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1.
J Biol Chem ; 288(17): 11807-23, 2013 Apr 26.
Article in English | MEDLINE | ID: mdl-23479725

ABSTRACT

TGF-ß plays an important role in breast cancer progression as a prometastatic factor, notably through enhancement of cell migration. It is becoming clear that microRNAs, a new class of small regulatory molecules, also play crucial roles in mediating tumor formation and progression. We found TGF-ß to down-regulate the expression of the microRNA miR-584 in breast cancer cells. Furthermore, we identified PHACTR1, an actin-binding protein, to be positively regulated by TGF-ß in a miR-584-dependent manner. Moreover, we found TGF-ß-mediated down-regulation of miR-584 and increased expression of PHACTR1 to be required for TGF-ß-induced cell migration of breast cancer cells. Indeed, both overexpression of miR-584 and knockdown of PHACTR1 resulted in a drastic reorganization of the actin cytoskeleton and reduced TGF-ß-induced cell migration. Our data highlight a novel signaling route whereby TGF-ß silences the expression of miR-584, resulting in enhanced PHACTR1 expression, and further leading to actin rearrangement and breast cancer cell migration.


Subject(s)
Actins/metabolism , Breast Neoplasms/mortality , Cell Movement , MicroRNAs/biosynthesis , Microfilament Proteins/biosynthesis , Neoplasm Proteins/biosynthesis , RNA, Neoplasm/biosynthesis , Transforming Growth Factor beta/metabolism , Actins/genetics , Breast Neoplasms/genetics , Breast Neoplasms/pathology , Cell Line, Tumor , Cytoskeleton/genetics , Cytoskeleton/metabolism , Cytoskeleton/pathology , Female , Gene Expression Regulation, Neoplastic/genetics , Gene Silencing , Humans , MicroRNAs/genetics , Microfilament Proteins/genetics , Neoplasm Proteins/genetics , RNA, Neoplasm/genetics , Signal Transduction/genetics , Transforming Growth Factor beta/genetics
2.
J Biol Chem ; 278(47): 46681-91, 2003 Nov 21.
Article in English | MEDLINE | ID: mdl-12954624

ABSTRACT

Vascular endothelial growth factor (VEGF) is known to play a predominant role in tumor angiogenesis and metastasis formation that is mediated by its interactions with two tyrosine kinase receptors, VEGFRI (Flt-1) and VEGFRII (KDR). Inhibition of VEGF-dependent events in tumor tissues is known to enhance apoptosis and to suppress tumor growth. A novel peptide, SP5.2, which selectively binds Flt-1 and inhibits a broad range of VEGF-mediated events, was identified using a phage-display library screening. The fluorescein-labeled SP5.2 specifically bound to VEGF-stimulated primary human cerebral endothelial cells (HCECs), whereas non-stimulated HCECs, as well as human neuroblastoma cells (ShyY) did not show any interaction with the peptide. SP5.2 prevented proliferation of cultured primary human umbilical vein endothelial cells induced by recombinant human VEGF165 with an IC50 of 5 microm. SP5.2 was also shown to antagonize VEGF- and PLGF-induced, but not basic fibroblast growth factor-induced proliferation of HCECs. In contrast to "scrambled" peptide, SP5.2 was also found to selectively inhibit VEGF-stimulated migration of HCECs. The in vitro analysis of antiangiogenic activity of SP5.2 using a capillary-like tube formation assay showed that VEGF-induced angiogenesis of HCECs grown on Matrigel was completely inhibited in the presence of 10 microm SP5.2. Further studies demonstrated that SP5.2 prevented VEGF-induced permeability increase in HCECs monolayers. To explore whether SP5.2 can be used as a targeting agent, chemical and recombinant conjugates of SP5.2 with reporter proteins (peroxidase and beta-galactosidase) were produced. The resulting products showed significant increases (200-fold for SP5.2-beta-gal and 400-fold for SP5.2-peroxidase) in binding affinity to recombinant Flt-1 compared with the original synthetic SP5.2, suggesting that conjugate with therapeutic activity in nanomolar range could potentially be developed based on SP5.2 structure.


Subject(s)
Angiogenesis Inhibitors/chemistry , Peptide Library , Peptides/pharmacology , Vascular Endothelial Growth Factor Receptor-1/antagonists & inhibitors , Amino Acid Sequence , Angiogenesis Inhibitors/isolation & purification , Angiogenesis Inhibitors/pharmacology , Bacteriophage M13 , Cells, Cultured , Endothelium, Vascular/cytology , Endothelium, Vascular/drug effects , Extracellular Matrix Proteins/metabolism , Humans , Peptides/isolation & purification , Protein Binding , Recombinant Fusion Proteins , Umbilical Veins/cytology , Vascular Endothelial Growth Factor Receptor-1/metabolism
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