Physiopathologic implications of the structural and functional domains of the prion protein.

The Italian journal of biochemistry Pub Date : 2006-09-01
M Catia Sorgato, Alessandro Bertoli
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Abstract

Prion diseases are invariably fatal neurodegenerative disorders affecting man and various animal species. A large body of evidence supports the notion that the causative agent of these diseases is the prion, which, devoid of nucleic acids, is composed largely, if not entirely, of a conformationally abnormal isoform (PrP(Sc) of the cellular prion protein (PrPc). PrPc is a highly conserved and ubiquitously expressed sialoglycoprotein, the normal function of which is, however, still ill defined. Several modules have been recognised in PrPc structure. Their extensive analysis by different experimental approaches, including transgenic animal models, has allowed to assigning to several modules a putative role in PrPc physiology. Concurrently, it has underscored the possibility that alteration of specific domains may determine the switching from a beneficial role of PrPc into one that becomes detrimental to neurons, and/or promote the conversion of PrPc into the pathogenic PrP(Sc) conformer.

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朊蛋白结构和功能域的生理病理意义。
朊病毒疾病是影响人类和各种动物的致命神经退行性疾病。大量证据支持这一观点,即这些疾病的病原体是朊病毒,它缺乏核酸,如果不是全部,则主要由细胞朊病毒蛋白(PrPc)的构象异常异构体(PrP(Sc))组成。PrPc是一种高度保守且普遍表达的唾液糖蛋白,但其正常功能仍不明确。在PrPc结构中已经识别出几个模块。他们通过不同的实验方法(包括转基因动物模型)进行了广泛的分析,从而确定了几个模块在PrPc生理学中的假定作用。同时,它强调了特定结构域的改变可能决定了PrPc从有益的作用转变为对神经元有害的作用,和/或促进PrPc转化为致病的PrP(Sc)构象的可能性。
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