Center for Biological Systems Analysis, University of Freiburg, Freiburg, Germany.
Faculty of Biology, University of Freiburg, Freiburg, Germany.
J Cell Biol. 2019 Sep 2;218(9):3019-3038. doi: 10.1083/jcb.201812110. Epub 2019 Aug 20.
Retromer is an evolutionarily conserved multiprotein complex that orchestrates the endocytic recycling of integral membrane proteins. Here, we demonstrate that retromer is also required to maintain lysosomal amino acid signaling through mTORC1 across species. Without retromer, amino acids no longer stimulate mTORC1 translocation to the lysosomal membrane, which leads to a loss of mTORC1 activity and increased induction of autophagy. Mechanistically, we show that its effect on mTORC1 activity is not linked to retromer's role in the recycling of transmembrane proteins. Instead, retromer cooperates with the RAB7-GAP TBC1D5 to restrict late endosomal RAB7 into microdomains that are spatially separated from the amino acid-sensing domains. Upon loss of retromer, RAB7 expands into the ragulator-decorated amino acid-sensing domains and interferes with RAG-GTPase and mTORC1 recruitment. Depletion of retromer in reduces mTORC1 signaling and extends the lifespan of the worms, confirming an evolutionarily conserved and unexpected role for retromer in the regulation of mTORC1 activity and longevity.
Retromer 是一种进化上保守的多蛋白复合物,它协调着整合膜蛋白的内吞体再循环。在这里,我们证明了 retromer 对于通过 mTORC1 在物种间维持溶酶体氨基酸信号也是必需的。没有 retromer,氨基酸不再刺激 mTORC1 向溶酶体膜易位,这导致 mTORC1 活性丧失和自噬增加。从机制上讲,我们表明它对 mTORC1 活性的影响与 retromer 在跨膜蛋白循环中的作用无关。相反,retromer 与 RAB7-GAP TBC1D5 合作,将晚期内体 RAB7 限制在与氨基酸感应域空间分离的微域中。在 retromer 缺失的情况下,RAB7 扩展到 ragulator 修饰的氨基酸感应域,并干扰 RAG-GTPase 和 mTORC1 的募集。在 中耗尽 retromer 会降低 mTORC1 信号转导并延长蠕虫的寿命,这证实了 retromer 在调节 mTORC1 活性和寿命方面具有进化上保守和意想不到的作用。