自噬在细胞朊病毒感染中的作用对比。

IF 14.3
Basant Abdulrahman, Andreas Heiseke, Yasmine Aguib, Li Lu, Dalia Abdelaziz, Mariam Ansari, Simrika Thapa, Yuzuru Taguchi, Sabine Gilch, Hermann M Schätzl
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引用次数: 0

摘要

自噬是一种细胞降解程序,可在各种神经退行性疾病中发挥有益和不利的作用。我们测试了巨噬/自噬在朊病毒感染中的作用,以及这种机制如何影响朊病毒的生命周期。在小鼠胚胎成纤维细胞中,我们发现朊病毒复制明显依赖于自噬能力,这表明自噬提供了朊病毒繁殖所需的功能。然而,在神经元细胞中,自噬的作用主要相反。通过基因编辑去除自噬能力的细胞含有大量错误折叠的朊病毒蛋白,这表明神经元细胞利用自噬来降解朊病毒。这些数据表明,自噬在朊病毒的复制中有两种功能,根据细胞环境的不同,它可以保护或支持朊病毒感染。这些发现表明,朊病毒利用细胞机制在某些细胞类型中繁殖,而其他细胞类型则利用相同的机制作为防御机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Contrasting roles of autophagy in cellular prion infection.

Autophagy is a cellular degradation program that can exert both beneficial and adverse effects in various neurodegenerative diseases. We tested the role of macroautophagy/autophagy in prion infection and how this machinery affects the life cycle of prions. In mouse embryonic fibroblasts, we found a pronounced dependence of prion replication on autophagy competence, suggesting that autophagy provides functions needed for prion propagation. However, in neuronal cells, autophagy had mostly the opposite role. Cells ablated for autophagy competence by gene editing harbored elevated amounts of misfolded prion protein, indicating that neuronal cells use autophagy for prion degradation. These data show that autophagy can have two functions in the replication of prions, and depending on the cellular context, this can be protective against or supportive of prion infection. These findings demonstrate that prions use cellular machineries to benefit propagation in certain cell types, whereas other cell types employ the same machinery as a defense mechanism.

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