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1.
J Proteome Res ; 11(8): 4110-9, 2012 Aug 03.
Article in English | MEDLINE | ID: mdl-22703031

ABSTRACT

Phosphorylation of protein plays a key role in the regulation of cellular signal transduction and gene expression. In recent years, targeted mass spectrometry facilitates functional phosphoproteomics by allowing specific protein modifications of target proteins in complex samples to be characterized. In this study, we employed multiple reaction monitoring (MRM) to examine the influence of gefitinib (also known as Iressa) on the phosphorylation sites of EGFR protein before and after EGF treatment. By coupling MRM to MS/MS, 5 phosphotyrosine (Y1110, Y1172, Y1197, Y1069, and Y1092) and 1 S/T (T693) sites were identified on EGFR. Y1197 and T693 were constitutively phosphorylated. All phosphorylation sites were sensitive to gefitinib treatment except T693. Interestingly, gefitinib treatment induced phosphorylation of S1166 only in the presence of EGF. We further showed that lung cancer cells overexpressing phosphomimic S1166D EGFR mutant possessed significantly lower growth and proliferation property compared to wildtype EGFR-expressing cells. While the function and mode of regulation of S1166 remain unclear, our data supports the notion that S1166 represents a regulatory site that exerts a negative regulation on growth and proliferation of cancer cells. The data presented has implication in our understanding of dynamic drug (gefitinib)-target (EGFR) interaction and in improving the efficacy of target-directed therapeutics.


Subject(s)
Antineoplastic Agents/pharmacology , Cell Proliferation/drug effects , Epidermal Growth Factor/physiology , ErbB Receptors/metabolism , Protein Processing, Post-Translational , Quinazolines/pharmacology , Amino Acid Motifs , Amino Acid Sequence , Cell Line, Tumor , ErbB Receptors/antagonists & inhibitors , ErbB Receptors/chemistry , Gefitinib , Humans , Lung Neoplasms , Molecular Sequence Data , Peptide Fragments/chemistry , Phosphorylation , Serine/metabolism , Tandem Mass Spectrometry , Tyrosine/metabolism
2.
FASEB J ; 25(9): 3004-18, 2011 Sep.
Article in English | MEDLINE | ID: mdl-21642474

ABSTRACT

WW-binding protein 2 (WBP2) has been demonstrated in different studies to be a tyrosine kinase substrate, to activate estrogen receptor α (ERα)/progesterone receptor (PR) transcription, and to play a role in breast cancer. However, the role of WBP2 tyrosine phosphorylation in regulating ERα function and breast cancer biology is unknown. Here, we established WBP2 as a tyrosine phosphorylation target of estrogen signaling via EGFR crosstalk. Using dominant-negative, constitutively active mutants, RNAi, and pharmacological studies, we demonstrated that phosphorylation of WBP2 at Tyr192 and Tyr231 could be regulated by c-Src and c-Yes kinases. We further showed that abrogating WBP2 phosphorylation impaired >60% of ERα reporter activity, putatively by blocking nuclear entry of WBP2 and its interaction with ERα. Compared to vector control, overexpression of WBP2 and its phospho-mimic mutant in MCF7 cells resulted in larger tumors in mice, induced loss of cell-cell adhesion, and enhanced cell proliferation, anchorage-independent growth, migration, and invasion in both estrogen-dependent and -independent manners, events of which could be substantially abolished by overexpression of the phosphorylation-defective mutant. Hormone independence of cells expressing WBP2 phospho-mimic mutant was associated with heightened ERα and Wnt reporter activities. Wnt/ß-catenin inhibitor FH535 blocked phospho-WBP2-mediated cancer cell growth more pronouncedly than tamoxifen and fulvestrant, in part by reducing the expression of ERα. Wnt pathway is likely to be a critical component in WBP2-mediated breast cancer biology.


Subject(s)
Carrier Proteins/metabolism , Estrogen Receptor alpha/metabolism , Mammary Neoplasms, Animal/metabolism , Neoplasms, Experimental/metabolism , Tyrosine/metabolism , Wnt Proteins/metabolism , Animals , Antineoplastic Agents , Carrier Proteins/genetics , Cell Line , Estrogen Receptor alpha/genetics , Female , Gene Expression Regulation, Neoplastic/physiology , Genes, src , Humans , Mice , Mice, Nude , Mutation , Phosphorylation , Proto-Oncogene Proteins c-yes , Trans-Activators , Wnt Proteins/genetics
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