Institute for Biomedicine, Sahlgrenska Academy, Centre for Ageing and Health-AgeCap, University of Gothenburg, Gothenburg 405 30, Sweden.
School of Life Science, Northeast Agricultural University, No. 600 Changjiang Street, Xiangfang District, Harbin 150030, China.
Cell Rep. 2019 Aug 20;28(8):2096-2110.e8. doi: 10.1016/j.celrep.2019.07.053.
Spatial sorting to discrete quality control sites in the cell is a process harnessing the toxicity of aberrant proteins. We show that the yeast t-snare phosphoprotein syntaxin5 (Sed5) acts as a key factor in mitigating proteotoxicity and the spatial deposition and clearance of IPOD (insoluble protein deposit) inclusions associates with the disaggregase Hsp104. Sed5 phosphorylation promotes dynamic movement of COPII-associated Hsp104 and boosts disaggregation by favoring anterograde ER-to-Golgi trafficking. Hsp104-associated aggregates co-localize with Sed5 as well as components of the ER, trans Golgi network, and endocytic vesicles, transiently during proteostatic stress, explaining mechanistically how misfolded and aggregated proteins formed at the vicinity of the ER can hitchhike toward vacuolar IPOD sites. Many inclusions become associated with mitochondria in a HOPS/vCLAMP-dependent manner and co-localize with Vps39 (HOPS/vCLAMP) and Vps13, which are proteins providing contacts between vacuole and mitochondria. Both Vps39 and Vps13 are required also for efficient Sed5-dependent clearance of aggregates.
细胞内离散质量控制位点的空间分拣是一种利用异常蛋白质毒性的过程。我们表明,酵母 t 型囊泡磷酸化蛋白 syntaxin5(Sed5)是减轻蛋白毒性和 IPOD(不溶性蛋白沉淀)包涵体空间沉积和清除的关键因素。Sed5 磷酸化促进了与 COPII 相关的 Hsp104 的动态运动,并通过促进正向 ER 到高尔基体运输来促进解聚。Hsp104 相关的聚集体与 Sed5 以及内质网、跨高尔基网络和内体的成分在蛋白质稳态应激期间短暂地共定位,这从机制上解释了在 ER 附近形成的错误折叠和聚集的蛋白质如何能够搭便车朝向液泡 IPOD 位点。许多包涵体以 HOPS/vCLAMP 依赖性方式与线粒体相关联,并与 Vps39(HOPS/vCLAMP)和 Vps13 共定位,后者是提供液泡和线粒体之间接触的蛋白质。Vps39 和 Vps13 对于有效的 Sed5 依赖性聚集体清除也是必需的。