a Department of Biology , University of Fribourg , Fribourg , Switzerland.
Autophagy. 2019 May;15(5):915-916. doi: 10.1080/15548627.2019.1580107. Epub 2019 Feb 17.
The evolutionarily conserved target of rapamycin complex 1 (TORC1) regulates cell growth in a homeostatic manner by tuning anabolic and catabolic processes in response to nutritional and hormonal cues. Interestingly, rather than being localized at the plasma membrane as perhaps expected for an integrator of extracellular signals, TORC1 mainly localizes at vacuolar (in yeast) and lysosomal (in more complex eukaryotes) membranes where it seems optimally placed to sense both the nutrient status within the cytoplasm and the vacuolar/lysosomal compartment. How TORC1 controls downstream targets that are distant from the vacuole/lysosome, is currently poorly understood. In this context, we recently identified and characterized 2 spatially and functionally distinct pools of TORC1 in the budding yeast Saccharomyces cerevisiae: one at the vacuole that promotes protein synthesis, and another one at endosomes that inhibits protein degradation. Thus, our findings highlight the presence of spatially separated pools of TORC1 that are commissioned with functionally specific tasks within cells. In addition, they pinpoint the existence of signaling endosomes in yeast, which raises numerous new questions that are warranted to direct future research in this area.
雷帕霉素复合物 1(TORC1)是进化上保守的靶标,通过响应营养和激素信号来调节合成代谢和分解代谢过程,以维持细胞生长的稳态。有趣的是,TORC1 并没有像人们可能预期的那样位于质膜上,作为细胞外信号的整合器,而是主要位于液泡(酵母中)和溶酶体(在更复杂的真核生物中)膜上,它似乎最适合感知细胞质内的营养状态以及液泡/溶酶体隔室。目前,人们对 TORC1 如何控制远离液泡/溶酶体的下游靶标知之甚少。在这种情况下,我们最近在 budding yeast Saccharomyces cerevisiae 中鉴定并表征了 TORC1 的两种空间和功能上不同的池:一种位于促进蛋白质合成的液泡中,另一种位于抑制蛋白质降解的内体中。因此,我们的发现强调了 TORC1 存在空间分离的池,这些池被赋予了细胞内特定功能的任务。此外,它们还指出了酵母中信号转导内体的存在,这提出了许多新的问题,值得在该领域进行未来的研究。