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Characterization of Truncated Forms of Abnormal Prion Protein in Creutzfeldt-Jakob Disease*

机译:截短形式的异常Pri蛋白的表征 克雅氏病*

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摘要

In prion disease, the abnormal conformer of the cellular prion protein, PrPSc, deposits in fibrillar protein aggregates in brain and other organs. Limited exposure of PrPSc to proteolytic digestion in vitro generates a core fragment of 19–21 kDa, named PrP27–30, which is also found in vivo. Recent evidence indicates that abnormal truncated fragments other than PrP27–30 may form in prion disease either in vivo or in vitro. We characterized a novel protease-resistant PrP fragment migrating 2–3 kDa faster than PrP27–30 in Creutzfeldt-Jakob disease (CJD) brains. The fragment has a size of about 18.5 kDa when associated with PrP27–30 type 1 (21 kDa) and of 17 kDa when associated with type 2 (19 kDa). Molecular mass and epitope mapping showed that the two fragments share the primary N-terminal sequence with PrP27–30 types 1 and 2, respectively, but lack a few amino acids at the very end of C terminus together with the glycosylphosphatidylinositol anchor. The amounts of the 18.5- or 17-kDa fragments and the previously described 13-kDa PrPSc C-terminal fragment relatively to the PrP27–30 signal significantly differed among CJD subtypes. Furthermore, protease digestion of PrPSc or PrP27–30 in partially denaturing conditions generated an additional truncated fragment of about 16 kDa only in typical sporadic CJD (i.e. MM1). These results show that the physicochemical heterogeneity of PrPSc in CJD extends to abnormal truncated forms of the protein. The findings support the notion of distinct structural “conformers” of PrPSc and indicate that the characterization of truncated PrPSc forms may further improve molecular typing in CJD.
机译:在病毒疾病中,细胞病毒蛋白质PrPSc的异常构象物沉积在大脑和其他器官的纤维状蛋白质中。 PrPSc在体外对蛋白水解酶的接触有限,可产生19-21 kDa的核心片段,称为PrP27-30,也可在体内发现。最近的证据表明,在disease病毒体内或体外均可形成除PrP27–30以外的异常截短的片段。我们表征了在Creutzfeldt-Jakob病(CJD)大脑中比PrP27–30迁移2–3 kDa的新型蛋白酶抗性PrP片段。与PrP27–30 1型(21 kDa)结合时,片段大小约为18.5 kDa,与2型(19 kDa)结合时,片段大小为17 kDa。分子质量和表位作图显示,这两个片段分别与1型和2型PrP27–30共享主要的N端序列,但在C末端的最末端缺少几个氨基酸以及糖基磷脂酰肌醇锚。在CJD亚型中,相对于PrP27–30信号,18.5或17-kDa片段的数量和先前描述的13-kDa PrPSc C端片段的数量明显不同。此外,在部分变性条件下,PrPSc或PrP27-30的蛋白酶消化仅在典型的偶发CJD(即MM1)中产生了大约16 kDa的另一截短片段。这些结果表明,CJD中PrPSc的物理化学异质性扩展到蛋白质的异常截短形式。这些发现支持了PrPSc独特的结构“构象”的观点,并表明截短的PrPSc形式的表征可以进一步改善CJD中的分子分型。

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