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Importins and exportins as therapeutic targets in cancer
Amit Mahipal1, Mokenge Malafa2
1Department of Oncology, Mayo Clinic, Rochester, MN 55905, United States.
Abstract:
The nuclear transport proteins, importins and exportins (karyopherin-β proteins), may play an important role in cancer by transporting key mediators of oncogenesis across the nuclear membrane in cancer cells. During nucleocytoplasmic transport of tumor suppressor proteins and cell cycle regulators during the processing of these proteins, aberrant cellular growth signaling and inactivation of apoptosis can occur, both critical to growth and development of tumors. Karyopherin-β proteins bind to these cargo proteins and RanGTP for active transport across the nuclear membrane through the nuclear pore complex. Importins and exportins are overexpressed in multiple tumors including melanoma, pancreatic, breast, colon, gastric, prostate, esophageal, lung cancer, and lymphomas. Furthermore, some of the karyopherin-β proteins such as exportin-1 have been implicated in drug resistance in cancer. Importin and exportin inhibitors are being considered as therapeutic targets against cancer and have shown preclinical anticancer activity. Moreover, synergistic activity has been observed with various chemotherapeutic and targeted agents. However, clinical development of the exportin-1 inhibitor leptomycin B was stopped due to adverse events, including vomiting, anorexia, and dehydration. Selinexor, a selective nuclear export inhibitor, is being tested in multiple clinical trials both as a single agent and in combination with chemotherapy. Selinexor has demonstrated clinical activity in multiple cancers, especially acute myelogenous leukemia and multiple myeloma. The roles of other importin and exportin inhibitors still need to be investigated clinically. Targeting the key mediators of nucleocytoplasmic transport in cancer cells represents a novel strategy in cancer intervention with the potential to significantly affect outcomes.
Insights
Nuclear transport proteins, importins and exportins, are crucial in cancer by moving oncogenesis mediators. Inhibitors show promise, with Selinexor demonstrating clinical activity in certain cancers.
Area of Science:
- Oncology
- Molecular Biology
- Cell Biology
Background:
- Nuclear transport proteins, importins and exportins (karyopherin-β proteins), are implicated in cancer progression.
- These proteins facilitate the transport of oncogenic and tumor suppressor proteins, influencing cell growth and apoptosis.
- Overexpression of importins and exportins is observed in various cancers, including breast, lung, and pancreatic cancer.
Purpose of the Study:
- To explore the role of nuclear transport proteins in cancer development and progression.
- To evaluate the therapeutic potential of importin and exportin inhibitors in cancer treatment.
- To review the clinical development and efficacy of selective nuclear export inhibitors.
Main Methods:
- Review of scientific literature on nuclear transport proteins in cancer.
- Analysis of preclinical and clinical data on importin and exportin inhibitors.
- Examination of drug resistance mechanisms involving karyopherin-β proteins.
Main Results:
- Importins and exportins are overexpressed in numerous cancers and are involved in drug resistance.
- Preclinical studies show anticancer activity for importin and exportin inhibitors, often synergistically with other agents.
- Selinexor, a selective nuclear export inhibitor, has shown clinical activity in acute myelogenous leukemia and multiple myeloma.
Conclusions:
- Targeting nuclear transport pathways represents a novel and promising strategy for cancer intervention.
- Further clinical investigation of importin and exportin inhibitors is warranted.
- Selective nuclear export inhibitors like Selinexor offer potential for treating various malignancies.
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