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Rab7 knockout unveils regulated autolysosome maturation induced by glutamine starvation

机译:Rab7敲除推出受谷氨酰胺饥饿诱导的受调节的自糖体成熟

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Macroautophagy (simply called autophagy hereafter) is an intracellular degradation mechanism that is activated by nutrient starvation. Although it is well known that starvation induces autophagosome formation in an mTORC1-dependent manner, whether starvation also regulates autophagosome or autolysosome maturation was unclear. In the present study, we succeeded in demonstrating that starvation activates autolysosome maturation in mammalian cells. We found that knockout (KO) of Rab7 (herein referring to the Rab7a isoform) caused an accumulation of a massive number of LC3-positive autolysosomes under nutrient-rich conditions, indicating that Rab7 is dispensable for autophagosome-lysosome fusion. Intriguingly, the autolysosomes that had accumulated in Rab7-KO cells matured and disappeared after starvation for a brief period (similar to 10 min), and we identified glutamine as an essential nutrient for autolysosome maturation. In contrast, forced inactivation of mTORC1 through treatment with its inhibitor Torin2 failed to induce autolysosome maturation, suggesting that the process is controlled by an mTORC1-independent mechanism. Since starvation-induced autolysosome maturation was also observed in wild-type cells, the nutrient-starvation-induced maturation of autolysosomes is likely to be a generalized mechanism in the same manner as starvation-induced autophagosome formation. Such multistep regulatory mechanisms would enable efficient autophagic flux during starvation.
机译:宏观摄影(简称自噬)是一种通过营养饥饿激活的细胞内降解机制。虽然众所周知,饥饿以MTORC1依赖性方式诱导自噬体形成,饥饿还调节自噬体或自糖体成熟尚不清楚。在本研究中,我们成功地证明饥饿激活哺乳动物细胞中的自然体成熟。我们发现RAB7的敲除(KO)(在本文中指的是RAB7A同种型)导致富含营养的条件下大量的LC3阳性自糖体的积累,表明RAB7可分配用于自噬体 - 溶酶体融合。有趣的是,在RAB7-KO细胞中积累的自身囊体成熟并在饥饿后消失的短暂期(类似于10分钟),我们将谷氨酰胺鉴定为自然体验成熟的必要营养素。相反,通过用抑制剂TORIN2治疗MTORC1的强制失活未来未能诱导自然体成熟,表明该过程由MTORC1独立机制控制。由于在野生型细胞中也观察到饥饿诱导的自糖体成熟,因此营养饥饿诱导的自糖蛋白酶成熟可能是以与饥饿诱导的自噬体形成相同的方式的广义机制。这种多步调节机制将在饥饿期间实现有效的自噬助焊剂。

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