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Assessment of Resistance to Tyrosine Kinase Inhibitors by an Interrogation of Signal Transduction Pathways by Antibody Arrays
Published on: September 19, 2018
Combining RNA interference and kinase inhibitors against cell signalling components involved in cancer
Michael O'Grady1, Debasish Raha, Bonnie J Hanson
1Invitrogen Corporation, Madison, WI 53719, USA. michael.ogrady@invitrogen.com
Background:
The transcription factor activator protein-1 (AP-1) has been implicated in a large variety of biological processes including oncogenic transformation. The tyrosine kinases of the epidermal growth factor receptor (EGFR) constitute the beginning of one signal transduction cascade leading to AP-1 activation and are known to control cell proliferation and differentiation. Drug discovery efforts targeting this receptor and other pathway components have centred on monoclonal antibodies and small molecule inhibitors. Resistance to such inhibitors has already been observed, guiding the prediction of their use in combination therapies with other targeted agents such as RNA interference (RNAi). This study examines the use of RNAi and kinase inhibitors for qualification of components involved in the EGFR/AP-1 pathway of ME180 cells, and their inhibitory effects when evaluated individually or in tandem against multiple components of this important disease-related pathway.
Methods:
AP-1 activation was assessed using an ME180 cell line stably transfected with a beta-lactamase reporter gene under the control of AP-1 response element following epidermal growth factor (EGF) stimulation. Immunocytochemistry allowed for further quantification of small molecule inhibition on a cellular protein level. RNAi and RT-qPCR experiments were performed to assess the amount of knockdown on an mRNA level, and immunocytochemistry was used to reveal cellular protein levels for the targeted pathway components.
Results:
Increased potency of kinase inhibitors was shown by combining RNAi directed towards EGFR and small molecule inhibitors acting at proximal or distal points in the pathway. After cellular stimulation with EGF and analysis at the level of AP-1 activation using a beta-lactamase reporter gene, a 10-12 fold shift or 2.5-3 fold shift toward greater potency in the IC50 was observed for EGFR and MEK-1 inhibitors, respectively, in the presence of RNAi targeting EGFR.
Conclusion:
EGFR pathway components were qualified as targets for inhibition of AP-1 activation using RNAi and small molecule inhibitors. The combination of these two targeted agents was shown to increase the efficacy of EGFR and MEK-1 kinase inhibitors, leading to possible implications for overcoming or preventing drug resistance, lowering effective drug doses, and providing new strategies for interrogating cellular signalling pathways.
Insights
Combining RNA interference (RNAi) with kinase inhibitors enhances the potency of EGFR and MEK-1 inhibitors. This dual-agent approach shows promise for overcoming drug resistance and optimizing cancer therapy by targeting the EGFR/AP-1 pathway.
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- The activator protein-1 (AP-1) transcription factor is crucial in oncogenic transformation and cell signaling.
- Epidermal growth factor receptor (EGFR) tyrosine kinases initiate a cascade activating AP-1, controlling cell proliferation and differentiation.
- Drug resistance to EGFR inhibitors necessitates combination therapies, including RNA interference (RNAi).
Purpose of the Study:
- To investigate the efficacy of RNA interference (RNAi) and kinase inhibitors in targeting the EGFR/AP-1 pathway in ME180 cells.
- To evaluate the combined inhibitory effects of RNAi and small molecule inhibitors on this pathway.
- To qualify EGFR pathway components as targets for AP-1 activation inhibition.
Main Methods:
- AP-1 activation was measured using a beta-lactamase reporter gene assay in ME180 cells after epidermal growth factor (EGF) stimulation.
- RNA interference (RNAi) and RT-qPCR were used to assess mRNA knockdown of targeted pathway components.
- Immunocytochemistry was employed to quantify protein level inhibition and cellular protein expression.
Main Results:
- Combining RNAi targeting EGFR with small molecule inhibitors significantly increased inhibitor potency.
- A 10-12 fold shift in IC50 for EGFR inhibitors and a 2.5-3 fold shift for MEK-1 inhibitors were observed when RNAi targeting EGFR was present.
- These results demonstrate enhanced efficacy of kinase inhibitors when used in conjunction with RNAi.
Conclusions:
- EGFR pathway components are validated targets for AP-1 activation inhibition using combined RNAi and small molecule inhibitors.
- This combination therapy approach can enhance the efficacy of EGFR and MEK-1 kinase inhibitors.
- Potential implications include overcoming drug resistance, reducing effective drug doses, and developing novel strategies for cellular signaling pathway interrogation.
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