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Updated: Oct 21, 2025

Generation of Prostate Cancer Cell Models of Resistance to the Anti-mitotic Agent Docetaxel
Published on: September 8, 2017
GADD45B Is a Potential Diagnostic and Therapeutic Target Gene in Chemotherapy-Resistant Prostate Cancer
Qiong Wang1,2,3, Wanhua Wu1,3, Ze Gao1,3
1Department of Urology, Sun Yat-sen Memorial Hospital, Sun Yat-sen University, Guangzhou, China.
Background:
Chemoresistance is the major cause of death in advanced prostate cancer (PCa), especially in metastatic PCa (mPCa). However, the molecular mechanisms underlying the chemoresistance of PCa remain unclear. Understanding the reason behind the drug resistance would be helpful in developing new treatment approaches.
Methods:
The Cancer Genome Atlas, Gene Expression Omnibus datasets, and clinical samples were used to examine the correlation between growth arrest and DNA damage-inducible 45 beta (GADD45B) with clinical characteristics and prognosis. Lentiviral transfection was used to construct GADD45B overexpression cell lines. Hypoxic incubator, low serum medium, or docetaxel was used to build environmental stress model or chemotherapy cell model. The MTS assay and colony formation assay were used to test cell viability. Apoptosis and cell cycle were detected by flow cytometry. The RNA and protein levels of related biomarkers were tested by Western blotting and quantitative polymerase chain reaction. Bioinformatics analysis after RNA sequencing was performed to identify the possible mechanism of how GADD45B regulates chemotherapy resistance.
Results:
GADD45B was related to distant metastasis but not to Gleason score, prostate-specific antigen level, T stage, or lymph node metastasis and indicated a good prognosis. The level of GADD45B increased significantly in PCa cells that faced environmental stress. It was found that a high level of GADD45B significantly enhanced the chemosensitivity. Furthermore, high GADD45B promoted cell apoptosis via mitogen-activated protein kinase (MAPK) pathway.
Conclusion:
GADD45B promoted chemosensitivity of prostate cancer through MAPK pathway. GADD45B could serve as a diagnostic biomarker and therapeutic target for mPCa or chemotherapy-resistant patients.
Insights
Growth arrest and DNA damage-inducible 45 beta (GADD45B) enhances prostate cancer (PCa) chemosensitivity. High GADD45B promotes apoptosis via the MAPK pathway, offering a potential therapeutic target for chemoresistant metastatic PCa.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Chemoresistance is a primary cause of mortality in advanced and metastatic prostate cancer (PCa).
- Molecular mechanisms driving PCa chemoresistance are not fully understood.
- Identifying drivers of drug resistance is crucial for developing novel therapeutic strategies.
Purpose of the Study:
- To investigate the correlation between growth arrest and DNA damage-inducible 45 beta (GADD45B) and clinical characteristics in PCa.
- To determine the role of GADD45B in regulating chemoresistance in PCa.
- To elucidate the molecular pathways involved in GADD45B-mediated chemoresistance.
Main Methods:
- Analysis of The Cancer Genome Atlas, Gene Expression Omnibus datasets, and clinical PCa samples.
- Construction of GADD45B-overexpressing PCa cell lines using lentiviral transfection.
- Assessment of cell viability, apoptosis, cell cycle, and biomarker expression under various stress and chemotherapy conditions.
- RNA sequencing and bioinformatics analysis to identify regulatory mechanisms.
Main Results:
- GADD45B expression correlated with distant metastasis and favorable prognosis in PCa.
- GADD45B levels significantly increased in PCa cells under environmental stress.
- Elevated GADD45B enhanced chemosensitivity and promoted apoptosis through the mitogen-activated protein kinase (MAPK) pathway.
Conclusions:
- GADD45B enhances prostate cancer chemosensitivity by activating the MAPK pathway.
- GADD45B shows potential as a diagnostic biomarker for chemoresistant PCa.
- GADD45B represents a promising therapeutic target for metastatic and chemotherapy-resistant prostate cancer.
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