HER-2/neu represses the metastasis suppressor RECK via ERK and Sp transcription factors to promote cell invasion

被引:103
作者
Hsu, MC
Chang, HC
Hung, WC
机构
[1] Natl Sun Yat Sen Univ, Inst Biomed Sci, Kaohsiung, Fukuoka 804, Taiwan
[2] Kaohsiung Med Univ, Grad Inst Med, Kaohsiung 807, Taiwan
[3] Natl Cheng Kung Univ, Ctr Gene Regulat & Signal Transduct, Tainan 701, Taiwan
关键词
D O I
10.1074/jbc.M510937200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Matrix metalloproteinase (MMP) inhibitory proteins may negatively regulate MMP activity to suppress tumor metastasis. In this study, we demonstrate that the HER-2/neu oncogene inhibits the expression of the MMP inhibitor RECK to promote cell invasion. RECK was inhibited via transcriptional repression in B104-1-1 cells, which express constitutively active HER-2/neu. Overexpression of HER-2/neu in NIH/3T3 or HaCaT cells also suppressed RECK expression. Deletion and mutation assays showed that HER-2/neu repressed RECK via the Sp1-binding site localized in the -82/-71 region from the translational start site. DNA affinity precipitation and chromatin immunoprecipitation assays indicated that binding of Sp1 and Sp3 to this consensus site was increased in B104-1-1 cells. We also found that HER-2/neu inhibited RECK via the ERK signaling pathway. Sp1 proteins phosphorylated at Thr(453) and Thr(739) by ERK bound preferentially to the RECK promoter, and this binding was reversed by HER-2/neu and ERK inhibitors. Furthermore, our data indicate that HER-2/neu obviously increased HDAC1 binding to the Sp1-binding site localized in the -72/-71 region of the RECK promoter. The histone deacetylase inhibitor trichostatin A reversed HER-2/neu-induced inhibition of RECK. HER-2/neu activation was associated with increased MMP-9 secretion and activation. Re-expression of RECK in HER-2/neu-overexpressing cells inhibited MMP-9 secretion and cell invasion. Taken together, our results suggest that HER-2/neu induces the binding of Sp proteins and HDAC1 to the RECK promoter to inhibit RECK expression and to promote cell invasion. Restoration of RECK provides a novel strategy for the inhibition of HER-2/neu-induced metastasis.
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收藏
页码:4718 / 4725
页数:8
相关论文
共 46 条
[1]  
Alroy I, 1999, MOL CELL BIOL, V19, P1961
[2]   THE NEU ONCOGENE ENCODES AN EPIDERMAL GROWTH-FACTOR RECEPTOR-RELATED PROTEIN [J].
BARGMANN, CI ;
HUNG, MC ;
WEINBERG, RA .
NATURE, 1986, 319 (6050) :226-230
[3]   HER2/Neu-mediated activation of the ETS transcription factor ER81 and its target gene MMP-1 [J].
Bosc, DG ;
Goueli, BS ;
Janknecht, R .
ONCOGENE, 2001, 20 (43) :6215-6224
[4]   Mammalian histone deacetylase 1 protein is posttranslationally modified by phosphorylation [J].
Cai, R ;
Kwon, P ;
Yan-Neale, Y ;
Sambuccetti, L ;
Fischer, D ;
Cohen, D .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2001, 283 (02) :445-453
[5]   Down-regulation of human type II collagen gene expression by transforming growth factor-β1 (TGF-β1) in articular chondrocytes involves SP3/SP1 ratio [J].
Chadjichristos, C ;
Ghayor, C ;
Herrouin, JF ;
Ala-Kokko, L ;
Suske, G ;
Pujol, JP ;
Galéra, P .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2002, 277 (46) :43903-43917
[6]   Involvement of histone deacetylation in ras-induced down-regulation of the metastasis suppressor RECK [J].
Chang, HC ;
Liu, LT ;
Hung, WC .
CELLULAR SIGNALLING, 2004, 16 (06) :675-679
[7]  
Doetzlhofer A, 1999, MOL CELL BIOL, V19, P5504
[8]   INTERACTION OF THE NEU P185 AND EGF RECEPTOR TYROSINE KINASES - IMPLICATIONS FOR CELLULAR-TRANSFORMATION AND TUMOR-THERAPY [J].
DOUGALL, WC ;
QIAN, XL ;
GREENE, MI .
JOURNAL OF CELLULAR BIOCHEMISTRY, 1993, 53 (01) :61-73
[9]   DOWN-MODULATION OF AN ONCOGENE PROTEIN PRODUCT AND REVERSION OF THE TRANSFORMED PHENOTYPE BY MONOCLONAL-ANTIBODIES [J].
DREBIN, JA ;
LINK, VC ;
STERN, DF ;
WEINBERG, RA ;
GREENE, MI .
CELL, 1985, 41 (03) :695-706
[10]   Activated Neu/ErbB-2 induces expression of the vascular endothelial growth factor gene by functional activation of the transcription factor Sp 1 [J].
Finkenzeller G. ;
Weindel K. ;
Zimmermann W. ;
Westin G. ;
Marmé D. .
Angiogenesis, 2004, 7 (1) :59-68