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Molecular mechanism and therapeutic implications of selinexor (KPT-330) in liposarcoma
Manoj Garg1,2, Deepika Kanojia1, Anand Mayakonda1
1Cancer Science Institute (CSI) of Singapore, National University of Singapore, Singapore.
Abstract:
Exportin-1 mediates nuclear export of multiple tumor suppressor and growth regulatory proteins. Aberrant expression of exportin-1 is noted in human malignancies, resulting in cytoplasmic mislocalization of its target proteins. We investigated the efficacy of selinexor against liposarcoma cells both in vitro and in vivo. Exportin-1 was highly expressed in liposarcoma samples and cell lines as determined by immunohistochemistry, western blot, and immunofluorescence assay. Knockdown of endogenous exportin-1 inhibited proliferation of liposarcoma cells. Selinexor also significantly decreased cell proliferation as well as induced cell cycle arrest and apoptosis of liposarcoma cells. The drug also significantly decreased tumor volumes and weights of liposarcoma xenografts. Importantly, selinexor inhibited insulin-like growth factor 1 (IGF1) activation of IGF-1R/AKT pathway through upregulation of insulin-like growth factor binding protein 5 (IGFBP5). Further, overexpression and knockdown experiments showed that IGFBP5 acts as a tumor suppressor and its expression was restored upon selinexor treatment of liposarcoma cells. Selinexor decreased aurora kinase A and B levels in these cells and inhibitors of these kinases suppressed the growth of the liposarcoma cells. Overall, our study showed that selinexor treatment restored tumor suppressive function of IGFBP5 and inhibited aurora kinase A and B in liposarcoma cells supporting the usefulness of selinexor as a potential therapeutic strategy for the treatment of this cancer.
Insights
Selinexor effectively treats liposarcoma by targeting exportin-1, restoring tumor suppressors, and inhibiting key growth pathways. This research supports selinexor as a promising new therapy for liposarcoma.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Exportin-1 (XPO1) facilitates nuclear export of tumor suppressors; its aberrant expression in cancers causes protein mislocalization.
- Liposarcoma exhibits high XPO1 expression, correlating with disease progression.
Purpose of the Study:
- To evaluate the efficacy of selinexor, an XPO1 inhibitor, in liposarcoma models.
- To elucidate the molecular mechanisms underlying selinexor's anti-cancer effects in liposarcoma.
Main Methods:
- Immunohistochemistry, Western blot, and immunofluorescence assays were used to assess XPO1 expression.
- In vitro and in vivo studies involved liposarcoma cell lines and xenografts treated with selinexor.
- Gene knockdown and overexpression experiments were performed to investigate IGFBP5 and kinase roles.
Main Results:
- Selinexor significantly reduced liposarcoma cell proliferation, induced cell cycle arrest, and promoted apoptosis.
- In vivo, selinexor decreased tumor volume and weight in liposarcoma xenografts.
- Selinexor restored tumor suppressor IGFBP5 expression, inhibited IGF-1R/AKT signaling, and decreased aurora kinase A/B levels.
Conclusions:
- Selinexor demonstrates potent anti-liposarcoma activity by targeting XPO1.
- Restoration of IGFBP5 and inhibition of aurora kinases are key mechanisms of selinexor's efficacy.
- Selinexor represents a promising therapeutic strategy for liposarcoma treatment.
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