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Structural Basis of Targeting the Exportin CRM1 in Cancer
Achim Dickmanns1, Thomas Monecke2, Ralf Ficner3
1Abteilung für Molekulare Strukturbiologie, Institut für Mikrobiologie und Genetik, GZMB, Georg-August-Universität Göttingen, Justus-von-Liebig-Weg 11, Göttingen 37077, Germany. adickma@uni-goettingen.de.
Abstract:
Recent studies have demonstrated the interference of nucleocytoplasmic trafficking with the establishment and maintenance of various cancers. Nucleocytoplasmic transport is highly regulated and coordinated, involving different nuclear transport factors or receptors, importins and exportins, that mediate cargo transport from the cytoplasm into the nucleus or the other way round, respectively. The exportin CRM1 (Chromosome region maintenance 1) exports a plethora of different protein cargoes and ribonucleoprotein complexes. Structural and biochemical analyses have enabled the deduction of individual steps of the CRM1 transport cycle. In addition, CRM1 turned out to be a valid target for anticancer drugs as it exports numerous proto-oncoproteins and tumor suppressors. Clearly, detailed understanding of the flexibility, regulatory features and cooperative binding properties of CRM1 for Ran and cargo is a prerequisite for the design of highly effective drugs. The first compound found to inhibit CRM1-dependent nuclear export was the natural drug Leptomycin B (LMB), which blocks export by competitively interacting with a highly conserved cleft on CRM1 required for nuclear export signal recognition. Clinical studies revealed serious side effects of LMB, leading to a search for alternative natural and synthetic drugs and hence a multitude of novel therapeutics. The present review examines recent progress in understanding the binding mode of natural and synthetic compounds and their inhibitory effects.
Insights
Nuclear export via CRM1 is crucial in cancer. This review explores natural and synthetic compounds targeting CRM1, aiming for effective anticancer drugs with fewer side effects than Leptomycin B.
Area of Science:
- Molecular Biology
- Oncology
- Pharmacology
Background:
- Nucleocytoplasmic trafficking is implicated in cancer development and progression.
- CRM1 (Chromosome region maintenance 1) is a key nuclear export receptor involved in transporting numerous proteins and RNA.
- CRM1 is a validated target for anticancer drug development due to its role in exporting oncoproteins and tumor suppressors.
Purpose of the Study:
- To review recent advancements in understanding the binding mechanisms of CRM1 inhibitors.
- To explore the development of novel natural and synthetic compounds targeting CRM1 for cancer therapy.
Main Methods:
- Structural and biochemical analyses of the CRM1 transport cycle.
- Review of preclinical and clinical data on CRM1 inhibitors.
- Analysis of binding modes and inhibitory effects of natural and synthetic compounds.
Main Results:
- Leptomycin B (LMB) was the first identified CRM1 inhibitor, but exhibits significant side effects.
- Numerous natural and synthetic compounds have been developed as alternative CRM1 inhibitors.
- Understanding CRM1's flexibility and binding properties is essential for designing effective drugs.
Conclusions:
- CRM1 remains a promising target for novel anticancer therapeutics.
- Further research into CRM1-compound interactions can lead to more effective and safer cancer treatments.
- Development of alternative CRM1 inhibitors is crucial to overcome the limitations of existing drugs like LMB.
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