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Published on: June 9, 2023
UBE3B promotes breast cancer progression by antagonizing HIF-2α degradation
Yijie Wang1, Xiong Liu2, Min Wang1
1Shandong Provincial Key Laboratory of Animal Resistance Biology, Collaborative Innovation Center of Cell Biology in Universities of Shandong, Center for Cell Structure and Function, Institute of Biomedical Science, College of Life Sciences, Shandong Normal University, Jinan, Shandong, 250014, China.
Abstract:
Mutations in E3 ubiquitin ligase UBE3B have been linked to Kaufman Oculocerebrofacial Syndrome (KOS). Accumulating evidence indicates that UBE3B may play an important role in cancer. However, the precise role of UBE3B in cancer and the underlying mechanism remain largely uncharted. Here, we reported that UBE3B is an E3 ligase for hypoxia-inducible factor 2α (HIF-2α). Mechanically, UBE3B physically interacts with HIF-2α and promotes its lysine 63 (K63)-linked polyubiquitination, thereby inhibiting the Von Hippel-Lindau (VHL) E3 ligase complex-mediated HIF-2α degradation. UBE3B depletion inhibits breast cancer cell proliferation, colony formation, migration, and invasion in vitro and suppresses breast tumor growth and lung metastasis in vivo. We further identified K394, K497, and K503 of HIF-2α as key ubiquitination sites for UBE3B. K394/497/503R mutation of HIF-2α dramatically abolishes UBE3B-mediated breast cancer growth and lung metastasis. Intriguingly, the protein levels of UBE3B are upregulated and positively correlated with HIF-2α protein levels in breast cancer tissues. These findings uncover a critical mechanism underlying the role of UBE3B in HIF-2α regulation and breast cancer progression.
Insights
The E3 ligase UBE3B targets HIF-2α for ubiquitination, inhibiting its degradation and promoting breast cancer growth. UBE3B upregulation correlates with HIF-2α in tumors, revealing a new cancer mechanism.
Area of Science:
- Molecular Biology
- Oncology
- Biochemistry
Background:
- Mutations in E3 ubiquitin ligase UBE3B are associated with Kaufman Oculocerebrofacial Syndrome (KOS).
- Emerging evidence suggests a significant role for UBE3B in cancer development.
- The specific function and mechanism of UBE3B in cancer remain largely unknown.
Purpose of the Study:
- To elucidate the role of UBE3B in cancer.
- To investigate the mechanism by which UBE3B influences cancer progression.
- To identify UBE3B as a potential therapeutic target in cancer treatment.
Main Methods:
- Investigated the interaction between UBE3B and hypoxia-inducible factor 2α (HIF-2α).
- Assessed the effect of UBE3B depletion on breast cancer cell proliferation, migration, and invasion in vitro.
- Evaluated the impact of UBE3B on tumor growth and metastasis in vivo.
- Identified key ubiquitination sites on HIF-2α using mutational analysis.
Main Results:
- UBE3B functions as an E3 ligase for HIF-2α, promoting its K63-linked polyubiquitination.
- UBE3B inhibits HIF-2α degradation mediated by the VHL E3 ligase complex.
- Depletion of UBE3B suppressed breast cancer cell proliferation, migration, invasion, tumor growth, and lung metastasis.
- Specific lysine residues (K394, K497, K503) on HIF-2α were identified as critical for UBE3B-mediated regulation.
- UBE3B and HIF-2α protein levels were found to be upregulated and positively correlated in breast cancer tissues.
Conclusions:
- UBE3B plays a critical role in regulating HIF-2α stability and function.
- UBE3B promotes breast cancer progression and metastasis through HIF-2α stabilization.
- The UBE3B-HIF-2α axis represents a potential therapeutic target for breast cancer treatment.
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