-binding profiles of soluble and insoluble PrP molecules extracted from the brains of transgenic mice modelling different prion diseases. By measuring the reactivity of monoclonal antibodies against different PrP epitopes, we obtained evidence of conformational differences between wild-type and mutant PrPs, and among different mutants. We detected structural heterogeneity in both monomeric and aggregated PrP, supporting the hypothesis that the phenotype of genetic prion diseases is encoded by mutant PrP conformation and assembly state./p
机译:>遗传性Creutzfeldt–Jakob病,Gerstmann–Str?ussler–Scheinker综合征,致命的家族性失眠和病毒蛋白脑淀粉样血管病是与 PRNP 基因编码突变相关的临床和神经病理学上不同的神经退行性疾病。细胞病毒蛋白(PrP C )。 PRNP 的序列变体如何编码信息以指定这些疾病表型尚不清楚。建议每个突变产生具有特定神经毒性特性的PrP C 错折叠变体。但是,重组PrP的结构研究没有发现野生型和突变分子之间的主要差异,这表明研究来自哺乳动物大脑的突变PrP的重要性。我们使用表面等离振子共振和缝隙免疫分析法分析了从建模不同病毒疾病的转基因小鼠的大脑中提取的可溶和不可溶PrP分子的抗体结合谱。通过测量针对不同PrP表位的单克隆抗体的反应性,我们获得了野生型和突变型PrPs之间以及不同突变体之间构象差异的证据。我们在单体和聚集的PrP中都检测到结构异质性,支持了假性病毒疾病的表型由突变的PrP构象和组装状态编码的假说。

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