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Updated: Apr 27, 2026

Mapping the Structure-Function Relationships of Disordered Oncogenic Transcription Factors Using Transcriptomic Analysis
Published on: June 27, 2020
Reversible LSD1 inhibition interferes with global EWS/ETS transcriptional activity and impedes Ewing sarcoma tumor
Savita Sankar1, Emily R Theisen2, Jared Bearss3
1Department of Oncological Sciences, University of Utah School of Medicine, Salt Lake City, Utah.
Purpose:
Ewing sarcoma is a pediatric bone tumor that absolutely relies on the transcriptional activity of the EWS/ETS family of fusion oncoproteins. While the most common fusion, EWS/FLI, utilizes lysine-specific demethylase 1 (LSD1) to repress critical tumor suppressors, small-molecule blockade of LSD1 has not yet been thoroughly explored as a therapeutic approach for Ewing sarcoma. We therefore evaluated the translational potential of potent and specific LSD1 inhibition with HCI2509 on the transcriptional program of both EWS/FLI and EWS/ERG as well as the downstream oncogenic phenotypes driven by EWS/ETS fusions in both in vitro and in vivo models of Ewing sarcoma.
Experimental Design:
RNA-seq was used to compare the transcriptional profiles of EWS/FLI, EWS/ERG, and treatment with HCI2509 in both EWS/FLI- and EWS/ERG-containing cell lines. We then evaluated morphologic phenotypes of treated cells with immunofluorescence. The induction of apoptosis was evaluated using caspase-3/7 activation and TUNEL staining. Colony forming assays were used to test oncogenic transformation and xenograft studies with patient-derived cell lines were used to evaluate the effects of HCI2509 on tumorigenesis.
Results:
HCI2509 caused a dramatic reversal of both the up- and downregulated transcriptional profiles of EWS/FLI and EWS/ERG accompanied by the induction of apoptosis and disruption of morphologic and oncogenic phenotypes modulated by EWS/FLI. Importantly, HCI2509 displayed single-agent efficacy in multiple xenograft models.
Conclusions:
These data support epigenetic modulation with HCI2509 as a therapeutic strategy for Ewing sarcoma, and highlight a critical dual role for LSD1 in the oncogenic transcriptional activity of EWS/ETS proteins.
Insights
Targeting lysine-specific demethylase 1 (LSD1) with HCI2509 effectively reversed oncogenic gene expression in Ewing sarcoma models. This epigenetic therapy demonstrated significant efficacy against pediatric bone tumors, offering a promising new therapeutic strategy.
Area of Science:
- Oncology
- Epigenetics
- Pediatric Cancer Research
Background:
- Ewing sarcoma is a pediatric bone tumor driven by EWS/ETS fusion oncoproteins.
- Lysine-specific demethylase 1 (LSD1) is crucial for EWS/FLI oncoprotein activity, repressing tumor suppressors.
- Targeting LSD1 therapeutically in Ewing sarcoma remains underexplored.
Purpose of the Study:
- To evaluate the therapeutic potential of LSD1 inhibition using HCI2509 in Ewing sarcoma.
- To assess the effects of HCI2509 on the transcriptional programs of EWS/FLI and EWS/ERG.
- To investigate the impact of HCI2509 on oncogenic phenotypes in vitro and in vivo.
Main Methods:
- RNA-sequencing to analyze transcriptional profiles of EWS/FLI, EWS/ERG, and HCI2509 treatment.
- Immunofluorescence for morphologic phenotype evaluation.
- Caspase-3/7 activation and TUNEL staining for apoptosis assessment.
- Colony formation assays and xenograft studies for oncogenic transformation and tumorigenesis evaluation.
Main Results:
- HCI2509 reversed EWS/FLI and EWS/ERG transcriptional profiles.
- LSD1 inhibition induced apoptosis and disrupted oncogenic phenotypes.
- HCI2509 demonstrated single-agent efficacy in xenograft models of Ewing sarcoma.
Conclusions:
- Epigenetic modulation with HCI2509 is a viable therapeutic strategy for Ewing sarcoma.
- LSD1 plays a critical dual role in the oncogenic transcriptional activity of EWS/ETS proteins.
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