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BACH1 Promotes Temozolomide Resistance in Glioblastoma through Antagonizing the Function of p53
Er Nie1, Xin Jin1, Weining Wu1
1Department of Neurosurgery, the First Affiliated Hospital of Nanjing Medical University, Nanjing 210029, China.
Abstract:
The acquisition of drug resistance is a persistent clinical problem limiting the successful treatment of glioblastoma (GBM). However, the molecular mechanisms by which initially chemoresponsive tumors develop therapeutic resistance remain poorly understood. In this study, we report that BACH1, a heme-binding protein that participates in transcriptional repression or activation, was significantly upregulated in glioblastoma tissues. Overexpression of BACH1 in GBM cells conferred resistance to temozolomide, whereas its inhibition markedly sensitized resistant cells to temozolomide in vitro and in vivo. Further investigation revealed that BACH1 activation significantly enhanced the expression of MGMT, and depletion of p53 disrupted the effects of BACH1 on MGMT and temozolomide resistance. P53 sequesters SP1 to prevent its binding to the MGMT promoter region and thus inhibits MGMT expression. Moreover, BACH1 overexpression impaired the association between p53 and SP1 via competitive binding p53, and antagonized the impact of p53 on MGMT expression. Finally, we found that BACH1 low expression correlated with better prognosis in GBM patients undergoing temozolomide therapy, especially in patients with wild-type TP53. Collectively, our findings identify a potential mechanism by which wild-type TP53 GBM cells develop resistance to temozolomide and suggest that targeting this pathway may be beneficial for overcoming resistance.
Insights
BACH1 upregulation promotes glioblastoma resistance to temozolomide by increasing MGMT expression. Inhibiting BACH1 or targeting this pathway may overcome drug resistance, especially in patients with wild-type TP53.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Drug resistance is a major challenge in glioblastoma (GBM) treatment.
- The molecular mechanisms driving therapeutic resistance in GBM are not fully understood.
Purpose of the Study:
- To investigate the role of BACH1 in temozolomide resistance in glioblastoma.
- To elucidate the molecular mechanisms underlying BACH1-mediated drug resistance.
Main Methods:
- Assessed BACH1 expression in glioblastoma tissues.
- Utilized cell culture and in vivo models to study the effects of BACH1 overexpression and inhibition on temozolomide sensitivity.
- Investigated the interaction between BACH1, p53, SP1, and MGMT expression.
Main Results:
- BACH1 was significantly upregulated in glioblastoma tissues.
- BACH1 overexpression conferred temozolomide resistance, while its inhibition sensitized resistant cells.
- BACH1 enhanced MGMT expression, and this effect was dependent on p53 status.
- BACH1 impaired p53-SP1 interaction, leading to increased MGMT expression and temozolomide resistance.
- Low BACH1 expression correlated with better prognosis in GBM patients, particularly those with wild-type TP53.
Conclusions:
- BACH1 plays a critical role in the development of temozolomide resistance in glioblastoma.
- Targeting the BACH1 pathway, especially in wild-type TP53 GBM, could be a strategy to overcome drug resistance.
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