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A Pan-RAS Inhibitor with a Unique Mechanism of Action Blocks Tumor Growth and Induces Antitumor Immunity in
Jeremy B Foote1, Tyler E Mattox2, Adam B Keeton3,4
1Department of Microbiology, University of Alabama at Birmingham, Birmingham, Alabama.
Abstract:
Activated RAS is a common driver of cancer that was considered undruggable for decades. Recent advances have enabled the development of RAS inhibitors, but the efficacy of these inhibitors remains limited by resistance. In this study, we developed a pan-RAS inhibitor, ADT-007, (Z)-2-(5-fluoro-1-(4-hydroxy-3,5-dimethoxybenzylidene)-2-methyl-1H-inden-3-yl)-N-(furan-2-ylmethyl)acetamide, that binds nucleotide-free RAS to block GTP activation of effector interactions and MAPK/AKT signaling, resulting in mitotic arrest and apoptosis. ADT-007 potently inhibited the growth of RAS-mutant cancer cells irrespective of the RAS mutation or isozyme. Wild-type RAS (RASWT) cancer cells with GTP-activated RAS from upstream mutations were equally sensitive. Conversely, RASWT cancer cells harboring downstream BRAF mutations and normal cells were essentially insensitive to ADT-007. Sensitivity of cancer cells to ADT-007 required activated RAS and dependence on RAS for proliferation, whereas insensitivity was attributed to metabolic deactivation by UDP-glucuronosyltransferases that were expressed in RASWT and normal cells but repressed in RAS-mutant cancer cells. ADT-007 displayed unique advantages over KRAS mutant-specific, pan-KRAS, and pan-RAS inhibitors that could impact in vivo antitumor efficacy by escaping compensatory mechanisms that lead to resistance. Local administration of ADT-007 showed robust antitumor activity in syngeneic immunocompetent and xenogeneic immune-deficient mouse models of colorectal and pancreatic cancers. The antitumor activity of ADT-007 was associated with the suppression of MAPK signaling and activation of innate and adaptive immunity in the tumor immune microenvironment. Oral administration of ADT-007 prodrug also inhibited tumor growth. Thus, ADT-007 has the potential to address the complex RAS mutational landscape of many human cancers and to improve treatment of RAS-driven tumors. Significance: ADT-007, a first-in-class pan-RAS inhibitor, has unique selectivity for cancer cells with mutant RAS or activated RAS protein and the capability to circumvent resistance to suppress tumor growth, supporting further development of ADT-007 analogs.
Insights
A novel pan-RAS inhibitor, ADT-007, effectively targets RAS-mutant cancers by blocking RAS signaling, leading to tumor cell death. It shows promise in overcoming resistance mechanisms and improving treatment for RAS-driven tumors.
Area of Science:
- Oncology
- Molecular Biology
- Drug Discovery
Background:
- Activated RAS proteins are key drivers in many cancers, historically considered undruggable.
- Existing RAS inhibitors face limitations due to resistance mechanisms, impacting clinical efficacy.
- A need exists for novel inhibitors targeting a broader range of RAS mutations and overcoming resistance.
Purpose of the Study:
- To develop and characterize ADT-007, a novel pan-RAS inhibitor.
- To evaluate the efficacy and selectivity of ADT-007 against RAS-driven cancers.
- To investigate the mechanisms underlying ADT-007's activity and potential to circumvent resistance.
Main Methods:
- Synthesis and chemical characterization of ADT-007, a pan-RAS inhibitor.
- In vitro assessment of ADT-007's effects on cancer cell proliferation, signaling pathways (MAPK/AKT), and apoptosis.
- In vivo evaluation of ADT-007's antitumor activity in preclinical mouse models of colorectal and pancreatic cancers.
Main Results:
- ADT-007 potently inhibited growth in RAS-mutant cancer cells, irrespective of RAS isozyme or specific mutation.
- Sensitivity was linked to RAS activation and proliferation dependence, while resistance was associated with UDP-glucuronosyltransferase expression.
- ADT-007 demonstrated robust antitumor activity in vivo, suppressed MAPK signaling, and modulated the tumor immune microenvironment.
Conclusions:
- ADT-007 is a first-in-class pan-RAS inhibitor with unique selectivity for activated RAS.
- It effectively suppresses tumor growth by blocking RAS signaling and circumventing resistance mechanisms.
- ADT-007 shows significant potential for treating diverse RAS-driven cancers, warranting further clinical development.
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