Department of Translational Medicine and Neurogenetics, IGBMC, Illkirch, France.
INSERM U964, Illkirch, France.
Nat Cell Biol. 2018 Feb;20(2):198-210. doi: 10.1038/s41556-017-0024-9. Epub 2018 Jan 22.
The ubiquitin proteasome system and autophagy are major protein turnover mechanisms in muscle cells, which ensure stemness and muscle fibre maintenance. Muscle cells contain a high proportion of cytoskeletal proteins, which are prone to misfolding and aggregation; pathological processes that are observed in several neuromuscular diseases called proteinopathies. Despite advances in deciphering the mechanisms underlying misfolding and aggregation, little is known about how muscle cells manage cytoskeletal degradation. Here, we describe a process by which muscle cells degrade the misfolded intermediate filament proteins desmin and vimentin by the proteasome. This relies on the MTM1-UBQLN2 complex to recognize and guide these misfolded proteins to the proteasome and occurs prior to aggregate formation. Thus, our data highlight a safeguarding function of the MTM1-UBQLN2 complex that ensures cytoskeletal integrity to avoid proteotoxic aggregate formation.
泛素蛋白酶体系统和自噬是肌肉细胞中主要的蛋白质周转机制,它们确保了干细胞特性和肌纤维的维持。肌肉细胞含有大量的细胞骨架蛋白,这些蛋白容易错误折叠和聚集;在几种称为蛋白病的神经肌肉疾病中观察到的病理过程。尽管在揭示错误折叠和聚集的机制方面取得了进展,但对于肌肉细胞如何管理细胞骨架降解知之甚少。在这里,我们描述了一种肌肉细胞通过蛋白酶体降解错误折叠的中间丝蛋白结蛋白和波形蛋白的过程。这依赖于 MTM1-UBQLN2 复合物来识别和引导这些错误折叠的蛋白质到蛋白酶体,并在形成聚集体之前发生。因此,我们的数据强调了 MTM1-UBQLN2 复合物的保护功能,该复合物确保细胞骨架的完整性以避免蛋白毒性聚集体的形成。