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Published on: May 30, 2025
LncRNA BC promotes lung adenocarcinoma progression by modulating IMPAD1 alternative splicing
Qi Wen Chen1,2, Qian Qian Cai3, Ying Yang4
1Department of Integrative Oncology, Fudan University Shanghai Cancer Center, Shanghai, P. R. China.
Background:
The therapeutic value of targeted therapies in patients with lung cancer is reduced when tumours acquire secondary resistance after an initial period of successful treatment. However, the molecular events behind the resistance to targeted therapies in lung cancer remain largely unknown.
Aims:
To discover the important role and mechanism of lncRNA BC in promoting tumor metastasis and influencing clinical prognosis of LUAD.
Materials & Methods:
Microarrays were used to screen a comprehensive set of lncRNAs with differential expression profiles in lung cancer cells. The functional role and mechanism of lncRNA were further investigated by gain- and loss-of-function assays. RNA pull-down, protein assays, and mass spectrometry were used to identify proteins that interacted with lncRNA. TaqMan PCR was used to measure lncRNA in lung adenocarcinoma and adjacent nontumor tissues from 428 patients. The clinical significance of lncRNA identified was statistically confirmed in this cohort of patients.
Results:
In this study, we show that the long non-coding RNA BC009639 (BC) is involved in acquired resistance to EGFR-targeted therapies. Among the 235 long non-coding RNAs that were differentially expressed in lung cancer cell lines, with different metastatic potentials, BC promoted growth, invasion, metastasis, and resistance to EGFR-tyrosine kinase inhibitors (EGFR-TKIs), both in vitro and in vivo. BC was highly expressed in 428 patients with lung adenocarcinoma (LUAD) and high BC expression correlated with reduced efficacy of EGFR-TKI therapy. To uncover the molecular mechanism of BC-mediated EGFR-TKI resistance in lung cancer, we screened and identified nucleolin and hnRNPK that interact with BC. BC formed the splicing complex with nucleolin and hnRNPK to facilitate the production of a non-protein-coding inositol monophosphatase domain containing 1 (IMPAD1) splice variant, instead of the protein-coding variant. The BC-mediated alternative splicing (AS) of IMPAD1 resulted in the induction of the epithelial-mesenchymal transition and resistance to EGFR-TKI in lung cancer. High BC expression correlated with clinical progress and poor survival among 402 patients with LUAD.
Disscussion:
Through alternative splicing, BC boosted the non-coding IMPAD1-203 transcript variant while suppressing the IMPAD1-201 variant. In order to control the processing of pre-mRNA, BC not only attracted RNA binding proteins (NCL, IGF2BP1) or splicing factors (hnRNPK), but also controlled the formation of the splicing-regulator complex by creating RNA-RNA-duplexes.
Conclusion:
Our results reveal an important role for BC in mediating resistance to EGFR-targeted therapy in LUAD through IMPAD1 AS and in implication for the targeted therapy resistance.
Insights
Long non-coding RNA BC promotes tumor metastasis and resistance to EGFR-targeted therapies in lung adenocarcinoma (LUAD) by altering IMPAD1 splicing. High BC expression correlates with poor prognosis and reduced treatment efficacy in LUAD patients.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Targeted therapies for lung cancer face challenges due to acquired tumor resistance.
- Molecular mechanisms underlying resistance to targeted therapies in lung cancer are not fully understood.
Purpose of the Study:
- Investigate the role of long non-coding RNA BC009639 (BC) in promoting tumor metastasis.
- Elucidate the mechanism by which BC influences clinical prognosis in lung adenocarcinoma (LUAD).
- Determine BC's role in acquired resistance to EGFR-targeted therapies.
Main Methods:
- Microarray analysis to screen differentially expressed long non-coding RNAs (lncRNAs).
- In vitro and in vivo gain- and loss-of-function assays to study lncRNA BC.
- RNA pull-down, protein assays, and mass spectrometry to identify interacting proteins.
- TaqMan PCR to quantify BC expression in patient tissues (n=428).
Main Results:
- BC promotes tumor growth, invasion, metastasis, and resistance to EGFR-tyrosine kinase inhibitors (EGFR-TKIs) in LUAD.
- BC is highly expressed in LUAD tissues and correlates with reduced EGFR-TKI efficacy.
- BC interacts with nucleolin and hnRNPK to promote alternative splicing of IMPAD1, favoring a non-coding variant.
- This alternative splicing induces epithelial-mesenchymal transition and EGFR-TKI resistance.
- High BC expression is linked to poor survival in LUAD patients (n=402).
Conclusions:
- BC plays a critical role in mediating resistance to EGFR-targeted therapy in LUAD.
- BC-induced alternative splicing of IMPAD1 is a key mechanism driving targeted therapy resistance.
- BC serves as a potential prognostic biomarker for LUAD patients undergoing targeted therapy.
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