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LSD1/KDM1 isoform LSD1+8a contributes to neural differentiation in small cell lung cancer
Takanobu Jotatsu1,2,3, Shigehiro Yagishita1,2, Ken Tajima1,2
1Department of Respiratory Medicine, Juntendo University, Faculty of Medicine, 2-1-1 Hongo, Bunkyo-Ku, Tokyo 113-8421, Japan.
Abstract:
Small cell lung cancer (SCLC) is an aggressive neuroendocrine tumor characterized by rapid progression. The mechanisms that lead to a shift from initial therapeutic sensitivity to ultimate therapeutic resistance are poorly understood. Although the SCLC genomic landscape led to the discovery of promising agents targeting genetic alterations that were already under investigation, results have been disappointing. Achievements in targeted therapeutics have not been observed for over 30 years. Therefore, the underlying disease biology and novel targets urgently require a better understanding. Epigenetic regulation is deeply involved in the cellular plasticity that could shift tumor cells to the malignant phenotype. We have focused on a histone modifier, LSD1, that is overexpressed in SCLC and is a potent therapeutic target. Interestingly, the LSD1 splice variant LSD1+8a, the expression of which has been reported to be restricted to neural tissue, was detected and was involved in the expression of neuroendocrine marker genes in SCLC cell lines. Cells with high expression of LSD1+8a were resistant to CDDP and LSD1 inhibitor. Moreover, suppression of LSD1+8a inhibited cell proliferation, indicating that LSD1+8a could play a critical role in SCLC. These findings suggest that LSD1+8a should be considered a novel therapeutic target in SCLC.
Insights
Small cell lung cancer (SCLC) resistance stems from epigenetic shifts. Targeting the LSD1+8a variant, crucial for neuroendocrine gene expression, offers a promising therapeutic strategy for SCLC.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Small cell lung cancer (SCLC) is an aggressive neuroendocrine tumor with rapid progression.
- Therapeutic resistance mechanisms in SCLC remain poorly understood, hindering treatment advancements.
- Novel therapeutic targets are urgently needed due to decades of disappointing results from targeted therapies.
Purpose of the Study:
- To investigate the role of the histone modifier LSD1 and its splice variant LSD1+8a in SCLC.
- To explore LSD1+8a as a potential therapeutic target in SCLC.
Main Methods:
- Analysis of LSD1 and LSD1+8a expression in SCLC cell lines.
- Assessment of LSD1+8a involvement in neuroendocrine marker gene expression.
- Evaluation of the impact of LSD1+8a expression on resistance to CDDP and LSD1 inhibitors.
- Investigation of cell proliferation following LSD1+8a suppression.
Main Results:
- The LSD1 splice variant LSD1+8a was detected and involved in neuroendocrine marker gene expression in SCLC.
- High LSD1+8a expression correlated with resistance to CDDP and LSD1 inhibitors.
- Suppression of LSD1+8a inhibited SCLC cell proliferation.
Conclusions:
- LSD1+8a plays a critical role in SCLC progression and therapeutic resistance.
- LSD1+8a represents a novel and promising therapeutic target for small cell lung cancer.

