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富含脑的 RagB 异构体通过抑制 GATOR1 来调节 mTORC1 活性的动态变化。

Brain-enriched RagB isoforms regulate the dynamics of mTORC1 activity through GATOR1 inhibition.

机构信息

Signal Transduction in Cancer and Metabolism, German Cancer Research Center (DKFZ), Heidelberg, Germany.

Heidelberg University, Heidelberg, Germany.

出版信息

Nat Cell Biol. 2022 Sep;24(9):1407-1421. doi: 10.1038/s41556-022-00977-x. Epub 2022 Sep 12.

Abstract

Mechanistic target of rapamycin complex 1 (mTORC1) senses nutrient availability to appropriately regulate cellular anabolism and catabolism. During nutrient restriction, different organs in an animal do not respond equally, with vital organs being relatively spared. This raises the possibility that mTORC1 is differentially regulated in different cell types, yet little is known about this mechanistically. The Rag GTPases, RagA or RagB bound to RagC or RagD, tether mTORC1 in a nutrient-dependent manner to lysosomes where mTORC1 becomes activated. Although the RagA and B paralogues were assumed to be functionally equivalent, we find here that the RagB isoforms, which are highly expressed in neurons, impart mTORC1 with resistance to nutrient starvation by inhibiting the RagA/B GTPase-activating protein GATOR1. We further show that high expression of RagB isoforms is observed in some tumours, revealing an alternative strategy by which cancer cells can retain elevated mTORC1 upon low nutrient availability.

摘要

雷帕霉素靶蛋白复合体 1(mTORC1)感知营养物质的可用性,以适当调节细胞合成代谢和分解代谢。在营养限制下,动物的不同器官不会做出相同的反应,重要器官相对得以幸免。这就提出了 mTORC1 在不同细胞类型中可能存在差异调节的可能性,但对此知之甚少。Rag GTPases,与 RagC 或 RagD 结合的 RagA 或 RagB,以营养依赖的方式将 mTORC1 固定在溶酶体上,mTORC1 在溶酶体中被激活。尽管 RagA 和 B 同源物被假定具有功能等效性,但我们在这里发现,在神经元中高度表达的 RagB 同工型通过抑制 RagA/B GTPase 激活蛋白 GATOR1,赋予 mTORC1 对营养饥饿的抗性。我们进一步表明,在一些肿瘤中观察到 RagB 同工型的高表达,揭示了癌细胞在低营养可用性下保留升高的 mTORC1 的另一种策略。

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