Transcriptome Profiling of Acquired Gefitinib Resistant Lung Cancer Cells Reveals Dramatically Changed Transcription
Nan Wei1,2, Yong'an Song1,2, Fan Zhang1
1Department of Respiratory and Critical Care Medicine, Henan Provincial People's Hospital, Zhengzhou University People's Hospital, Zhengzhou, China.
Abstract:
Background: Targeted therapy for lung cancer with epidermal growth factor receptor (EGFR) mutations with tyrosine kinase inhibitors (TKIs) represents one of the major breakthroughs in lung cancer management. However, gradually developed resistance to these drugs prevents sustained clinical benefits and calls for resistant mechanism research and identification of new therapeutic targets. Acquired T790M mutation accounts for the majority of resistance cases, yet transcriptome changes in these cells are less characterized, and it is not known if new treatment targets exist by available drugs. Methods: Transcriptome profiling was performed for lung cancer cell line PC9 and its resistant line PC9GR after long-term exposure to gefitinib through RNA sequencing. Differentially expressed genes and changed pathways were identified along with existing drugs targeting these upregulated genes. Using 144 lung cancer cell lines with both gene expression and drug response data from the cancer cell line encyclopedia (CCLE) and Cancer Therapeutics Response Portal (CTRP), we screened 549 drugs whose response was correlated with these upregulated genes in PC9GR cells, and top drugs were evaluated for their response in both PC9 and PC9GR cells. Results: In addition to the acquired T790M mutation, the resistant PC9GR cells had very different transcription programs from the sensitive PC9 cells. Multiple pathways were changed with the top ones including TNFA signaling, androgen/estrogen response, P53 pathway, MTORC1 signaling, hypoxia, and epithelial mesenchymal transition. Thirty-two upregulated genes had available drugs that can potentially be effective in treating the resistant cells. From the response profiles of CCLE, we found 17 drugs whose responses were associated with at least four of these upregulated genes. Among the four drugs evaluated (dasatinib, KPT-185, trametinib, and pluripotin), all except trametinib demonstrated strong inhibitory effects on the resistant PC9GR cells, among which KPT185 was the most potent. KPT-185 suppressed growth, caused apoptosis, and inhibited migration of the PC9GR cells at similar (or better) rates as the sensitive PC9 cells in a dose-dependent manner. Conclusions: Acquired TKI-resistant lung cancer cells (PC9GR) have dramatically changed transcription and pathway regulation, which expose new treatment targets. Existing drugs may be repurposed to treat those patients with developed resistance to TKIs.
Insights
Targeted therapy resistance in lung cancer can be overcome by repurposing existing drugs. This study identified new therapeutic targets in resistant cells, showing that drugs like KPT-185 can effectively inhibit cancer growth and survival.
Area of Science:
- Oncology
- Molecular Biology
- Genomics
Background:
- Targeted therapies like tyrosine kinase inhibitors (TKIs) are crucial for EGFR-mutated lung cancer.
- Acquired resistance, often due to T790M mutations, limits TKI efficacy.
- Transcriptome changes in resistant cells are not fully understood, hindering new target identification.
Purpose of the Study:
- To investigate transcriptome alterations in TKI-resistant lung cancer cells.
- To identify potential new therapeutic targets and repurposable drugs for TKI-resistant lung cancer.
- To evaluate the efficacy of candidate drugs against resistant lung cancer cell lines.
Main Methods:
- RNA sequencing was used to profile gene expression in gefitinib-sensitive (PC9) and resistant (PC9GR) lung cancer cells.
- Pathway analysis identified differentially expressed genes and altered biological pathways.
- Drug response data from CCLE and CTRP databases were used to screen for drugs targeting upregulated genes.
- In vitro assays evaluated the efficacy of selected drugs against PC9 and PC9GR cells.
Main Results:
- Resistant PC9GR cells exhibit distinct transcription programs compared to PC9 cells, with significant pathway alterations including TNFα signaling, androgen/estrogen response, and epithelial-mesenchymal transition.
- Thirty-two upregulated genes in resistant cells were associated with available drugs.
- Drug screening identified 17 drugs correlated with these upregulated genes; four drugs (dasatinib, KPT-185, trametinib, pluripotin) were evaluated.
- Dasatinib, KPT-185, and pluripotin showed strong inhibitory effects on PC9GR cells, with KPT-185 being the most potent, suppressing growth, inducing apoptosis, and inhibiting migration.
Conclusions:
- Acquired TKI resistance in lung cancer is associated with significant transcriptional and pathway dysregulation, revealing novel therapeutic vulnerabilities.
- Existing drugs, such as KPT-185, can be repurposed to effectively target and overcome TKI resistance in lung cancer.
- This research opens avenues for combination therapies and personalized treatment strategies for patients with resistant lung cancer.
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