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UBE2D3 regulated by WTAP-mediated m6A modification inhibits temozolomide chemosensitivity in glioblastoma
Jing Bao1, Rui Sun1, Zhenjiang Pan2
1Department of Neurosurgery, Shidong Hospital, Yangpu District, Shidong Hospital Affiliated to University of Shanghai for Science and Technology, No. 999, Shiguang Road, Yangpu District, Shanghai, 200438, China.
Abstract:
To explore how the ubiquitin-conjugating enzyme E2D3 (UBE2D3) influences temozolomide (TMZ) resistance in glioblastoma (GBM), and to clarify the association between UBE2D3 and WTAP. The UBE2D3 protein expression in GBM tissues were detected using immunohistochemistry (IHC) through tissue microarrays. The potential pathways of UBE2D3 in TCGA-GBM were predicted via Gene Set Enrichment Analysis (GSEA). To investigate UBE2D3's role in TMZ resistance, GBM cells were transduced with UBE2D3 shRNA or overexpression lentivirus, followed by assessments of CCK-8, flow cytometry, comet assay, and western blot analysis. Furthermore, a subcutaneous tumor model was established in nude mice using U87 cells transduced with interfering lentivirus to observe tumor growth and assess cell apoptosis using TUNEL staining. Mechanically, m6A content analysis, m6A methylated RNA immunoprecipitation quantitative PCR, reporter gene assay, mRNA stability measurements, RNA immunoprecipitation, quantitative Real-Time PCR, and Western blot assays were carried out to verify the role of WTAP/IGF2BP1 in regulating UBE2D3 expression. UBE2D3 exhibited elevated expression levels in GBM tissues compared with normal brain tissues and was associated with the DNA repair signaling pathway. In both in vitro and in vivo studies, it was demonstrated that TMZ treatment combined with reduced UBE2D3 expression further suppressed U87 cell viability and tumor growth, with a notable increase in apoptosis rate and DNA damage. Conversely, the overexpression of UBE2D3 had the opposite impact. Furthermore, our findings revealed that WTAP promotes the m6A modification of UBE2D3 via an IGF2BP1-dependent mechanism. The WTAP-IGF2BP1 axis regulates UBE2D3 stability in an m6A-dependent manner, influencing tumor malignancy and TMZ chemosensitivity in GBM via the DNA repair signaling pathway.
Insights
The ubiquitin-conjugating enzyme E2D3 (UBE2D3) promotes glioblastoma resistance to temozolomide (TMZ) by stabilizing its expression. Inhibiting UBE2D3 enhances TMZ
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Glioblastoma (GBM) exhibits resistance to temozolomide (TMZ).
- The role of ubiquitin-conjugating enzyme E2D3 (UBE2D3) in GBM chemoresistance is not fully understood.
- WTAP's involvement in GBM malignancy and TMZ resistance requires further elucidation.
Purpose of the Study:
- To investigate the role of UBE2D3 in TMZ resistance in GBM.
- To clarify the association between UBE2D3 and WTAP in GBM.
- To elucidate the regulatory mechanism of UBE2D3 expression by WTAP/IGF2BP1 axis.
Main Methods:
- Immunohistochemistry (IHC) for UBE2D3 expression in GBM tissues.
- Gene Set Enrichment Analysis (GSEA) for pathway prediction.
- In vitro (cell lines) and in vivo (xenograft models) studies assessing UBE2D3's impact on TMZ resistance, cell viability, apoptosis, and DNA damage.
- Molecular assays including m6A analysis, RNA immunoprecipitation, and reporter gene assays to investigate WTAP/IGF2BP1-mediated regulation of UBE2D3.
Main Results:
- UBE2D3 expression is elevated in GBM tissues and associated with DNA repair pathways.
- Reduced UBE2D3 expression enhances TMZ-induced apoptosis and DNA damage, suppressing GBM cell viability and tumor growth.
- Overexpression of UBE2D3 confers TMZ resistance.
- WTAP promotes UBE2D3 m6A modification via IGF2BP1, stabilizing UBE2D3 and increasing tumor malignancy and TMZ resistance.
Conclusions:
- UBE2D3 is a key driver of TMZ resistance in GBM.
- The WTAP-IGF2BP1 axis regulates UBE2D3 stability through m6A modification.
- Targeting UBE2D3 or the WTAP-IGF2BP1 axis may represent a therapeutic strategy for overcoming TMZ resistance in GBM.
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