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首页> 外文期刊>The Journal of biological chemistry >Gerstmann-Str?ussler-Scheinker Disease and “Anchorless Prion Protein” Mice Share Prion Conformational Properties Diverging from Sporadic Creutzfeldt-Jakob Disease
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Gerstmann-Str?ussler-Scheinker Disease and “Anchorless Prion Protein” Mice Share Prion Conformational Properties Diverging from Sporadic Creutzfeldt-Jakob Disease

机译:Gerstmann-str?Ussler-scheinker病和“锚朊蛋白”小鼠股票朊病毒构象性质从孢子菌克雷托茨Feldt-jakob疾病发散

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The role of the GPI-anchor in prion disease pathogenesis is still a challenging issue. In vitro studies have shown that anchorless cellular prion protein (PrPC) undergoes aberrant post-translational processing and metabolism. Moreover, transgenic (Tg) mice overexpressing anchorless PrPC develop a spontaneous neurological disease accompanied with widespread brain PrP amyloid deposition, in the absence of spongiform changes. Generation of PrP forms lacking the GPI and PrP amyloidosis are striking features of human stop codon mutations in the PrP gene (PRNP), associated with PrP cerebral amyloid angiopathy (PrP-CAA) and Gerstmann-Str?ussler-Scheinker (GSS) syndrome. More recently, the presence of anchorless PrP species has been also claimed in sporadic Creutzfeldt-Jakob disease (sCJD). Using a highly sensitive protein separation technique and taking advantage of reference maps of synthetic PrP peptides, we investigated brain tissues from scrapie-infected “anchorless PrP” Tg mice and wild type mice to determine the contribution of the GPI-anchor to the molecular mass and isoelectric point of PrP quasispecies under two-dimensional electrophoresis. We also assessed the conformational properties of anchorless and anchored prions under standard and inactivating conditions. These studies were extended to sCJD and GSS. At variance with GSS, characterization of PrP quasispecies in different sCJD subtypes ruled out the presence of anchorless prions. Moreover, under inactivating conditions, mice anchorless prions, but not sCJD prions, generated internal PrP fragments, cleaved at both N and C termini, similar to those found in PrP-CAA and GSS brain tissues. These findings show that anchorless PrPSc generates GSS-like PrP fragments, and suggest a major role for unanchored PrP in amyloidogenesis.
机译:GPI-Anchor在朊病毒疾病发病机制中的作用仍然是一个具有挑战性的问题。体外研究表明,无锚式细胞朊病毒蛋白(PRPC)经历异常翻译后加工和代谢。此外,转基因(Tg)小鼠过表达锚地PRPC发育自发神经疾病伴随着广泛的脑PRP淀粉样蛋白沉积,在没有海绵状的变化的情况下。缺乏GPI和PRP淀粉样蛋白病的PRP形式的产生是PRP基因(PRNP)中的人体止芯突变的突出特征,与PRP脑淀粉样血管病(PRP-CAA)和Gerstmann-STR?USSLER-Scheinker(GSS)综合征相关联。最近,在孢子克雷茨菲尔德特 - 雅各布疾病(SCJD)中也索赔了锚地PRP物种的存在。使用高敏感的蛋白质分离技术和利用合成PrP肽的参考图,我们研究了来自瘙痒病的“锚锚PrP”Tg小鼠和野生型小鼠的脑组织,以确定GPI锚对分子量和分子量的贡献PRP QuAspecies在二维电泳下的等电点。我们还在标准和灭活条件下评估了锚固和锚定朊病毒的构象性质。这些研究扩展到SCJD和GSS。在与GSS的差异下,不同SCJD亚型中PRP Quaspecies的表征排除了锚固朊病毒的存在。此外,在灭活条件下,小鼠固定朊病毒,但不是SCJD朊病毒,产生内部PRP碎片,在N和C Termini两种中切割,类似于PRP-CAA和GSS脑组织中的那些。这些发现表明,锚固PRPSC产生GSS样PRP碎片,并表明未经治疗的PRP在淀粉片过生中的主要作用。

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