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1.
Mol Cell ; 36(2): 326-39, 2009 Oct 23.
Article in English | MEDLINE | ID: mdl-19854140

ABSTRACT

Inappropriate activation of oncogenic kinases at intracellular locations is frequently observed in human cancers, but its effects on global signaling are incompletely understood. Here, we show that the oncogenic mutant of Flt3 (Flt3-ITD), when localized at the endoplasmic reticulum (ER), aberrantly activates STAT5 and upregulates its targets, Pim-1/2, but fails to activate PI3K and MAPK signaling. Conversely, membrane targeting of Flt3-ITD strongly activates the MAPK and PI3K pathways, with diminished phosphorylation of STAT5. Global phosphoproteomics quantified 12,186 phosphorylation sites, confirmed compartment-dependent activation of these pathways and discovered many additional components of Flt3-ITD signaling. The differential activation of Akt and Pim kinases by ER-retained Flt3-ITD helped to identify their putative targets. Surprisingly, we find spatial regulation of tyrosine phosphorylation patterns of the receptor itself. Thus, intracellular activation of RTKs by oncogenic mutations in the biosynthetic route may exploit cellular architecture to initiate aberrant signaling cascades, thus evading negative regulation.


Subject(s)
Oncogenes , Receptor Protein-Tyrosine Kinases/metabolism , Signal Transduction , Amino Acid Sequence , Animals , Apoptosis/drug effects , Brefeldin A/pharmacology , Cell Compartmentation/drug effects , Endoplasmic Reticulum/drug effects , Endoplasmic Reticulum/enzymology , Enzyme Activation/drug effects , HeLa Cells , Humans , Isotope Labeling , Mice , Mitogen-Activated Protein Kinases/metabolism , Molecular Sequence Data , Phosphatidylinositol 3-Kinases/metabolism , Phosphoproteins/chemistry , Phosphoproteins/metabolism , Phosphorylation/drug effects , Protein Structure, Tertiary , Proteomics , Proto-Oncogene Proteins c-kit/metabolism , Receptor Protein-Tyrosine Kinases/chemistry , STAT5 Transcription Factor/metabolism , Sequence Deletion , Signal Transduction/drug effects , Tunicamycin/pharmacology , fms-Like Tyrosine Kinase 3/chemistry , fms-Like Tyrosine Kinase 3/metabolism
2.
Mol Cell Biol ; 25(9): 3690-703, 2005 May.
Article in English | MEDLINE | ID: mdl-15831474

ABSTRACT

Constitutive activation of receptor tyrosine kinases (RTKs) is a frequent event in human cancer cells. Activating mutations in Fms-like tyrosine kinase 3 (FLT-3), notably, internal tandem duplications in the juxtamembrane domain (FLT-3 ITD), have been causally linked to acute myeloid leukemia. As we describe here, FLT-3 ITD exists predominantly in an immature, underglycosylated 130-kDa form, whereas wild-type FLT-3 is expressed predominantly as a mature, complex glycosylated 150-kDa molecule. Endogenous FLT-3 ITD, but little wild-type FLT-3, is detectable in the endoplasmic reticulum (ER) compartment. Conversely, cell surface expression of FLT-3 ITD is less efficient than that of wild-type FLT-3. Inhibition of FLT-3 ITD kinase by small molecules, inactivating point mutations, or coexpression with the protein-tyrosine phosphatases (PTPs) SHP-1, PTP1B, and PTP-PEST but not RPTPalpha promotes complex glycosylation and surface localization. However, PTP coexpression has no effect on the maturation of a surface glycoprotein of vesicular stomatitis virus. The maturation of wild-type FLT-3 is impaired by general PTP inhibition or by suppression of endogenous PTP1B. Enhanced complex formation of FLT-3 ITD with the ER-resident chaperone calnexin indicates that its retention in the ER is related to inefficient folding. The regulation of RTK maturation by tyrosine phosphorylation was observed with other RTKs as well, defines a possible role for ER-resident PTPs, and may be related to the altered signaling quality of constitutively active, transforming RTK mutants.


Subject(s)
Protein Tyrosine Phosphatases/physiology , Proto-Oncogene Proteins/metabolism , Receptor Protein-Tyrosine Kinases/metabolism , Tyrosine/metabolism , Animals , Calnexin/physiology , Cell Line , Endoplasmic Reticulum/chemistry , Endoplasmic Reticulum/metabolism , Humans , Phosphorylation , Protein Folding , Protein Tyrosine Phosphatases/genetics , Proto-Oncogene Proteins/analysis , Proto-Oncogene Proteins/genetics , RNA, Small Interfering/genetics , RNA, Small Interfering/pharmacology , Receptor Protein-Tyrosine Kinases/analysis , Receptor Protein-Tyrosine Kinases/genetics , Signal Transduction , fms-Like Tyrosine Kinase 3
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