Targeting the Otub1/c-Maf axis for the treatment of multiple myeloma
Yujia Xu1,2, Min Xu3, Jiefei Tong4
1Guangzhou Institute of Cardiovascular Diseases, Guangdong Key Laboratory of Vascular Diseases, State Key Laboratory of Respiratory Diseases, The Second Affiliated Hospital-Guangdong Key Laboratory of Protein Modification and Degradation, School of Basic Medical Sciences, Guangzhou Medical University, Guangzhou, People's Republic of China.
Abstract:
The oncogenic transcription factor c-Maf has been proposed as an ideal therapeutic target for multiple myeloma (MM), but how to achieve it is still elusive. In the present study, we found the Otub1/c-Maf axis could be a potential target. Otub1, an OTU family deubiquitinase, was found to interact with c-Maf by mass spectrometry. Otub1 abrogates c-Maf K48-linked polyubiquitination, thus preventing its degradation and enhancing its transcriptional activity. Specifically, this deubiquitinating activity depends on its Lys71 and the N terminus but is independent of UBE2O, a known E2 of c-Maf. Otub1 promotes MM cell survival and MM tumor growth. In contrast, silence of Otub1 leads to c-Maf degradation and c-Maf-expressing MM cell apoptosis. Therefore, the Otub1/c-Maf axis could be a therapeutic target of MM. In order to explore this concept, we performed a c-Maf recognition element-driven luciferase-based screen against US Food and Drug Administration-approved drugs and natural products, from which the generic cardiac glycoside lanatoside C (LanC) is found to prevent c-Maf deubiquitination and induces its degradation by disrupting the interaction of Otub1 and c-Maf. Consequently, LanC inhibits c-Maf transcriptional activity, induces c-Maf-expressing MM cell apoptosis, and suppresses MM growth and prolongs overall survival of model mice, but without apparent toxicity. Therefore, the present study identifies Otub1 as a novel deubiquitinase of c-Maf and establishes that the Otub1/c-Maf axis is a potential therapeutic target for MM.
Insights
The Otub1 deubiquitinase stabilizes the oncogenic transcription factor c-Maf in multiple myeloma (MM). Targeting the Otub1/c-Maf axis with lanatoside C inhibits MM growth and improves survival.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The transcription factor c-Maf is a therapeutic target for multiple myeloma (MM).
- The mechanism to target c-Maf in MM remains unclear.
- Otub1 is an OTU family deubiquitinase.
Purpose of the Study:
- To investigate the Otub1/c-Maf axis as a potential therapeutic target for MM.
- To identify compounds that disrupt the Otub1/c-Maf interaction.
Main Methods:
- Mass spectrometry to identify Otub1 interaction with c-Maf.
- Luciferase-based drug screen using a c-Maf recognition element.
- In vitro and in vivo studies in MM models.
Main Results:
- Otub1 deubiquitinates c-Maf, preventing its degradation and enhancing its activity.
- Otub1 promotes MM cell survival and tumor growth.
- Lanatoside C disrupts the Otub1/c-Maf interaction, leading to c-Maf degradation and MM cell apoptosis.
- Lanatoside C suppresses MM growth and prolongs survival in mice without toxicity.
Conclusions:
- Otub1 is a novel deubiquitinase of c-Maf.
- The Otub1/c-Maf axis is a viable therapeutic target for MM.
- Lanatoside C shows potential as an MM therapeutic agent by targeting the Otub1/c-Maf axis.
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