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Updated: May 27, 2026

Proximity Ligand Assay to Localize Proteins in DNA Damage Sites
Published on: August 2, 2024
Filamin-A as a marker and target for DNA damage based cancer therapy
Jingyin Yue1, Huimei Lu, Jingmei Liu
1Department of Radiation Oncology, The Cancer Institute of New Jersey, UMDNJ-Robert Wood Johnson Medical School, 195 Little Albany St., New Brunswick, NJ 08903, USA.
Abstract:
Filamin-A, also called actin binding protein 280 (ABP-280), cross-links the actin filaments into dynamic orthogonal network to serve as scaffolds in multiple signaling pathways. It has been reported that filamin-A interacts with DNA damage response proteins BRCA1 and BRCA2. Defects of filamin-A impair the repair of DNA double strand breaks (DSBs), resulting in sensitization of cells to ionizing radiation. In this study, we sought to test the hypothesis that filamin-A can be used as a target for cancer chemotherapy and as a biomarker to predict cancer response to therapeutic DNA damage. We found that reduction of filamin-A sensitizes cancer cells to chemotherapy reagents bleomycin and cisplatin, delays the repair of not only DSBs but also single strand breaks (SSBs) and interstrand crosslinks (ICLs), and increases chromosome breaks after the drug treatment. By treating a panel of human melanoma cell lines with variable filamin-A expression, we observed a correlation between expression level of filamin-A protein and drug IC(50). We further inhibited the expression of filamin-A in melanoma cells, and found that this confers an increased sensitivity to bleomycin and cisplatin treatment in a mouse xenograft tumor model. These results suggest that filamin-A plays a role in repair of a variety of DNA damage, that lack of filamin-A is a prognostic marker for a better outcome after DNA damage based treatment, and filamin-A can be inhibited to sensitize filamin-A positive cancer cells to therapeutic DNA damage. Thus filamin-A can be used as a biomarker and a target for DNA damage based cancer therapy.
Insights
Filamin-A protein is crucial for repairing DNA damage. Reducing filamin-A sensitizes cancer cells to chemotherapy, suggesting it
Area of Science:
- Molecular Biology
- Cancer Research
- DNA Repair Mechanisms
Background:
- Filamin-A (ABP-280) cross-links actin filaments, acting as a scaffold in signaling pathways.
- Filamin-A interacts with BRCA1/BRCA2, and its defects impair DNA double-strand break (DSB) repair, sensitizing cells to radiation.
Purpose of the Study:
- To investigate filamin-A as a potential target for cancer chemotherapy.
- To evaluate filamin-A as a biomarker for predicting cancer response to DNA-damaging therapies.
Main Methods:
- Assessing the effect of filamin-A reduction on cancer cell sensitivity to bleomycin and cisplatin.
- Analyzing DNA repair kinetics (DSBs, SSBs, ICLs) and chromosome integrity after drug treatment.
- Correlating filamin-A protein levels with drug IC50 in melanoma cell lines.
- Evaluating filamin-A inhibition in a mouse xenograft model.
Main Results:
- Filamin-A reduction sensitized cancer cells to bleomycin and cisplatin.
- Filamin-A deficiency delayed repair of DSBs, SSBs, and ICLs, and increased chromosome breaks.
- A correlation was observed between filamin-A expression and drug IC50 in melanoma cells.
- Inhibition of filamin-A increased sensitivity to bleomycin and cisplatin in a xenograft model.
Conclusions:
- Filamin-A is involved in repairing various DNA damages.
- Low filamin-A expression is a prognostic marker for better outcomes in DNA damage-based therapy.
- Filamin-A can be targeted to sensitize cancers to DNA-damaging agents, positioning it as a biomarker and therapeutic target.

