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Published on: September 30, 2019
Targeting the heparin-binding domain of fibroblast growth factor receptor 1 as a potential cancer therapy
Ling Ling1, Si Kee Tan2, Ting Hwee Goh1
1Institute of Medical Biology, Agency for Science, Technology and Research (A*STAR), 8A Biomedical Grove, #06-06 Immunos, Singapore, 138648, Singapore.
Background:
Aberrant activation of fibroblast growth factor receptors (FGFRs) deregulates cell proliferation and promotes cell survival, and may predispose to tumorigenesis. Therefore, selective inactivation of FGFRs is an important strategy for cancer therapy. Here as a proof-of-concept study, we developed a FGFR1 neutralizing antisera, IMB-R1, employing a novel strategy aimed at preventing the access of essential heparan sulfate (HS) co-receptors to the heparin-binding domain on FGFR1.
Methods:
The mRNA and protein expression level of FGFR1 and other FGFRs were examined in several lines of breast cancer and osteosarcoma cells and corresponding normal cells using Taqman real-time quantitative PCR and Western blot analysis. The specificity of IMB-R1 against FGFR1 was assessed with various ELISA-based approaches and Receptor Tyrosine Kinase array. Proliferation assay and apoptosis analysis were performed to assess the effect of IMB-R1 on cancer cell growth and apoptosis, respectively, in comparison with known FGFR1 inhibitors. The IMB-R1 induced alteration of intracellular signaling and gene expression were analysed using Western blot and microarray approaches. Immunohistochemical staining of FGFR1 using IMB-R1 were carried out in different cancer tissues from clinical patients. Throughout the study, statistical differences were determined by Student's t test where appropriate and reported when a p value was less than 0.05.
Results:
We demonstrate that IMB-R1 is minimally cross-reactive for other FGFRs, and that it potently and specifically inhibits binding of heparin to FGFR1. Furthermore, IMB-R1 blocks the interaction of FGF2 with FGFR1, the kinase activity of FGFR1 and activation of intracellular FGFR signaling. Cancer cells treated with IMB-R1 displayed impaired FGF2 signaling, were unable to grow and instead underwent apoptosis. IMB-R1-induced cell death correlated with a disruption of antioxidative defense networks and increased expression of several tumor suppressors and apoptotic proteins, including p53. Immunostaining with IMB-R1 was stronger in human cancer tissues in which the FGFR1 gene is amplified.
Conclusion:
Our study suggests that blocking HS interaction with the heparin-binding domains of FGFR1 inhibited cancer cell growth, which can be an attractive strategy to inactivate cancer-related heparin-binding proteins.
Insights
A novel antibody, IMB-R1, effectively blocks fibroblast growth factor receptor 1 (FGFR1) signaling by preventing heparan sulfate (HS) interaction. This inhibition halts cancer cell growth and promotes apoptosis, offering a new therapeutic strategy.
Area of Science:
- Oncology
- Molecular Biology
- Immunotherapy
Background:
- Aberrant fibroblast growth factor receptor (FGFR) activation drives cancer cell proliferation and survival.
- Targeting FGFRs is a key strategy in cancer therapy.
- A novel neutralizing antisera, IMB-R1, was developed to target FGFR1.
Purpose of the Study:
- To develop and validate a novel FGFR1 neutralizing antisera, IMB-R1.
- To investigate the mechanism of action of IMB-R1 in inhibiting FGFR1 signaling.
- To assess the therapeutic potential of IMB-R1 in cancer treatment.
Main Methods:
- Quantification of FGFR expression in cancer cells and tissues via qPCR and Western blot.
- Assessment of IMB-R1 specificity using ELISA and Receptor Tyrosine Kinase arrays.
- Evaluation of IMB-R1's impact on cancer cell proliferation, apoptosis, intracellular signaling, and gene expression.
Main Results:
- IMB-R1 specifically inhibits heparin binding to FGFR1 and blocks FGF2 interaction and kinase activity.
- IMB-R1 treatment induces cancer cell apoptosis, impairs FGF2 signaling, and disrupts antioxidative defenses.
- Stronger FGFR1 immunostaining with IMB-R1 observed in human cancers with FGFR1 gene amplification.
Conclusions:
- Blocking HS interaction with FGFR1 heparin-binding domains effectively inhibits cancer cell growth.
- IMB-R1 demonstrates potential as a therapeutic agent for FGFR1-dependent cancers.
- This strategy offers a novel approach to inactivate cancer-related heparin-binding proteins.
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