The integrin linked kinase (ILK) induces an invasive phenotype via AP-1 transcription factor-dependent upregulation of matrix metalloproteinase 9 (MMP-9)

AA Troussard, P Costello, TN Yoganathan, S Kumagai… - Oncogene, 2000 - nature.com
AA Troussard, P Costello, TN Yoganathan, S Kumagai, CD Roskelley, S Dedhar
Oncogene, 2000nature.com
Abstract Overexpression of Integrin Linked Kinase (ILK) in intestinal and mammary epithelial
cells results in a highly invasive phenotype, associated with increased levels of expression
of the matrix metalloproteinase MMP-9. This increase was at the transcriptional level as
determined by MMP-9 promoter-CAT reporter assays. Mutations in the two AP-1 binding
sites within the MMP-9 promoter completely inhibited the reporter activity. We have
previously shown that ILK inhibits glycogen synthase kinase-3 (GSK-3) activity. Transient …
Abstract
Overexpression of Integrin Linked Kinase (ILK) in intestinal and mammary epithelial cells results in a highly invasive phenotype, associated with increased levels of expression of the matrix metalloproteinase MMP-9. This increase was at the transcriptional level as determined by MMP-9 promoter-CAT reporter assays. Mutations in the two AP-1 binding sites within the MMP-9 promoter completely inhibited the reporter activity. We have previously shown that ILK inhibits glycogen synthase kinase-3 (GSK-3) activity. Transient transfection of wild-type GSK-3β in ILK-overexpressing cells decreased MMP-9 promoter activity and AP-1 activity, indicating that ILK can stimulate MMP-9 expression via GSK-3β and AP-1 transcription factor. A small molecule inhibitor of the ILK kinase reduced the in vitro invasiveness of ILK-overexpressing cells as well as the invasiveness of several human brain tumor cell lines. Furthermore, both MMP-9 promoter and AP-1 activities were inhibited by the ILK inhibitor. Invasiveness of ILK-overexpressing cells was also reduced by inhibition of MMP-9. These data demonstrate that ILK can induce an invasive phenotype via AP-1-dependent upregulation of MMP-9.
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