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The Absence of PTEN in Breast Cancer Is a Driver of MLN4924 Resistance
Meng-Ge Du1, Zhi-Qiang Peng2,3, Wen-Bin Gai2,4
1The Municipal Key Laboratory for Liver Protection and Regulation of Regeneration, Department of Cell Biology, Capital Medical University, Beijing, China.
Abstract:
Background: Numerous studies have indicated that the neddylation pathway is closely associated with tumor development. MLN4924 (Pevonedistat), an inhibitor of the NEDD8-activating E1 enzyme, is considered a promising chemotherapeutic agent. Recently, we demonstrated that neddylation of the tumor suppressor PTEN occurs under high glucose conditions and promotes breast cancer development. It has been shown, however, that PTEN protein levels are reduced by 30-40% in breast cancer. Whether this PTEN deficiency affects the anti-tumor function of MLN4924 is unknown. Methods: In the present study, cell counting kit-8 and colony formation assays were used to detect cell proliferation, and a transwell system was used to quantify cell migration. A tumor growth assay was performed in BALB/c nude mice. The subcellular location of PTEN was detected by fluorescence microscopy. The CpG island of the UBA3 gene was predicted by the Database of CpG Islands and UCSC database. Western blotting and qRT-PCR were used to measure the expression of indicated proteins. The Human Protein Atlas database, the Cancer Genome Atlas and Gene Expression Omnibus datasets were used to validate the expression levels of UBA3 in breast cancer. Results: Our data show that the anti-tumor efficacy of MLN4924 in breast cancer cells was markedly reduced with the deletion of PTEN. PI3K/Akt signaling pathway activity correlated positively with UBA3 expression. Pathway activity correlated negatively with NEDP1 expression in PTEN-positive breast cancer patients, but not in PTEN-negative patients. We also demonstrate that high glucose conditions upregulate UBA3 mRNA by inhibiting UBA3 promoter methylation, and this upregulation results in the overactivation of PTEN neddylation in breast cancer cells. Conclusion: These data suggest a mechanism by which high glucose activates neddylation. PTEN is critical, if not indispensable, for MLN4924 suppression of tumor growth; PTEN status thus may help to identify MLN4924-responsive breast cancer patients.
Insights
The tumor suppressor PTEN is essential for the anti-tumor effects of MLN4924 (Pevonedistat) in breast cancer. PTEN deficiency reduces MLN4924 efficacy, suggesting PTEN status can predict patient response to this chemotherapy.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- The neddylation pathway is implicated in tumor development, with MLN4924 (Pevonedistat) showing promise as a chemotherapeutic agent.
- PTEN neddylation under high glucose promotes breast cancer, yet PTEN levels are often reduced in breast cancer.
- The impact of PTEN deficiency on MLN4924's anti-tumor activity remains unclear.
Purpose of the Study:
- To investigate the role of PTEN in the efficacy of MLN4924 in breast cancer.
- To elucidate the mechanism by which high glucose influences neddylation and PTEN.
- To determine if PTEN status can predict response to MLN4924 treatment.
Main Methods:
- Cell proliferation, migration, and tumor growth assays were employed.
- Subcellular localization of PTEN, protein and mRNA expression (Western blotting, qRT-PCR), and UBA3 gene methylation were analyzed.
- Bioinformatic databases (Human Protein Atlas, TCGA, GEO) were used to validate UBA3 expression in breast cancer.
Main Results:
- MLN4924's anti-tumor efficacy was significantly reduced in PTEN-deleted breast cancer cells.
- PI3K/Akt signaling correlated positively with UBA3 expression and negatively with NEDP1 in PTEN-positive patients.
- High glucose upregulates UBA3 mRNA via promoter demethylation, leading to increased PTEN neddylation.
Conclusions:
- High glucose activates neddylation through UBA3 upregulation, promoting breast cancer.
- PTEN is crucial for MLN4924's tumor-suppressive function.
- PTEN status may serve as a biomarker for identifying patients who will respond to MLN4924.
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