Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892.
Proc Natl Acad Sci U S A. 2023 Jan 3;120(1):e2212330120. doi: 10.1073/pnas.2212330120. Epub 2022 Dec 28.
Target of Rapamycin Complex I (TORC1) is a central regulator of metabolism in eukaryotes that responds to a wide array of negative and positive inputs. The GTPase-activating protein toward Rags (GATOR) signaling pathway acts upstream of TORC1 and is comprised of two subcomplexes. The trimeric GATOR1 complex inhibits TORC1 activity in response to amino acid limitation by serving as a GTPase-activating protein (GAP) for the TORC1 activator RagA/B, a component of the lysosomally located Rag GTPase. The multi-protein GATOR2 complex inhibits the activity of GATOR1 and thus promotes TORC1 activation. Here we report that Wdr59, originally assigned to the GATOR2 complex based on studies performed in tissue culture cells, unexpectedly has a dual function in TORC1 regulation in . We find that in the ovary and the eye imaginal disc brain complex, Wdr59 inhibits TORC1 activity by opposing the GATOR2-dependent inhibition of GATOR1. Conversely, in the fat body, Wdr59 promotes the accumulation of the GATOR2 component Mio and is required for TORC1 activation. Similarly, in mammalian HeLa cells, Wdr59 prevents the proteolytic destruction of GATOR2 proteins Mio and Wdr24. Consistent with the reduced levels of the TORC1-activating GATOR2 complex, Wdr59KOs HeLa cells have reduced TORC1 activity which is restored along with GATOR2 protein levels upon proteasome inhibition. Taken together, our data support the model that the Wdr59 component of the GATOR2 complex functions to promote or inhibit TORC1 activity depending on cellular context.
雷帕霉素靶蛋白复合物 1(TORC1)是真核生物代谢的核心调节剂,它对广泛的负向和正向输入做出响应。雷帕霉素靶蛋白朝向 Rags(GATOR)信号通路的 GTP 酶激活蛋白(GAP)作用于 TORC1 的上游,由两个亚复合物组成。三聚体 GATOR1 复合物通过充当 TORC1 激活剂 RagA/B 的 GTPase 激活蛋白(GAP),从而抑制 TORC1 活性,RagA/B 是位于溶酶体的 Rag GTPase 的一个组成部分,在响应氨基酸限制时抑制 TORC1 活性。多蛋白 GATOR2 复合物抑制 GATOR1 的活性,从而促进 TORC1 的激活。在这里,我们报道 Wdr59,最初根据组织培养细胞中的研究被分配到 GATOR2 复合物中,它在. 中的 TORC1 调节中具有双重功能。我们发现,在卵巢和眼 imaginal disc brain 复合物中,Wdr59 通过拮抗 GATOR2 依赖性的 GATOR1 抑制来抑制 TORC1 活性。相反,在. 脂肪体中,Wdr59 促进 GATOR2 成分 Mio 的积累,并且是 TORC1 激活所必需的。同样,在哺乳动物 HeLa 细胞中,Wdr59 防止 GATOR2 蛋白 Mio 和 Wdr24 的蛋白水解破坏。与 TORC1 激活的 GATOR2 复合物水平降低一致,Wdr59KO 的 HeLa 细胞的 TORC1 活性降低,并且在蛋白酶体抑制时,与 GATOR2 蛋白水平一起恢复。总之,我们的数据支持这样的模型,即 GATOR2 复合物的 Wdr59 成分根据细胞环境促进或抑制 TORC1 活性。