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AMPK regulates ESCRT-dependent microautophagy of proteasomes concomitant with proteasome storage granule assembly during glucose starvation

机译:AMPK在葡萄糖饥饿期间调节蛋白酶体的Escrt依赖于蛋白酶体的微蛋白酶伴有蛋白酶体储存颗粒组件

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摘要

The ubiquitin-proteasome system regulates numerous cellular processes and is central to protein homeostasis. In proliferating yeast and many mammalian cells, proteasomes are highly enriched in the nucleus. In carbon-starved yeast, proteasomes migrate to the cytoplasm and collect in proteasome storage granules (PSGs). PSGs dissolve and proteasomes return to the nucleus within minutes of glucose refeeding. The mechanisms by which cells regulate proteasome homeostasis under these conditions remain largely unknown. Here we show that AMP-activated protein kinase (AMPK) together with endosomal sorting complexes required for transport (ESCRTs) drive a glucose starvation-dependent microautophagy pathway that preferentially sorts aberrant proteasomes into the vacuole, thereby biasing accumulation of functional proteasomes in PSGs. The proteasome core particle (CP) and regulatory particle (RP) are regulated differently. Without AMPK, the insoluble protein deposit (IPOD) serves as an alternative site that specifically sequesters CP aggregates. Our findings reveal a novel AMPK-controlled ESCRT-mediated microautophagy mechanism in the regulation of proteasome trafficking and homeostasis under carbon starvation.
机译:泛素 - 蛋白酶体系统调节许多细胞过程,而且是中心蛋白的动态平衡。在增殖酵母和许多哺乳动物细胞中,蛋白酶体高度富集在细胞核中。在碳饥饿酵母,蛋白酶体迁移至细胞质,并收集在蛋白酶体存储颗粒(前列腺分泌颗粒)。前列腺分泌颗粒溶解和蛋白酶回到细胞核糖投喂的几分钟之内。通过该调节细胞在这些条件下的蛋白酶体稳态的机制仍是未知。在这里,我们表明,AMP活化的蛋白激酶(AMPK)具有用于传输(ESCRTs)所需的内体排序络合物一起驱动葡萄糖饥饿依赖性microautophagy途径优先排序异常蛋白酶体到液泡,从而施力于前列腺分泌颗粒官能蛋白酶的积累。蛋白酶体芯颗粒(CP)和调节颗粒(RP)被不同地调节。而不AMPK,不溶性蛋白沉积物(IPOD)用作替换部位特异性螯合CP聚集体。我们的研究结果揭示了在碳饥饿下蛋白酶贩卖和稳态的调节中新颖AMPK控制ESCRT介导microautophagy机制。

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