Upregulation of MMP-9 in MDCK epithelial cell line in response to expression of the Snail transcription factor
Author:
Jordà Mireia1, Olmeda David2, Vinyals Antònia1, Valero Eva1, Cubillo Eva2, Llorens Ana1, Cano Amparo2, Fabra Àngels1
Affiliation:
1. Centre d'Oncologia Molecular, IDIBELL-Institut de Recerca Oncològica, Barcelona, Spain 2. Instituto de Investigaciones Biomédicas “Alberto Sols” (CSIC-UAM) and Departamento de Bioquímica (UAM), Madrid, Spain
Abstract
Overexpression of the transcription factor Snail in epithelial MDCK cells promotes the epithelial-mesenchymal transition (EMT) and the acquisition of an invasive phenotype. We report here that the expression of Snail is associated with an increase in the promoter activity and expression of the matrix metalloproteinase MMP-9. The effect of Snail silencing on MMP-9 expression corroborates this finding. Induced transcription of MMP-9 by Snail is driven by a mechanism dependent on the MAPK and phosphoinositide 3-kinase (PI3K) signalling pathways. Although other regions of the promoter were required for a complete stimulation by Snail, a minimal fragment (nucleotides -97 to +114) produces a response following an increased phosphorylation of Sp-1 and either Sp-1 or Ets-1 binding to the GC-box elements contained in this region. The expression of a dominant negative form of MEK decreased these complexes. A moderate increase in the binding of the nuclear factor κB (NFκB) to the upstream region (nucleotide -562) of the MMP-9 promoter was also observed in Snail-expressing cells. Interestingly, oncogenic H-Ras (RasV12) synergistically co-operates with Snail in the induction of MMP-9 transcription and expression. Altogether, these results indicate that MMP-9 transcription is activated in response to Snail expression and that it might explain, at least in part, the invasive properties of the Snail-expressing cells.
Publisher
The Company of Biologists
Reference71 articles.
1. Andela, V. B., Schwarz, E. M., Puzas, J. E., O'Keefe, R. J. and Rosier, R. N. (2000). Tumor metastasis and the reciprocal regulation of prometastatic and antimetastatic factors by nuclear factor kappaB. Cancer Res.60, 6557-6562. 2. Ballin, M., Gomez, D. E., Sinha, C. C. and Thorgeirsson, U. P. (1988). Ras oncogene mediated induction of a 92 kDa metalloproteinase; strong correlation with the malignant phenotype. Biochem. Biophys. Res. Commun.154, 832-838. 3. Barbera, M. J., Puig, I., Dominguez, D., Julien-Grille, S., Guaita-Esteruelas, S., Peiro, S., Baulida, J., Franci, C., Dedhar, S., Larue, L. et al. (2004). Regulation of Snail transcription during epithelial to mesenchymal transition of tumor cells. Oncogene23, 7345-7354. 4. Batlle, E., Sancho, E., Franci, C., Dominguez, D., Monfar, M., Baulida, J. and Garcia De Herreros, A. (2000). The transcription factor snail is a repressor of E-cadherin gene expression in epithelial tumour cells. Nat. Cell Biol.2, 84-89. 5. Behrens, J., Lowrick, O., Klein-Hitpass, L. and Birchmeier, W. (1991). The E-cadherin promoter: functional analysis of a G.C-rich region and an epithelial cell-specific palindromic regulatory element. Proc. Natl. Acad. Sci. USA88, 11495-11499.
Cited by
200 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献
|
|