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Targeting SLC7A5 in lung squamous cell carcinoma: implications for cancer metabolism shift and boron neutron capture
Yen-Ju Lin1,2, Yu-Cheng Wu1, Yu-Jui Liu1
1Institute of Biotechnology, National Tsing Hua University, Hsinchu, Taiwan.
Abstract:
Squamous cell carcinoma (SCC) poses a significant global health challenge due to the lack of effective treatments. Boron neutron capture therapy (BNCT), a targeted particle therapy, has shown promising results in various cancers. SLC7A5, a transporter of essential amino acids and boronophenylalanine (BPA) used in BNCT, emerges as a potential therapeutic target. However, its expression across different histological subtypes and the role of SLC7A5 inhibition in developing drug resistance to BPA-BNCT remain poorly understood. Our study reveals elevated SLC7A5 expression in most SCCs, particularly in lung squamous cell carcinoma (LUSC), where it is significantly higher compared to other lung cancer subtypes. Increased SLC7A5 expression and a higher tumor-to-normal (T/N) ratio in LUSC are associated with poor patient prognosis. SLC7A5 knockdown in LUSC cells reduces colony formation and induces apoptosis. RNA-seq analysis of SLC7A5 knockout LUSC cells shows downregulated mTORC1 signaling, reduced expression of other amino acid transporters, and upregulated autophagy genes, indicating a potential cancer metabolic shift. Furthermore, SLC7A5 knockout LUSC cells demonstrate resistance to BPA-BNCT but sensitivity to the autophagy inhibitor chloroquine. Post-BPA-BNCT treatment, surviving wild-type LUSC cells exhibit reduced SLC7A5 levels and increased sensitivity to chloroquine, highlighting a vulnerability in BPA-BNCT-resistant cells. Our findings elucidate the interplay between SLC7A5, mTOR signaling, and autophagy pathways, providing insights into potential strategies to overcome drug resistance in BPA-BNCT therapy.
Insights
Elevated SLC7A5 transporter expression in lung squamous cell carcinoma (LUSC) correlates with poor prognosis. Inhibiting SLC7A5 may overcome resistance to boron neutron capture therapy (BNCT) by targeting autophagy pathways.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Therapeutics
Background:
- Squamous cell carcinoma (SCC) lacks effective treatments.
- Boron neutron capture therapy (BNCT) shows promise for various cancers.
- SLC7A5 transporter's role in BNCT and SCC drug resistance is unclear.
Purpose of the Study:
- Investigate SLC7A5 expression in SCC subtypes.
- Determine SLC7A5's role in lung squamous cell carcinoma (LUSC) resistance to boronophenylalanine-BNCT (BPA-BNCT).
- Explore therapeutic strategies targeting SLC7A5 and associated pathways.
Main Methods:
- Analyzed SLC7A5 expression in SCC tissues.
- Utilized SLC7A5 knockdown and knockout in LUSC cells.
- Performed RNA-sequencing (RNA-seq) analysis.
- Assessed cell viability and apoptosis.
- Evaluated sensitivity to BPA-BNCT and chloroquine.
Main Results:
- Most SCCs show elevated SLC7A5, especially LUSC.
- High SLC7A5 and T/N ratio in LUSC predict poor prognosis.
- SLC7A5 inhibition in LUSC cells reduces proliferation and increases apoptosis.
- SLC7A5 knockout LUSC cells exhibit BPA-BNCT resistance but chloroquine sensitivity.
- Post-BNCT surviving cells show reduced SLC7A5 and increased chloroquine sensitivity.
Conclusions:
- SLC7A5 is a key factor in LUSC progression and BPA-BNCT resistance.
- SLC7A5 inhibition impacts mTORC1 signaling, amino acid transport, and autophagy.
- Targeting autophagy with chloroquine may overcome BPA-BNCT resistance in LUSC.
- Findings offer strategies to enhance BPA-BNCT efficacy in SCC.
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