The Deubiquitinating Enzyme USP14 Regulates Leukemic Chemotherapy Drugs-Induced Cell Apoptosis by Suppressing Ubiquitination of Aurora Kinase B
- Cell Physiol Biochem. 2017;42(3):965-973. doi: 10.1159/000478679.
Background/aims: Aurora Kinase B is a mitotic checkpoint kinase that plays a pivotal role in Mitosis by ensuring correct chromosome segregation and normal progression through Mitosis. Aurora B has been found to be amplified and overexpressed in several types of leukemia. The deubiquitinating enzyme USP14 is one of three proteasome-associated deubiquitinating Enzymes and plays critical roles in diverse biological processes including Cancer. However, whether USP14 has a role in leukemia cells remains elusive.
Methods: Leukemic U937, NB4 and Jurkat cells were treated with diverse apoptosis-inducing drugs. The interaction between USP14 and Aurora B were determined by Western blot. The effect of USP14 in the regulation of Aurora B was detected by cycloheximide (CHX) and deubiquitination assays. FACS assay was used to determine the Apoptosis ratio of cells after treatments.
Results: We found that Aurora B was ubiquitinated and degraded during leukemic chemotherapy drugs-induced cell Apoptosis. FBXW7 mediated Aurora B ubiquitination and degradation during chemotherapeutic drugs-induced Apoptosis. USP14 associated with Aurora B and prevented Aurora B degradation. Functionally, overexpression of USP14 inhibits chemotherapeutic drugs-induced Apoptosis in leukemia cells. On the contrary, administration of b-AP15, a specific inhibitor of USP14, significantly increased leukemia cells Apoptosis in a dose-dependent manner.
Conclusion: Thus, our data suggest that USP14 plays a novel critical role of in leukemia cells Apoptosis through Aurora B stabilization and USP14 could be a potential therapeutic target for leukemia.
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Cat. No.Product NameDescriptionTargetResearch Area
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Research Areas: Cancer
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target: ADC Payloads; Antibiotic; Bacterial; Topoisomerase; AMPK; HIV; Autophagy; Mitophagy; Apoptosis; HBV; Fluorescent Dye