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Published on: October 2, 2015
Anticancer Effects of Mesothelin-Targeted Immunotoxin Therapy Are Regulated by Tyrosine Kinase DDR1
Fatima Ali-Rahmani1, David J FitzGerald1, Scott Martin2
1Laboratory of Molecular Biology, Center for Cancer Research, NCI, Bethesda, Maryland.
Abstract:
Recombinant immunotoxins (RIT) have been highly successful in cancer therapy due, in part, to the high cancer-specific expression of cell surface antigens such as mesothelin, which is overexpressed in mesothelioma, ovarian, lung, breast, and pancreatic cancers, but is limited in normal cells. RG7787 is a clinically optimized RIT consisting of a humanized anti-mesothelin Fab fused to domain III of Pseudomonas exotoxin A, in which immunogenic B-cell epitopes are silenced. To enhance the therapeutic efficacy of RITs, we conducted a kinome RNAi sensitization screen, which identified discoidin domain receptor 1 (DDR1), a collagen-activated tyrosine kinase, as a potential target. The collagen/DDR1 axis is implicated in tumor-stromal interactions and potentially affects tumor response to therapy. Therefore, we investigated the effects of DDR1 on RIT. Knockdown of DDR1 by siRNA or treatment with inhibitor, 7rh, greatly enhanced the cytotoxic activity of RG7787 in several cancer cell lines. Investigation into the mechanism of action showed DDR1 silencing was associated with decreased expression of several ribosomal proteins and enhanced inhibition of protein synthesis. Conversely, induction of DDR1 expression or collagen-stimulated DDR1 activity protected cancer cells from RG7787 killing. Moreover, the combination of RG7787 and DDR1 inhibitor caused greater shrinkage of tumor xenografts than either agent alone. These data demonstrate that DDR1 is a key modulator of RIT activity and represents a novel therapeutic strategy to improve targeting of mesothelin-expressing cancers.
Insights
Targeting discoidin domain receptor 1 (DDR1) enhances recombinant immunotoxin (RIT) therapy for mesothelin-expressing cancers. Inhibiting DDR1 boosts RG7787
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Recombinant immunotoxins (RITs) target cancer-specific antigens like mesothelin, overexpressed in various cancers.
- RG7787 is a clinically optimized RIT targeting mesothelin, with silenced immunogenic epitopes.
- The collagen/discoidin domain receptor 1 (DDR1) axis influences tumor-stromal interactions and therapy response.
Purpose of the Study:
- To investigate the role of DDR1 in modulating RIT efficacy.
- To identify novel therapeutic strategies for enhancing RIT activity against mesothelin-expressing cancers.
Main Methods:
- Conducted a kinome RNAi sensitization screen to identify DDR1 as a potential target.
- Utilized siRNA for DDR1 knockdown and a DDR1 inhibitor (7rh) in cancer cell lines.
- Assessed RG7787 cytotoxicity, protein synthesis inhibition, and tumor xenograft growth.
Main Results:
- DDR1 knockdown or inhibition significantly enhanced RG7787's cytotoxic activity in cancer cells.
- DDR1 silencing led to decreased ribosomal protein expression and increased protein synthesis inhibition.
- Combined RG7787 and DDR1 inhibitor treatment resulted in superior tumor xenograft shrinkage compared to monotherapy.
Conclusions:
- DDR1 acts as a key modulator of RIT efficacy.
- Targeting the DDR1 pathway represents a novel therapeutic strategy to improve mesothelin-targeted cancer therapy.
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