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Updated: Aug 9, 2025

Using the E1A Minigene Tool to Study mRNA Splicing Changes
Published on: April 22, 2021
MS0621, a novel small-molecule modulator of Ewing sarcoma chromatin accessibility, interacts with an RNA-associated
Tamara Vital1,2, Aminah Wali1,2, Kyle V Butler3,4,5
1Curriculum in Genetics and Molecular Biology, University of North Carolina at Chapel Hill, Chapel Hill, NC, United States.
Abstract:
Ewing sarcoma is a cancer of children and young adults characterized by the critical translocation-associated fusion oncoprotein EWSR1::FLI1. EWSR1::FLI1 targets characteristic genetic loci where it mediates aberrant chromatin and the establishment of de novo enhancers. Ewing sarcoma thus provides a model to interrogate mechanisms underlying chromatin dysregulation in tumorigenesis. Previously, we developed a high-throughput chromatin-based screening platform based on the de novo enhancers and demonstrated its utility in identifying small molecules capable of altering chromatin accessibility. Here, we report the identification of MS0621, a molecule with previously uncharacterized mechanism of action, as a small molecule modulator of chromatin state at sites of aberrant chromatin accessibility at EWSR1::FLI1-bound loci. MS0621 suppresses cellular proliferation of Ewing sarcoma cell lines by cell cycle arrest. Proteomic studies demonstrate that MS0621 associates with EWSR1::FLI1, RNA binding and splicing proteins, as well as chromatin regulatory proteins. Surprisingly, interactions with chromatin and many RNA-binding proteins, including EWSR1::FLI1 and its known interactors, were RNA-independent. Our findings suggest that MS0621 affects EWSR1::FLI1-mediated chromatin activity by interacting with and altering the activity of RNA splicing machinery and chromatin modulating factors. Genetic modulation of these proteins similarly inhibits proliferation and alters chromatin in Ewing sarcoma cells. The use of an oncogene-associated chromatin signature as a target allows for a direct approach to screen for unrecognized modulators of epigenetic machinery and provides a framework for using chromatin-based assays for future therapeutic discovery efforts.
Insights
Researchers identified MS0621, a novel small molecule that targets aberrant chromatin in Ewing sarcoma. This compound suppresses cancer cell growth by altering RNA splicing and chromatin regulation, offering a new therapeutic strategy for this pediatric cancer.
Area of Science:
- Oncology
- Epigenetics
- Molecular Biology
Background:
- Ewing sarcoma is a pediatric cancer driven by the EWSR1::FLI1 oncoprotein, which causes aberrant chromatin regulation and the formation of new enhancers.
- Understanding these chromatin dysregulation mechanisms is crucial for developing targeted therapies.
Purpose of the Study:
- To identify novel small molecules that modulate chromatin state at EWSR1::FLI1-bound loci in Ewing sarcoma.
- To investigate the mechanism of action of newly identified compounds and their therapeutic potential.
Main Methods:
- Development of a high-throughput chromatin-based screening platform targeting de novo enhancers.
- Identification and characterization of MS0621 using proteomic and cellular assays.
- Genetic modulation of identified protein targets.
Main Results:
- MS0621 was identified as a small molecule modulator of chromatin state at aberrant EWSR1::FLI1-bound loci.
- MS0621 suppresses Ewing sarcoma cell proliferation via cell cycle arrest and associates with EWSR1::FLI1 and chromatin/splicing proteins.
- Surprisingly, many interactions of MS0621 with proteins and chromatin were RNA-independent.
Conclusions:
- MS0621 impacts EWSR1::FLI1-mediated chromatin activity by interacting with RNA splicing and chromatin modulating factors.
- Genetic targeting of these factors also inhibits proliferation and alters chromatin in Ewing sarcoma cells.
- This study provides a framework for using oncogene-associated chromatin signatures in therapeutic discovery for epigenetic targets.
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