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REF 1 |
Analysis of mTOR signaling by the small G-proteins, Rheb and RhebL1. FEBS Lett. 2005 Aug 29;579(21):4763-8.
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REF 2 |
Rheb binds and regulates the mTOR kinase. Curr Biol. 2005 Apr 26;15(8):702-13.
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REF 3 |
TNFAIP3 promotes survival of CD4 T cells by restricting MTOR and promoting autophagy. Autophagy. 2015;11(7):1052-62.
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REF 4 |
Raptor, a binding partner of target of rapamycin (TOR), mediates TOR action. Cell. 2002 Jul 26;110(2):177-89.
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REF 5 |
Rictor, a novel binding partner of mTOR, defines a rapamycin-insensitive and raptor-independent pathway that regulates the cytoskeleton. Curr Biol. 2004 Jul 27;14(14):1296-302.
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REF 6 |
PRAS40 and PRR5-like protein are new mTOR interactors that regulate apoptosis. PLoS One. 2007 Nov 21;2(11):e1217.
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REF 7 |
Insulin signalling to mTOR mediated by the Akt/PKB substrate PRAS40. Nat Cell Biol. 2007 Mar;9(3):316-23.
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mTOR interacts with raptor to form a nutrient-sensitive complex that signals to the cell growth machinery. Cell. 2002 Jul 26;110(2):163-75.
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REF 9 |
GbetaL, a positive regulator of the rapamycin-sensitive pathway required for the nutrient-sensitive interaction between raptor and mTOR. Mol Cell. 2003 Apr;11(4):895-904.
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Ubiquitin-specific peptidase 9, X-linked (USP9X) modulates activity of mammalian target of rapamycin (mTOR). J Biol Chem. 2012 Jun 15;287(25):21164-75.
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Akt-dependent regulation of NF-{kappa}B is controlled by mTOR and Raptor in association with IKK. Genes Dev. 2008 Jun 1;22(11):1490-500.
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REF 12 |
Rapamycin differentially inhibits S6Ks and 4E-BP1 to mediate cell-type-specific repression of mRNA translation. Proc Natl Acad Sci U S A. 2008 Nov 11;105(45):17414-9.
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REF 13 |
Activation of mammalian target of rapamycin (mTOR) by insulin is associated with stimulation of 4EBP1 binding to dimeric mTOR complex 1. J Biol Chem. 2006 Aug 25;281(34):24293-303.
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REF 14 |
Mammalian TOR complex 2 controls the actin cytoskeleton and is rapamycin insensitive. Nat Cell Biol. 2004 Nov;6(11):1122-8.
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SIN1/MIP1 maintains rictor-mTOR complex integrity and regulates Akt phosphorylation and substrate specificity. Cell. 2006 Oct 6;127(1):125-37.
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REF 16 |
Identification of Sin1 as an essential TORC2 component required for complex formation and kinase activity. Genes Dev. 2006 Oct 15;20(20):2820-32.
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REF 17 |
Identification of Protor as a novel Rictor-binding component of mTOR complex-2. Biochem J. 2007 Aug 1;405(3):513-22.
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REF 18 |
mTORC2 can associate with ribosomes to promote cotranslational phosphorylation and stability of nascent Akt polypeptide. EMBO J. 2010 Dec 1;29(23):3939-51.
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The target of rapamycin complex 2 controls dendritic tiling of Drosophila sensory neurons through the Tricornered kinase signalling pathway. EMBO J. 2009 Dec 16;28(24):3879-92.
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REF 20 |
Hsp70 associates with Rictor and is required for mTORC2 formation and activity. Biochem Biophys Res Commun. 2008 Aug 8;372(4):578-83.
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REF 21 |
IKK interacts with rictor and regulates mTORC2. Cell Signal. 2013 Nov;25(11):2239-45.
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REF 22 |
An organelle-specific protein landscape identifies novel diseases and molecular mechanisms. Nat Commun. 2016 May 13;7:11491.
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Vinculin: a novel marker for quiescent and activated hepatic stellate cells in human and rat livers. Virchows Arch. 2003 Jul;443(1):78-86.
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REF 24 |
DEPTOR is an mTOR inhibitor frequently overexpressed in multiple myeloma cells and required for their survival. Cell. 2009 May 29;137(5):873-86.
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REF 25 |
Multiple site acetylation of Rictor stimulates mammalian target of rapamycin complex 2 (mTORC2)-dependent phosphorylation of Akt protein. J Biol Chem. 2012 Jan 2;287(1):581-8.
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REF 26 |
Dissociation of raptor from mTOR is a mechanism of rapamycin-induced inhibition of mTOR function. Genes Cells. 2004 Apr;9(4):359-66.
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REF 27 |
Farnesylthiosalicylic acid inhibits mammalian target of rapamycin (mTOR) activity both in cells and in vitro by promoting dissociation of the mTOR-raptor complex. Mol Endocrinol. 2005 Jan;19(1):175-83.
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REF 28 |
Redox regulation of the nutrient-sensitive raptor-mTOR pathway and complex. J Biol Chem. 2005 Nov 25;280(47):39505-9.
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REF 29 |
Tti1 and Tel2 are critical factors in mammalian target of rapamycin complex assembly. J Biol Chem. 2010 Jun 25;285(26):20109-16.
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REF 30 |
Reconstitution of leucine-mediated autophagy via the mTORC1-Barkor pathway in vitro. Autophagy. 2012 Feb 1;8(2):213-21.
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REF 31 |
Regulation of mTORC1 complex assembly and signaling by GRp58/ERp57. Mol Cell Biol. 2011 Apr;31(8):1657-71.
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REF 32 |
Rheb activates mTOR by antagonizing its endogenous inhibitor, FKBP38. Science. 2007 Nov 9;318(5852):977-80.
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REF 33 |
Akt-mediated YB-1 phosphorylation activates translation of silent mRNA species. Mol Cell Biol. 2006 Jan;26(1):277-92.
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cdc2-cyclin B regulates eEF2 kinase activity in a cell cycle- and amino acid-dependent manner. EMBO J. 2008 Apr 9;27(7):1005-16.
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REF 35 |
Different roles for the TOS and RAIP motifs of the translational regulator protein 4E-BP1 in the association with raptor and phosphorylation by mTOR in the regulation of cell size. Genes Cells. 2006 Jul;11(7):757-66.
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REF 36 |
mTORC1 drives HIF-1 and VEGF-A signalling via multiple mechanisms involving 4E-BP1, S6K1 and STAT3. Oncogene. 2015 Apr 23;34(17):2239-50.
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REF 37 |
Distinct signaling events downstream of mTOR cooperate to mediate the effects of amino acids and insulin on initiation factor 4E-binding proteins. Mol Cell Biol. 2005 Apr;25(7):2558-72.
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REF 38 |
The mammalian target of rapamycin (mTOR) partner, raptor, binds the mTOR substrates p70 S6 kinase and 4E-BP1 through their TOR signaling (TOS) motif. J Biol Chem. 2003 May 2;278(18):15461-4.
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REF 39 |
IKK beta suppression of TSC1 links inflammation and tumor angiogenesis via the mTOR pathway. Cell. 2007 Aug 10;130(3):440-55.
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REF 40 |
Serine Phosphorylation by mTORC1 Promotes IRS-1 Degradation through SCF-TRCP E3Ubiquitin Ligase. iScience. 2018 Jul 27;5:1-18.
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REF 41 |
PRAS40 is an insulin-regulated inhibitor of the mTORC1 protein kinase. Mol Cell. 2007 Mar 23;25(6):903-15.
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REF 42 |
ULK1 inhibits mTORC1 signaling, promotes multisite Raptor phosphorylation and hinders substrate binding. Autophagy. 2011 Jul;7(7):737-47.
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REF 43 |
Oncogenic MAPK signaling stimulates mTORC1 activity by promoting RSK-mediated raptor phosphorylation. Curr Biol. 2008 Sep 9;18(17):1269-77.
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Two motifs in the translational repressor PHAS-I required for efficient phosphorylation by mammalian target of rapamycin and for recognition by raptor. J Biol Chem. 2003 May 30;278(22):19667-73.
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REF 45 |
DAP1, a novel substrate of mTOR, negatively regulates autophagy. Curr Biol. 2010 Jun 22;20(12):1093-8.
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REF 46 |
Structure of the FKBP12-rapamycin complex interacting with the binding domain of human FRAP. Science. 1996 Jul 12;273(5272):239-42.
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Panorama of ancient metazoan macromolecular complexes. Nature. 2015 Sep 17;525(7569):339-44.
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Dual-color click beetle luciferase heteroprotein fragment complementation assays. Chem Biol. 2010 Sep 24;17(9):1018-29.
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A molecularly engineered split reporter for imaging protein-protein interactions with positron emission tomography. Nat Med. 2010 Aug;16(8):921-6.
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REF 50 |
Characterization of the FKBP.rapamycin.FRB ternary complex. J Am Chem Soc. 2005 Apr 6;127(13):4715-21.
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REF 51 |
Kinetics of regulated protein-protein interactions revealed with firefly luciferase complementation imaging in cells and living animals. Proc Natl Acad Sci U S A. 2004 Aug 17;101(33):12288-93.
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REF 52 |
Lysophosphatidic acid acyltransferase beta regulates mTOR signaling. PLoS One. 2013 Oct 31;8(10):e78632.
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REF 53 |
Differential effects of rapamycin on mammalian target of rapamycin signaling functions in mammalian cells. Cancer Res. 2003 Dec 1;63(23):8451-60.
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REF 54 |
Carboxyl-terminal region conserved among phosphoinositide-kinase-related kinases is indispensable for mTOR function in vivo and in vitro. Genes Cells. 2000 Sep;5(9):765-75.
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REF 55 |
Cytoplasmic TRAF4 contributes to the activation of p70s6k signaling pathway in breast cancer. Oncotarget. 2015 Feb 28;6(6):4080-96.
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REF 56 |
The FRB domain of mTOR: NMR solution structure and inhibitor design. Biochemistry. 2006 Aug 29;45(34):10294-302.
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REF 57 |
MDM4 actively restrains cytoplasmic mTORC1 by sensing nutrient availability. Mol Cancer. 2017 Mar 7;16(1):55.
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REF 58 |
Immunopurified mammalian target of rapamycin phosphorylates and activates p70 S6 kinase alpha in vitro. J Biol Chem. 1999 Nov 26;274(48):34493-8.
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REF 59 |
RAFT1 phosphorylation of the translational regulators p70 S6 kinase and 4E-BP1. Proc Natl Acad Sci U S A. 1998 Feb 17;95(4):1432-7.
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REF 60 |
Characterization of the cloned full-length and a truncated human target of rapamycin: activity, specificity, and enzyme inhibition as studied by a high capacity assay. Biochem Biophys Res Commun. 2005 Jun 24;332(1):304-10.
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REF 61 |
Structure of S6 kinase 1 determines whether raptor-mTOR or rictor-mTOR phosphorylates its hydrophobic motif site. J Biol Chem. 2005 May 20;280(20):19445-8.
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REF 62 |
Regulation of an activated S6 kinase 1 variant reveals a novel mammalian target of rapamycin phosphorylation site. J Biol Chem. 2002 May 31;277(22):20104-12.
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REF 63 |
The mammalian target of rapamycin complex 2 controls folding and stability of Akt and protein kinase C. EMBO J. 2008 Jul 23;27(14):1932-43.
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REF 64 |
Phosphorylation and regulation of Akt/PKB by the rictor-mTOR complex. Science. 2005 Feb 18;307(5712):1098-101.
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REF 65 |
Synemin promotes AKT-dependent glioblastoma cell proliferation by antagonizing PP2A. Mol Biol Cell. 2012 Apr;23(7):1243-53.
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REF 66 |
ER stress inhibits mTORC2 and Akt signaling through GSK-3-mediated phosphorylation of rictor. Sci Signal. 2011 Feb 22;4(161):ra10.
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REF 67 |
A new cytosolic pathway from a Parkinson disease-associated kinase, BRPK/PINK1: activation of AKT via mTORC2. J Biol Chem. 2011 Mar 4;286(9):7182-9.
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REF 68 |
Essential function of TORC2 in PKC and Akt turn motif phosphorylation, maturation and signalling. EMBO J. 2008 Jul 23;27(14):1919-31.
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REF 69 |
COMP-Ang1 Potentiates EPC Treatment of Ischemic Brain Injury by Enhancing Angiogenesis Through Activating AKT-mTOR Pathway and Promoting Vascular Migration Through Activating Tie2-FAK Pathway. Exp Neurobiol. 2015 Mar;24(1):55-70.
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REF 70 |
Thr2446 is a novel mammalian target of rapamycin (mTOR) phosphorylation site regulated by nutrient status. J Biol Chem. 2004 Apr 16;279(16):15719-22.
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REF 71 |
A direct linkage between the phosphoinositide 3-kinase-AKT signaling pathway and the mammalian target of rapamycin in mitogen-stimulated and transformed cells. Cancer Res. 2000 Jul 1;60(13):3504-13.
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REF 72 |
Interleukin-12-induced interferon-gamma production by human peripheral blood T cells is regulated by mammalian target of rapamycin (mTOR). J Biol Chem. 2005 Jan 14;280(2):1037-43.
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REF 73 |
Gadd45a suppresses tumor angiogenesis via inhibition of the mTOR/STAT3 protein pathway. J Biol Chem. 2013 Mar 1;288(9):6552-60.
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REF 74 |
Serine phosphorylation and maximal activation of STAT3 during CNTF signaling is mediated by the rapamycin target mTOR. Curr Biol. 2000 Jan 13;10(1):47-50.
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REF 75 |
Stimulation of signal transducer and activator of transcription-1 (STAT1)-dependent gene transcription by lipopolysaccharide and interferon-gamma is regulated by mammalian target of rapamycin. J Biol Chem. 2003 Sep 5;278(36):33637-44.
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REF 76 |
Inactivation of mammalian target of rapamycin increases STAT1 nuclear content and transcriptional activity in alpha4- and protein phosphatase 2A-dependent fashion. J Biol Chem. 2009 Sep 4;284(36):24341-53.
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REF 77 |
Using an in situ proximity ligation assay to systematically profile endogenous protein-protein interactions in a pathway network. J Proteome Res. 2014 Dec 5;13(12):5339-46.
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REF 78 |
Rictor Undergoes Glycogen Synthase Kinase 3 (GSK3)-dependent, FBXW7-mediated Ubiquitination and Proteasomal Degradation. J Biol Chem. 2015 May 29;290(22):14120-9.
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REF 79 |
Rictor and integrin-linked kinase interact and regulate Akt phosphorylation and cancer cell survival. Cancer Res. 2008 Mar 15;68(6):1618-24.
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REF 80 |
mTOR-raptor binds and activates SGK1 to regulate p27 phosphorylation. Mol Cell. 2008 Jun 20;30(6):701-11.
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REF 81 |
Regulation of mTORC1 and mTORC2 complex assembly by phosphatidic acid: competition with rapamycin. Mol Cell Biol. 2009 Mar;29(6):1411-20.
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REF 82 |
mTOR generates an auto-amplification loop by triggering the TrCP- and CK1-dependent degradation of DEPTOR. Mol Cell. 2011 Oct 21;44(2):317-24.
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REF 83 |
mTOR drives its own activation via SCF(TrCP)-dependent degradation of the mTOR inhibitor DEPTOR. Mol Cell. 2011 Oct 21;44(2):290-303.
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REF 84 |
Nutrients suppress phosphatidylinositol 3-kinase/Akt signaling via raptor-dependent mTOR-mediated insulin receptor substrate 1 phosphorylation. Mol Cell Biol. 2006 Jan;26(1):63-76.
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