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Rictor磷酸化位点的表征揭示了S6K1对mTOR复合物2的直接调控。

Characterization of Rictor phosphorylation sites reveals direct regulation of mTOR complex 2 by S6K1.

作者信息

Dibble Christian C, Asara John M, Manning Brendan D

机构信息

Department of Genetics and Complex Diseases, Harvard School of Public Health, 665 Huntington Ave., SPH2-117, Boston, MA 02115, USA.

出版信息

Mol Cell Biol. 2009 Nov;29(21):5657-70. doi: 10.1128/MCB.00735-09. Epub 2009 Aug 31.

Abstract

The mammalian target of rapamycin (mTOR) functions within two distinct complexes (mTORC1 and mTORC2) to control cell growth, proliferation, survival, and metabolism. While there has been great progress in our understanding of mTORC1 regulation, the signaling mechanisms that regulate mTORC2 have not been defined. In this study, we use liquid chromatography-tandem mass spectrometry analyses to identify 21 phosphorylation sites on the core mTORC2 component Rictor. We find that one site, T1135, undergoes growth factor-responsive phosphorylation that is acutely sensitive to rapamycin and is phosphorylated downstream of mTORC1. We find that Rictor-T1135 is directly phosphorylated by the mTORC1-dependent kinase S6K1. Although this phosphorylation event does not affect mTORC2 integrity or in vitro kinase activity, expression of a phosphorylation site mutant of Rictor (T1135A) in either wild-type or Rictor null cells causes an increase in the mTORC2-dependent phosphorylation of Akt on S473. However, Rictor-T1135 phosphorylation does not appear to regulate mTORC2-mediated effects on SGK1 or PKC alpha. While the precise molecular mechanism affecting Akt is unknown, phosphorylation of T1135 stimulates binding of Rictor to 14-3-3 proteins. We provide evidence that Rictor-T1135 phosphorylation acts in parallel with other mTORC1-dependent feedback mechanisms, such as those affecting IRS-1 signaling to PI3K, to regulate the response of Akt to insulin.

摘要

雷帕霉素的哺乳动物靶点(mTOR)在两种不同的复合物(mTORC1和mTORC2)中发挥作用,以控制细胞生长、增殖、存活和代谢。虽然我们对mTORC1调节的理解取得了很大进展,但调节mTORC2的信号机制尚未明确。在本研究中,我们使用液相色谱-串联质谱分析来鉴定核心mTORC2组分Rictor上的21个磷酸化位点。我们发现,一个位点T1135发生生长因子反应性磷酸化,该磷酸化对雷帕霉素高度敏感,且在mTORC1下游被磷酸化。我们发现Rictor-T1135直接被mTORC1依赖性激酶S6K1磷酸化。虽然这一磷酸化事件不影响mTORC2的完整性或体外激酶活性,但在野生型或Rictor缺失细胞中表达Rictor的磷酸化位点突变体(T1135A)会导致Akt在S473上的mTORC2依赖性磷酸化增加。然而,Rictor-T1135磷酸化似乎不调节mTORC2对SGK1或PKCα的介导作用。虽然影响Akt的确切分子机制尚不清楚,但T1135的磷酸化刺激了Rictor与14-3-3蛋白的结合。我们提供的证据表明,Rictor-T1135磷酸化与其他mTORC1依赖性反馈机制并行发挥作用,例如那些影响IRS-1向PI3K信号传导的机制,以调节Akt对胰岛素的反应。

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