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Published on: May 15, 2019
Dual targeting of protein translation and nuclear protein export results in enhanced antimyeloma effects
Shirong Li1, Jing Fu1, Christopher J Walker2
1Department of Medicine, College of Physicians and Surgeons, Columbia University, New York, NY.
Abstract:
Selinexor (KPT-330) is a small molecule inhibitor of XPO1, which mediates the transport of tumor suppressor proteins, oncogene messenger RNAs, and other proteins involved in governing cell growthfrom the cell nucleus to the cytoplasm. It is overexpressed in many cancer types. Because eukaryotic translation initiator factor 4E (eIF4E) plays a critical role in protein translation in cancer cells in multiple myeloma (MM), we evaluated the effectiveness of combined inhibition of protein translation and nuclear export in MM. Selinexor, an inhibitor of nuclear protein export, dose-dependently decreased eIF4E, IKZF1, and c-MYC protein levels. Using a doxycycline-inducible-pLKO-Tet-On vector, knockdown of eIF4E significantly enhanced the antiproliferative effects of selinexor, sensitized resistant MM cells to selinexor, and increased apoptosis in MM cells. Immunofluorescent analysis of MM cells showed that the combined treatment increased the localization of residual eIF4E to the nucleus compared with selinexor-only treatment. The overexpression of eIF4E at least partially rescued the effects of selinexor in MM cells by reducing G1 cell cycle arrest and increasing the selinexor-IC50 10-fold. Moreover, the combination of selinexor with pharmacologic inhibitors of protein translation showed synergistic anti-MM effects. These results suggest a synergistic anti-MM effect of selinexor combined with eIF4E inhibitors in vitro. Our work provides a better understanding of the potential mechanism of resistance to selinexor and a rationale for combining selinexor with eIF4E inhibitors for the treatment of MM.
Insights
Combining selinexor with eIF4E inhibitors shows synergistic effects against multiple myeloma (MM) cells in vitro. This approach enhances selinexor
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Selinexor inhibits XPO1, crucial for nuclear export of tumor suppressors and oncogenic factors.
- XPO1 is overexpressed in many cancers, including multiple myeloma (MM).
- Eukaryotic translation initiator factor 4E (eIF4E) is vital for protein translation in cancer cells.
Purpose of the Study:
- To evaluate the combined efficacy of inhibiting protein translation and nuclear export in MM.
- To investigate the synergistic anti-MM effects of selinexor and eIF4E inhibition.
Main Methods:
- Dose-dependent protein level analysis of eIF4E, IKZF1, and c-MYC.
- Gene knockdown of eIF4E using a doxycycline-inducible vector.
- Immunofluorescent analysis to assess protein localization.
- Assessment of cell cycle arrest and drug sensitivity (IC50).
Main Results:
- Selinexor decreased eIF4E, IKZF1, and c-MYC levels.
- eIF4E knockdown potentiated selinexor's antiproliferative and pro-apoptotic effects.
- Combined treatment increased nuclear localization of eIF4E.
- Overexpression of eIF4E conferred partial resistance to selinexor.
- Synergistic anti-MM effects were observed with combined selinexor and protein translation inhibitors.
Conclusions:
- Combined inhibition of nuclear export (selinexor) and protein translation (eIF4E inhibitors) demonstrates synergistic anti-MM activity in vitro.
- This combination strategy offers a potential therapeutic approach for MM treatment.
- Understanding eIF4E's role provides insights into selinexor resistance mechanisms.
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