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Therapeutic Effects of XPO1 Inhibition in Thymic Epithelial Tumors
Fabio Conforti1,2, Xu Zhang3, Guanhua Rao1
1Department of Oncology, Georgetown University Medical Center, Washington, District of Columbia.
Abstract:
Exportin 1 (XPO1) mediates nuclear export of many cellular factors known to play critical roles in malignant processes, and selinexor (KPT-330) is the first XPO1-selective inhibitor of nuclear export compound in advanced clinical development phase for cancer treatment. We demonstrated here that inhibition of XPO1 drives nuclear accumulation of important cargo tumor suppressor proteins, including transcription factor FOXO3a and p53 in thymic epithelial tumor (TET) cells, and induces p53-dependent and -independent antitumor activity in vitro Selinexor suppressed the growth of TET xenograft tumors in athymic nude mice via inhibition of cell proliferation and induction of apoptosis. Loss of p53 activity or amplification of XPO1 may contribute to resistance to XPO1 inhibitor in TET. Using mass spectrometry-based proteomics analysis, we identified a number of proteins whose abundances in the nucleus and cytoplasm shifted significantly following selinexor treatment in the TET cells. Furthermore, we found that XPO1 was highly expressed in aggressive histotypes and advanced stages of human TET, and high XPO1 expression was associated with poorer patient survival. These results underscore an important role of XPO1 in the pathogenesis of TET and support clinical development of the XPO1 inhibitor for the treatment of patients with this type of tumors. Cancer Res; 77(20); 5614-27. ©2017 AACR.
Insights
Selinexor, an Exportin 1 (XPO1) inhibitor, shows promise in treating thymic epithelial tumors (TETs). It restores tumor suppressor proteins, inhibits cancer growth, and is linked to better patient survival in TETs.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Exportin 1 (XPO1) is crucial for exporting tumor suppressors from the nucleus.
- Selinexor is a novel XPO1 inhibitor in clinical cancer trials.
Purpose of the Study:
- To investigate the efficacy of selinexor in thymic epithelial tumors (TETs).
- To explore the role of XPO1 in TET pathogenesis and patient outcomes.
Main Methods:
- Treatment of TET cells and xenografts with selinexor.
- Analysis of tumor suppressor protein localization (e.g., FOXO3a, p53).
- Proteomics analysis to identify protein abundance changes.
- Correlation of XPO1 expression with human TET histotypes, stages, and survival.
Main Results:
- Selinexor induced nuclear accumulation of tumor suppressors (FOXO3a, p53) in TET cells.
- Selinexor demonstrated in vitro and in vivo antitumor activity by inhibiting proliferation and inducing apoptosis.
- XPO1 was highly expressed in aggressive TETs and associated with poorer survival.
- Potential resistance mechanisms include p53 loss or XPO1 amplification.
Conclusions:
- XPO1 inhibition is a viable therapeutic strategy for TETs.
- High XPO1 expression indicates poor prognosis in TET patients.
- Selinexor warrants further clinical investigation for TET treatment.
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