Department of Pathology, Beth Israel Deaconess Medical Center, Harvard Medical School, Boston, MA 02115, USA.
Mol Cell. 2010 Sep 10;39(5):797-808. doi: 10.1016/j.molcel.2010.08.016.
The Rictor/mTOR complex (also known as mTORC2) plays a critical role in cellular homeostasis by phosphorylating AGC kinases such as Akt and SGK at their hydrophobic motifs to activate downstream signaling. However, the regulation of mTORC2 and whether it has additional function(s) remain largely unknown. Here, we report that Rictor associates with Cullin-1 to form a functional E3 ubiquitin ligase. Rictor, but not Raptor or mTOR alone, promotes SGK1 ubiquitination. Loss of Rictor/Cullin-1-mediated ubiquitination leads to increased SGK1 protein levels as detected in Rictor null cells. Moreover, as part of a feedback mechanism, phosphorylation of Rictor at T1135 by multiple AGC kinases disrupts the interaction between Rictor and Cullin-1 to impair SGK1 ubiquitination. These findings indicate that the Rictor/Cullin-1 E3 ligase activity is regulated by a specific signal relay cascade and that misregulation of this mechanism may contribute to the frequent overexpression of SGK1 in various human cancers.
Rictor/mTOR 复合物(也称为 mTORC2)通过在其疏水基序处磷酸化 AGC 激酶(如 Akt 和 SGK)来激活下游信号转导,在细胞内稳态中发挥关键作用。然而,mTORC2 的调节及其是否具有其他功能在很大程度上仍不清楚。在这里,我们报告 Rictor 与 Cullin-1 结合形成功能性 E3 泛素连接酶。Rictor(而不是 Raptor 或单独的 mTOR)促进 SGK1 的泛素化。在 Rictor 缺失细胞中检测到,Rictor/Cullin-1 介导的泛素化缺失会导致 SGK1 蛋白水平升高。此外,作为反馈机制的一部分,多种 AGC 激酶对 Rictor 的 T1135 进行磷酸化会破坏 Rictor 和 Cullin-1 之间的相互作用,从而削弱 SGK1 的泛素化。这些发现表明,Rictor/Cullin-1 E3 连接酶活性受到特定信号传递级联的调节,并且该机制的失调可能导致 SGK1 在各种人类癌症中过度表达。