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Published on: January 22, 2019
Elraglusib (formerly 9-ING-41) possesses potent anti-lymphoma properties which cannot be attributed to GSK3
Josh T Coats1, Sudhir Tauro2, Calum Sutherland3
1Division of Cellular and Systems Medicine, School of Medicine, University of Dundee, Ninewells Hospital and Medical School, Dundee, UK.
Abstract:
Elraglusib (formerly 9-ING-41) is an ATP-competitive inhibitor of glycogen synthase kinase-3β (GSK3β) undergoing clinical trials for the treatment of various cancers including non-Hodgkin lymphoma (NHL). The drug reduces proliferation of several NHL cell lines and has efficacy in xenograft models of the disease. To confirm the importance of its action on GSK3β, we treated 3 lymphoma cell lines with selective, structurally distinct GSK3 inhibitors: CT99021, SB216763, LY2090314, tideglusib, and elraglusib. Stabilization of β-catenin and reduced phosphorylation of CRMP2, two validated targets of GSK3, were used as functional read-outs for GSK3 inhibition. CT99021, SB216763, and LY2090314 failed to reduce proliferation or viability in any cell line at concentrations that stabilized β-catenin and reduced CRMP2 phosphorylation. There was partial reduction of CRMP2 phosphorylation but no significant effect on β-catenin at cytotoxic doses of elraglusib. There was no indication of GSK3 inhibition at doses of tideglusib that affected cell viability and apoptosis. Cell-free kinase screening confirmed several other targets of elraglusib, distinct from the GSK3 inhibitors with no anti-lymphoma actions, including PIM kinases and MST2. These data question GSK3 as the target of elraglusib in lymphoma, and hence the utility of GSK3 expression as a 'stand-alone', therapeutic biomarker in NHL. Video Abstract.
Insights
Elraglusib
Area of Science:
- Oncology
- Molecular Biology
- Pharmacology
Background:
- Elraglusib is investigated for non-Hodgkin lymphoma (NHL) treatment, targeting glycogen synthase kinase-3 beta (GSK3β).
- Previous studies suggested elraglusib reduces NHL cell proliferation and shows efficacy in xenograft models.
Discussion:
- This study evaluated elraglusib and other GSK3 inhibitors (CT99021, SB216763, LY2090314, tideglusib) in lymphoma cell lines.
- GSK3 inhibition was assessed by monitoring beta-catenin stabilization and CRMP2 phosphorylation.
- Several GSK3 inhibitors, including elraglusib, did not effectively inhibit GSK3 targets at concentrations affecting cell viability.
Key Insights:
- Elraglusib demonstrated limited GSK3 inhibition in lymphoma cells, with no significant beta-catenin stabilization.
- Cell-free kinase screening identified PIM kinases and MST2 as additional targets of elraglusib.
- These findings challenge the role of GSK3 as the primary target of elraglusib in lymphoma.
Outlook:
- The study questions the utility of GSK3 expression as a standalone biomarker for elraglusib therapy in NHL.
- Further research is needed to elucidate elraglusib's mechanism of action and identify predictive biomarkers.
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