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Sequencing Small Non-coding RNA from Formalin-fixed Tissues and Serum-derived Exosomes from Castration-resistant Prostate Cancer Patients
Published on: November 19, 2019
Selective inhibitors of nuclear export (SINE) as novel therapeutics for prostate cancer
Janet Mendonca1, Anup Sharma1, Hae-Soo Kim2
1Department of Oncology, The Sidney Kimmel Comprehensive Cancer Center, Johns Hopkins Medical Institutions, Baltimore, MD; These authors contributed equally to this work.
Abstract:
Mislocalization of proteins is a common feature of cancer cells. Since localization of proteins is tightly linked to its function, cancer cells can inactivate function of a tumor suppressor protein through mislocalization. The nuclear exportin CRM1/XPO 1 is upregulated in many cancers. Targeting XPO 1 can lead to nuclear retention of cargo proteins such as p53, Foxo, and BRCA1 leading to cell cycle arrest and apoptosis. We demonstrate that selective inhibitors of nuclear export (SINE) can functionally inactivate XPO 1 in prostate cancer cells. Unlike the potent, but toxic, XPO 1 inhibitor leptomycin B, SINE inhibitors (KPT-185, KPT-330, and KPT-251) cause a decrease in XPO 1 protein level through the proteasomal pathway. Treatment of prostate cancer cells with SINE inhibitors lead to XPO 1 inhibition, as evaluated by RevGFP export assay, leading to nuclear retention of p53 and Foxo proteins, consequently, triggering apoptosis. Our data reveal that treatment with SINE inhibitors at nanomolar concentrations results in decrease in proliferation and colonogenic capacity of prostate cancer cells by triggering apoptosis without causing any cell cycle arrest. We further demonstrate that SINE inhibitors can be combined with other chemotherapeutics like doxorubicin to achieve enhanced growth inhibition of prostate cancer cells. Since SINE inhibitors offer increased bioavailability, reduced toxicity to normal cells, and are orally available they can serve as effective therapeutics against prostate cancer. In conclusion, our data reveals that nucleocytoplasmic transport in prostate cancer can be effectively targeted by SINE inhibitors.
Insights
Selective inhibitors of nuclear export (SINE) target XPO 1 in prostate cancer cells, causing apoptosis and reduced proliferation. These orally available drugs offer reduced toxicity and enhanced therapeutic potential against cancer.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Protein mislocalization is a hallmark of cancer, often inactivating tumor suppressors.
- Nuclear exportin CRM1/XPO 1 is frequently upregulated in various cancers.
- XPO 1 inhibition can restore nuclear localization of tumor suppressors like p53, Foxo, and BRCA1, inducing apoptosis.
Purpose of the Study:
- To investigate the efficacy of selective inhibitors of nuclear export (SINE) in prostate cancer.
- To evaluate the mechanism of action and therapeutic potential of SINE compounds against prostate cancer cells.
Main Methods:
- Treatment of prostate cancer cells with SINE inhibitors (KPT-185, KPT-330, KPT-251).
- Assessment of XPO 1 inhibition using the RevGFP export assay.
- Analysis of p53 and Foxo protein localization via Western blotting.
- Evaluation of cell proliferation, apoptosis, and colony formation assays.
- Combination studies with doxorubicin.
Main Results:
- SINE inhibitors functionally inactivated XPO 1 in prostate cancer cells.
- SINEs induced nuclear retention of p53 and Foxo, triggering apoptosis.
- Low nanomolar concentrations of SINEs decreased proliferation and colonogenic capacity without cell cycle arrest.
- SINEs reduced XPO 1 protein levels via the proteasomal pathway.
- Combination therapy with doxorubicin enhanced growth inhibition.
Conclusions:
- Selective inhibitors of nuclear export (SINE) effectively target nucleocytoplasmic transport in prostate cancer.
- SINEs demonstrate therapeutic potential as orally available agents with reduced toxicity.
- SINEs induce apoptosis and inhibit proliferation in prostate cancer cells, offering a promising treatment strategy.
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