Publication | Closed Access
Rescue Screens with Secreted Proteins Reveal Compensatory Potential of Receptor Tyrosine Kinases in Driving Cancer Growth
107
Citations
45
References
2012
Year
Drug TargetRescue ScreensKinase InhibitorsCancer BiologyActive RtksTumor BiologySignaling PathwayCell RegulationDriving Cancer GrowthReceptor Tyrosine KinaseReceptor Tyrosine KinasesCell SignalingCancer CellsCell BiologyTumor MicroenvironmentSignal TransductionProtein KinaseSystems BiologyMedicineCancer GrowthDrug Discovery
The overall power of kinase inhibitors is substantially overshadowed by the acquisition of drug resistance. To address this issue, we systematically assessed the potential of secreted proteins to induce resistance to kinase inhibitors. To this end, we developed a high-throughput platform for screening a cDNA library encoding 3,432 secreted proteins in cellular assays. Using cancer cells originally dependent on either MET, FGFR2, or FGFR3, we observed a bypass of dependence through ligand-mediated activation of alternative receptor tyrosine kinases (RTK). Our findings indicate a broad and versatile potential for RTKs from the HER and FGFR families as well as MET to compensate for loss of each other. We further provide evidence that combined inhibition of simultaneously active RTKs can lead to an added anticancer effect.
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