Campana Vincenza, Sarnataro Daniela, Fasano Carlo, Casanova Philippe, Paladino Simona, Zurzolo Chiara
Dipartimento di Biologia e Patologia Cellulare e Molecolare and CEINGE, Centro di Biotecnologie Avanzate, Università degli Studi di Napoli 'Federico II', via Pansini 5, 80131 Napoli, Italy.
J Cell Sci. 2006 Feb 1;119(Pt 3):433-42. doi: 10.1242/jcs.02768.
Inherited prion diseases are neurodegenerative pathologies related to genetic mutations in the prion protein (PrP) gene, which favour the conversion of PrP(C) into a conformationally altered pathogenic form, PrP(Sc). The molecular basis of PrP(C)/PrP(Sc) conversion, the intracellular compartment where it occurs and how this process leads to neurological dysfunction are not yet known. We have studied the intracellular synthesis, degradation and localization of a PrP mutant associated with a genetic form of Creutzfeldt-Jakob disease (CJD), PrPT182A, in transfected FRT cells. PrPT182A is retained in the endoplasmic reticulum (ER), is mainly associated with detergent-resistant microdomains (DRMs) and is partially resistant to proteinase K digestion. Although an untranslocated form of this mutant is polyubiquitylated and undergoes ER-associated degradation, the proteasome is not responsible for the degradation of its misfolded form, suggesting that it does not have a role in the pathogenesis of inherited diseases. On the contrary, impairment of PrPT182A association with DRMs by cholesterol depletion leads to its accumulation in the ER and substantially increases its misfolding. These data support the previous hypothesis that DRMs are important for the correct folding of PrP and suggest that they might have a protective role in pathological scrapie-like conversion of PrP mutants.
遗传性朊病毒病是与朊病毒蛋白(PrP)基因突变相关的神经退行性病变,这些突变有利于PrP(C)转变为构象改变的致病形式PrP(Sc)。PrP(C)/PrP(Sc)转变的分子基础、其发生的细胞内区室以及该过程如何导致神经功能障碍尚不清楚。我们研究了与克雅氏病(CJD)的一种遗传形式相关的PrP突变体PrPT182A在转染的FRT细胞中的细胞内合成、降解和定位。PrPT182A保留在内质网(ER)中,主要与耐去污剂微区(DRMs)相关,并且对蛋白酶K消化具有部分抗性。尽管该突变体的未转运形式被多聚泛素化并经历内质网相关降解,但蛋白酶体并不负责其错误折叠形式的降解,这表明它在遗传性疾病的发病机制中不起作用。相反,胆固醇耗竭导致PrPT182A与DRMs的结合受损,导致其在内质网中积累并显著增加其错误折叠。这些数据支持了之前的假设,即DRMs对PrP的正确折叠很重要,并表明它们可能在PrP突变体的病理性羊瘙痒症样转变中起保护作用。