NDUFA4L2 promotes trastuzumab resistance in HER2-positive breast cancer
Yuan Yuan1, Huanyao Gao2, Yongxian Zhuang2
1Department of Chemotherapy, Jiangsu Cancer Hospital & Jiangsu Institute of Cancer Research & The Affiliated Cancer Hospital of Nanjing Medical University, No42 Baiziting, Nanjing, Jiangsu 210009, China.
Background:
Trastuzumab (Herceptin) is the key systemic therapy for HER2-positive breast cancer. However, the initial response rate is limited to approximately 50% in patients. Moreover, most patients, especially at an advanced stage, eventually develop acquired resistance. Understanding the mechanisms of trastuzumab resistance is crucial for achieving better treatment outcome in this group of patients.
Methods:
A trastuzumab-resistant (TR) cell line was developed using the BT474 HER2-positive breast cancer cell line. Whole-transcriptome expression array was performed and the TR-related gene NDUFA4L2 was identified by differential expression analysis between BT474 and BT474-TR. Mitochondrial localization of NDUFA4L2 was confirmed by immunofluorescence and western blotting using mitochondrial fractionation. Mitochondrial function and energy metabolism were evaluated using Seahorse, ATP production, and lactate production assays, and cellular reactive oxygen species (ROS) levels were determined using DCFDA. NDUFA4L2 expression in patients was evaluated by immunohistochemistry, and relapse-free survival was analyzed using the Kaplan-Meier method.
Results:
NDUFA4L2 was highly expressed in the TR HER2-positive breast cancer cell line. High expression level of NDUFA4L2 was associated with shorter relapse-free intervals in trastuzumab-treated HER2-positive breast cancer patients. Overexpression of NDUFA4L2 enhanced Warburg effects, enhanced aerobic glycolysis, reduced oxygen consumption, and lowered ROS production. Mechanistically, overexpression of NDUFA4L2 facilitated mitochondrial relocalization of HER2 and suppressed ROS production, thus rendering cancer cells more resistant to trastuzumab treatment.
Conclusions:
We identified NDUFA4L2 as a new biomarker and potential therapeutic target for TR HER2-positive breast cancer.
Insights
NDUFA4L2 is a novel biomarker and therapeutic target for trastuzumab-resistant HER2-positive breast cancer. Its overexpression enhances resistance by altering cellular metabolism and HER2 localization, impacting patient relapse-free survival.
Area of Science:
- Oncology
- Molecular Biology
- Biochemistry
Background:
- Trastuzumab is a key therapy for HER2-positive breast cancer, but limited response rates and acquired resistance remain significant challenges.
- Understanding the molecular mechanisms underlying trastuzumab resistance is critical for improving patient outcomes.
- Acquired resistance to trastuzumab affects a substantial proportion of patients, particularly those with advanced disease.
Purpose of the Study:
- To identify novel genes associated with trastuzumab resistance in HER2-positive breast cancer.
- To investigate the functional role of NDUFA4L2 in mediating trastuzumab resistance.
- To evaluate NDUFA4L2 as a potential biomarker and therapeutic target.
Main Methods:
- Developed a trastuzumab-resistant (TR) cell line from BT474 HER2-positive breast cancer cells.
- Utilized whole-transcriptome expression arrays to identify differentially expressed genes, pinpointing NDUFA4L2.
- Confirmed NDUFA4L2 mitochondrial localization and assessed its impact on cellular metabolism, reactive oxygen species (ROS) production, and HER2 signaling.
Main Results:
- NDUFA4L2 was significantly upregulated in the TR cell line and associated with shorter relapse-free survival in patients.
- Overexpression of NDUFA4L2 promoted aerobic glycolysis (Warburg effect) and reduced oxygen consumption and ROS levels.
- NDUFA4L2 facilitated HER2 mitochondrial relocalization, contributing to trastuzumab resistance.
Conclusions:
- NDUFA4L2 is identified as a novel biomarker for trastuzumab resistance in HER2-positive breast cancer.
- NDUFA4L2 represents a potential therapeutic target to overcome or prevent trastuzumab resistance.
- Targeting NDUFA4L2 may offer a strategy to improve treatment efficacy in resistant HER2-positive breast cancer.
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