School of Biosciences, Cardiff University, Museum Avenue, Cardiff, CF10 3AX, United Kingdom.
Institute of Physiologically Active Compounds Russian Academy of Sciences, 1 Severniy proezd, Chernogolovka 142432, Moscow Region, Russian Federation.
Sci Rep. 2017 Mar 9;7:44088. doi: 10.1038/srep44088.
Stress granules (SGs) are an important component of cellular stress response. Compromised assembly of SGs as well as their premature or delayed disassembly affect physiology and survival of cells under stress or during recovery from stress. Consequently, abnormal turnover of SGs has been implicated in the development of various pathologies, including neurodegeneration. We found that pretreatment of cells with a natural disaccharide trehalose, a known autophagy enhancer, delays SG assembly and facilitates their premature post-stress disassembly. Mechanistically, the effect of trehalose on SGs is mediated via the p-eIF2α rather than autophagosome pathway. Trehalose increases pre-stress levels of p-eIF2α and its phosphatase subunits and promotes post-stress translational recovery. Upon prolonged treatment, trehalose impairs basal translation affecting production of transiently expressed proteins. Early translational recovery and SG disassembly induced by trehalose pretreatment can sensitise cells to stress and impair survival. Our study has important implications for the use of trehalose in studies of autophagic clearance of misfolded proteins and for targeting SGs as a possible therapeutic approach in neurodegenerative and other diseases.
应激颗粒(SGs)是细胞应激反应的一个重要组成部分。SGs 的组装受损以及它们过早或延迟的解体会影响细胞在应激或从应激中恢复时的生理和生存。因此,SGs 的异常周转与各种病理学的发展有关,包括神经退行性变。我们发现,用天然二糖海藻糖预处理细胞,一种已知的自噬增强剂,可以延迟 SG 的组装,并促进其在应激后的过早解体。从机制上讲,海藻糖对 SG 的作用是通过 p-eIF2α 而不是自噬体途径介导的。海藻糖增加了应激前 p-eIF2α 及其磷酸酶亚基的水平,并促进了应激后的翻译恢复。经过长时间的处理,海藻糖会损害基础翻译,影响瞬时表达蛋白的产生。海藻糖预处理诱导的早期翻译恢复和 SG 解体会使细胞对应激敏感并损害其生存能力。我们的研究对海藻糖在研究错误折叠蛋白的自噬清除以及将 SG 作为神经退行性变和其他疾病的一种可能治疗方法中的应用具有重要意义。