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Published on: August 11, 2017
Resistance to chemotherapy is associated with fibroblast growth factor receptor 4 up-regulation
Andreas Roidl1, Hans-Jürgen Berger, Sushil Kumar
1Department of Molecular Biology, Max-Planck-Institute of Biochemistry, Martinsried, Germany.
Purpose:
Establishment of antiapoptotic signaling pathways in tumor cells is a major cause for the failure of chemotherapy against cancer. To investigate the underlying mechanisms, we developed an experimental approach that is based on the genetic plasticity of cancer cells and the selection for cell survival on treatment with chemotherapeutic agents.
Experimental Design:
Gene expression changes of surviving cell clones were analyzed by macroarrays. Involvement of fibroblast growth factor receptor 4 (FGFR4) in antiapoptotic pathways was elucidated by apoptosis assays, small interfering RNA experiments, and an antagonistic antibody.
Results:
We show that FGFR4 gene expression is up-regulated in doxorubicin-treated, apoptosis-resistant cancer cell clones. Ectopic expression of FGFR4 in cancer cells led to reduced apoptosis sensitivity on treatment with doxorubicin or cyclophosphamide, whereas knockdown of endogenous FGFR4 expression in breast cancer cell lines had the opposite effect. FGFR4 overexpression resulted in Bcl-xl up-regulation at both mRNA and protein levels. Knockdown of FGFR4 expression by small interfering RNA caused a decrease in phospho-extracellular signal-regulated kinase 1/2 levels and reduced Bcl-xl expression. Moreover, an antagonistic FGFR4 antibody suppressed the resistance of cancer cells with endogenous FGFR4 expression against apoptosis-inducing chemotherapeutic agents.
Conclusion:
Based on these findings, we propose an antiapoptotic signaling pathway that is initiated by FGFR4 and regulating the expression of Bcl-xl through the mitogen-activated protein kinase cascade. Our findings are exemplary for a novel strategy toward the elucidation of diverse signaling pathways that define antiapoptotic potential in cancer cells. These observations open new avenues toward the diagnosis of chemoresistant tumors and therapies targeting FGFR4-overexpressing cancers.
Insights
Fibroblast growth factor receptor 4 (FGFR4) promotes cancer cell survival by up-regulating Bcl-xl, conferring resistance to chemotherapy. Targeting FGFR4 offers a new strategy for treating chemoresistant cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Antiapoptotic signaling pathways in cancer cells are a key reason for chemotherapy failure.
- Understanding these pathways is crucial for developing effective cancer treatments.
Purpose of the Study:
- To investigate the mechanisms of chemotherapy resistance by identifying antiapoptotic signaling pathways.
- To explore the role of fibroblast growth factor receptor 4 (FGFR4) in chemoresistance.
Main Methods:
- Gene expression analysis of chemotherapy-selected cancer cell clones using macroarrays.
- Functional studies including apoptosis assays, small interfering RNA (siRNA) knockdown, and use of an antagonistic antibody targeting FGFR4.
- Analysis of downstream signaling molecules like Bcl-xl and extracellular signal-regulated kinase (ERK).
Main Results:
- FGFR4 gene expression was significantly upregulated in chemotherapy-resistant cancer cell clones.
- Overexpression of FGFR4 reduced apoptosis sensitivity to chemotherapeutic agents (doxorubicin, cyclophosphamide) and increased Bcl-xl expression.
- Knockdown of FGFR4 increased apoptosis sensitivity, decreased Bcl-xl, and reduced phospho-ERK levels.
- An antagonistic FGFR4 antibody diminished chemoresistance in cancer cells with endogenous FGFR4.
Conclusions:
- A novel antiapoptotic signaling pathway initiated by FGFR4, regulating Bcl-xl via the MAPK cascade, was proposed.
- FGFR4 plays a critical role in conferring chemoresistance by promoting cell survival.
- Targeting FGFR4 presents a promising therapeutic strategy for chemoresistant cancers and aids in diagnosing FGFR4-overexpressing tumors.
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