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Identification of Transcription Factor Regulators using Medium-Throughput Screening of Arrayed Libraries and a Dual-Luciferase-Based Reporter
Published on: March 27, 2020
EZH1/2 inhibition selectively targets SMARCA4/2 co-deficient lung cancer cells by suppressing stemness and
Jeongjae Lee1, Jaeik Oh2, Soyeon Kim3
1Cancer Research Institute, Seoul National University, Seoul, Republic of Korea; Integrated Major in Innovative Medical Science, Seoul National University Graduate School, Seoul, Republic of Korea.
Abstract:
SMARCA4-deficient thoracic malignancies comprise biologically heterogeneous tumors, ranging from conventional non-small cell lung cancer with SMARCA4 alterations to thoracic SMARCA4-deficient undifferentiated tumor (SMARCA4-UT), an aggressive entity frequently associated with concomitant SMARCA2 loss. However, the extent to which SMARCA4-deficient lung cancer cell lines recapitulate SMARCA4-UT-like biology remains incompletely defined. Here, we characterized lung cancer cell lines across distinct SMARCA4 and SMARCA2 states and identified a subgroup with SMARCA4/2 co-deficiency that exhibited reduced expression of epithelial lineage markers and transcriptional similarity to SMARCA4-UT and other SWI/SNF-deficient malignancies. The EZH1/2 inhibitor HM97662 selectively suppressed growth in SMARCA4/2-deficient cells, with limited effects in SMARCA2-proficient cells. EZH1/2 inhibition broadly reduced H3K27me3 and induced derepression of PRC2 targets regardless of drug sensitivity. However, its biological effects were most pronounced in SMARCA4/2-deficient cells, where it promoted apoptosis, reduced stemness marker expression, attenuated the SMARCA4-UT-associated transcriptional signature, and suppressed proliferative and mTORC1-related programs. Chromatin accessibility analysis further revealed cell-line-specific patterns of accessibility loss, with reduced accessibility at stemness-associated transcription factor motif-enriched regions coupled with transcriptional repression of nearby genes in SMARCA4/2-deficient cells. These findings support dual EZH1/2 inhibition as a potential therapeutic vulnerability in SMARCA4/2-deficient, SMARCA4-UT-like lung cancer cells.
Insights
SMARCA4/2-deficient lung cancers share traits with aggressive SMARCA4-UT tumors. Dual EZH1/2 inhibition selectively targets these cells, offering a potential therapeutic strategy for this challenging malignancy.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Genomics
Background:
- SMARCA4-deficient thoracic malignancies are diverse, including aggressive SMARCA4-deficient undifferentiated tumor (SMARCA4-UT), often with SMARCA2 loss.
- The biological characteristics of SMARCA4-deficient lung cancer cell lines relative to SMARCA4-UT are not fully understood.
Purpose of the Study:
- To characterize lung cancer cell lines with different SMARCA4 and SMARCA2 statuses.
- To investigate the therapeutic potential of EZH1/2 inhibition in SMARCA4/2-deficient cells.
Main Methods:
- Characterization of lung cancer cell lines with varying SMARCA4/SMARCA2 expression.
- Treatment with EZH1/2 inhibitor HM97662.
- Analysis of gene expression, H3K27me3 levels, apoptosis, stemness markers, and chromatin accessibility.
Main Results:
- A subgroup of SMARCA4/2-co-deficient cells exhibited SMARCA4-UT-like transcriptional profiles and reduced epithelial markers.
- HM97662 selectively inhibited growth and induced apoptosis in SMARCA4/2-deficient cells.
- EZH1/2 inhibition reduced stemness, attenuated SMARCA4-UT signatures, and suppressed proliferative pathways in these cells, linked to chromatin accessibility changes.
Conclusions:
- SMARCA4/2-co-deficient lung cancer cells share biological features with SMARCA4-UT.
- Dual EZH1/2 inhibition represents a potential therapeutic vulnerability in SMARCA4/2-deficient, SMARCA4-UT-like lung cancers.
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