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Combined HASPIN and mTOR inhibition is synergistic against KRAS-driven carcinomas
Chenyue Xu1, Qiongmei Gao2, Zhengming Wu3
1Department of Pathology, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China; Department of Pharmacology, School of Pharmacy, Fudan University, Shanghai 201203, China.
Background:
Oncogenic mutations in the KRAS gene are very common in human cancers, resulting in cells with well-characterized selective advantages. For more than three decades, the development of effective therapeutics to inhibit KRAS-driven tumorigenesis has proved a formidable challenge and KRAS was considered 'undruggable'. Therefore, multi-targeted therapy may provide a reasonable strategy for the effective treatment of KRAS-driven cancers. Here, we assess the efficacy and mechanistic rationale for combining HASPIN and mTOR inhibition as a potential therapy for cancers carrying KRAS mutations.
Methods:
We investigated the synergistic effect of a combination of mTOR and HASPIN inhibitors on cell viability, cell cycle, cell apoptosis, DNA damage, and mitotic catastrophe using a panel of human KRAS-mutant and wild-type tumor cell lines. Subsequently, the human transplant models were used to test the therapeutic efficacy and pharmacodynamic effects of the dual therapy.
Results:
We demonstrated that the combination of mTOR and HASPIN inhibitors induced potent synergistic cytotoxic effects in KRAS-mutant cell lines and delayed the growth of human tumor xenograft. Mechanistically, we showed that inhibiting of mTOR potentiates HASPIN inhibition by preventing the phosphorylation of H3 histones, exacerbating mitotic catastrophe and DNA damage in tumor cell lines with KRAS mutations, and this effect is due in part to a reduction in VRK1.
Conclusions:
These findings indicate that increased DNA damage and mitotic catastrophe are the basis for the effective synergistic effect observed with mTOR and HASPIN inhibition, and support the clinical evaluation of this dual therapy in patients with KRAS-mutant tumors.
Insights
Combining HASPIN and mTOR inhibitors shows synergistic effects against KRAS-mutant cancers by increasing DNA damage and mitotic catastrophe. This dual therapy warrants clinical evaluation for KRAS-mutant tumors.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- KRAS mutations are prevalent in human cancers, presenting a significant therapeutic challenge.
- KRAS-driven tumorigenesis has historically been difficult to target effectively.
- Multi-targeted therapies offer a promising strategy for KRAS-mutant cancers.
Purpose of the Study:
- To assess the efficacy of combining HASPIN and mTOR inhibition for KRAS-mutant cancers.
- To elucidate the mechanistic rationale behind this dual therapy approach.
Main Methods:
- Investigated synergistic effects of mTOR and HASPIN inhibitors on cancer cell lines (viability, cell cycle, apoptosis, DNA damage, mitotic catastrophe).
- Utilized human tumor xenograft models to evaluate therapeutic efficacy and pharmacodynamics of the dual therapy.
Main Results:
- The combination therapy demonstrated potent synergistic cytotoxic effects in KRAS-mutant cell lines.
- Dual inhibition delayed tumor growth in human xenograft models.
- Mechanistically, mTOR inhibition enhanced HASPIN inhibition by reducing VRK1, leading to increased H3 histone phosphorylation, mitotic catastrophe, and DNA damage.
Conclusions:
- The synergistic effect of combined mTOR and HASPIN inhibition is mediated by increased DNA damage and mitotic catastrophe.
- This dual therapy strategy shows potential for treating KRAS-mutant cancers.
- Clinical evaluation of this combination therapy in patients with KRAS-mutant tumors is supported.
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