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Suppression of Her2/neu expression through ILK inhibition is regulated by a pathway involving TWIST and YB-1
J Kalra1, B W Sutherland, A L Stratford
1Department of Experimental Therapeutics, University of British Columbia, Vancouver, British Columbia, Canada. jkalra@bccrc.ca
Abstract:
In a previous study it was found that the therapeutic effects of QLT0267, a small molecule inhibitor of integrin-linked kinase (ILK), were influenced by Her2/neu expression. To understand how inhibition or silencing of ILK influences Her2/neu expression, Her2/neu signaling was evaluated in six Her2/neu-positive breast cancer cell lines (LCC6(Her2), MCF7(Her2), SKBR3, BT474, JIMT-1 and KPL-4). Treatment with QLT0267 engendered suppression (32-87%) of total Her2/neu protein in these cells. Suppression of Her2/neu was also observed following small interfering RNA-mediated silencing of ILK expression. Time course studies suggest that ILK inhibition or silencing caused transient decreases in P-AKT(ser473), which were not temporally related to Her2/neu downregulation. Attenuation of ILK activity or expression was, however, associated with decreases in YB-1 (Y-box binding protein-1) protein and transcript levels. YB-1 is a known transcriptional regulator of Her2/neu expression, and in this study it is demonstrated that inhibition of ILK activity using QLT0267 decreased YB-1 promoter activity by 50.6%. ILK inhibition was associated with changes in YB-1 localization, as reflected by localization of cytoplasmic YB-1 into stress granules. ILK inhibition also suppressed TWIST (a regulator of YB-1 expression) protein expression. To confirm the role of ILK on YB-1 and TWIST, cells were engineered to overexpress ILK. This was associated with a fourfold increase in the level of YB-1 in the nucleus, and a 2- and 1.5-fold increase in TWIST and Her2/neu protein levels, respectively. Taken together, these data indicate that ILK regulates the expression of Her2/neu through TWIST and YB-1, lending support to the use of ILK inhibitors in the treatment of aggressive Her2/neu-positive tumors.
Insights
Integrin-linked kinase (ILK) inhibition suppresses Her2/neu expression in breast cancer cells by downregulating TWIST and YB-1. This suggests ILK inhibitors may treat aggressive Her2/neu-positive tumors.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Integrin-linked kinase (ILK) plays a role in cellular processes relevant to cancer.
- QLT0267 is a small molecule inhibitor of ILK.
- Previous studies indicated therapeutic effects of QLT0267 are influenced by Her2/neu expression.
Purpose of the Study:
- To investigate the mechanism by which ILK inhibition influences Her2/neu expression in breast cancer.
- To determine the role of ILK in regulating Her2/neu signaling pathways.
Main Methods:
- Her2/neu signaling was evaluated in six Her2/neu-positive breast cancer cell lines.
- Cells were treated with QLT0267 or subjected to small interfering RNA-mediated silencing of ILK.
- YB-1 promoter activity, protein and transcript levels, and cellular localization were assessed.
- TWIST protein expression and the effect of ILK overexpression were analyzed.
Main Results:
- QLT0267 treatment and ILK silencing suppressed Her2/neu protein levels.
- ILK inhibition led to decreased YB-1 protein and transcript levels and altered YB-1 localization.
- ILK inhibition suppressed TWIST protein expression.
- ILK overexpression increased YB-1, TWIST, and Her2/neu protein levels.
Conclusions:
- ILK regulates Her2/neu expression through the TWIST and YB-1 pathways.
- These findings support the potential use of ILK inhibitors for treating aggressive Her2/neu-positive breast cancers.
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