Electrophysiological Investigations of Prion Protein Roles in Health and Disease

S. Foliaki, B. Groveman, C. Haigh
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引用次数: 1

Abstract

Prion diseases are transmissible and fatal neurological disorders associated with the misfolding of cellular prion protein (PrPC) into disease-causing isoforms (PrPD) in the central nervous system. The diseases have three etiologies; acquired through exposure to the infectious PrPD, sporadic, arising from no known cause, and hereditary due to familial mutations within the PRNP gene. The manifestation of clinical signs is associated with the disruption of neuronal activity and subsequent degeneration of neurons. To generate insight into the mechanisms by which neuronal activity becomes disrupted in prion diseases, electrophysiological techniques have been applied to closely study the electrical signaling properties of neurons that lack functional PrPC as well as neurons that are developing pathological features of prion diseases due to infection or genetic mutation. In this review, we will compile the electrophysiological evidences of neurophysiological roles of PrPC, how those roles are changed in neurons that are developing prion diseases, and how disease-associated effects are exacerbated during the clinical stage of disease.
朊蛋白在健康和疾病中的作用的电生理研究
朊病毒疾病是一种传染性和致命性的神经系统疾病,与细胞朊病毒蛋白(PrPC)在中枢神经系统中错误折叠成致病亚型(PrPD)有关。这些疾病有三种病因;通过接触传染性PRNP获得,散发,原因不明,由于PRNP基因的家族性突变而遗传。临床症状的表现与神经元活动的破坏和随后的神经元变性有关。为了深入了解朊病毒疾病中神经元活动被破坏的机制,电生理技术已被应用于密切研究缺乏功能性PrPC的神经元的电信号特性,以及由于感染或基因突变而出现朊病毒疾病病理特征的神经元。在这篇综述中,我们将整理PrPC的神经生理作用的电生理学证据,这些作用如何在发生朊病毒疾病的神经元中发生变化,以及疾病相关效应如何在疾病的临床阶段加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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