Graduate School of Frontier Biosciences, Osaka University, Osaka, Japan.
Graduate School of Dentistry, Osaka University, Osaka, Japan.
PLoS Genet. 2018 Apr 26;14(4):e1007334. doi: 10.1371/journal.pgen.1007334. eCollection 2018 Apr.
TORC1 is a central regulator of cell growth in response to amino acids. The role of the evolutionarily conserved Gtr/Rag pathway in the regulation of TORC1 is well-established. Recent genetic studies suggest that an additional regulatory pathway, depending on the activity of Pib2, plays a role in TORC1 activation independently of the Gtr/Rag pathway. However, the interplay between the Pib2 pathway and the Gtr/Rag pathway remains unclear. In this study, we show that Pib2 and Gtr/Ego form distinct complexes with TORC1 in a mutually exclusive manner, implying dedicated functional relationships between TORC1 and Pib2 or Gtr/Rag in response to specific amino acids. Furthermore, simultaneous depletion of Pib2 and the Gtr/Ego system abolishes TORC1 activity and completely compromises the vacuolar localization of TORC1. Thus, the amino acid-dependent activation of TORC1 is achieved through the Pib2 and Gtr/Ego pathways alone. Finally, we show that glutamine induces a dose-dependent increase in Pib2-TORC1 complex formation, and that glutamine binds directly to the Pib2 complex. These data provide strong preliminary evidence for Pib2 functioning as a putative glutamine sensor in the regulation of TORC1.
TORC1 是细胞生长对氨基酸反应的一个中央调节者。进化保守的 Gtr/Rag 途径在 TORC1 调节中的作用已经得到很好的确立。最近的遗传研究表明,一种额外的调节途径,依赖于 Pib2 的活性,在不依赖于 Gtr/Rag 途径的情况下,独立地在 TORC1 的激活中发挥作用。然而,Pib2 途径和 Gtr/Rag 途径之间的相互作用仍然不清楚。在这项研究中,我们表明 Pib2 和 Gtr/Ego 以相互排斥的方式与 TORC1 形成独特的复合物,这暗示了 TORC1 与 Pib2 或 Gtr/Rag 之间在响应特定氨基酸时具有专门的功能关系。此外,同时耗尽 Pib2 和 Gtr/Ego 系统会使 TORC1 活性完全丧失,并使 TORC1 的液泡定位完全受损。因此,TORC1 的氨基酸依赖性激活是通过 Pib2 和 Gtr/Ego 途径单独实现的。最后,我们表明谷氨酰胺诱导 Pib2-TORC1 复合物形成的剂量依赖性增加,并且谷氨酰胺直接结合到 Pib2 复合物上。这些数据为 Pib2 作为 TORC1 调节中的一个假定的谷氨酰胺传感器提供了强有力的初步证据。