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Updated: Jan 29, 2026

Single-Molecule Imaging of EWS-FLI1 Condensates Assembling on DNA
Published on: September 8, 2021
Trabectedin Inhibits EWS-FLI1 and Evicts SWI/SNF from Chromatin in a Schedule-dependent Manner
Matt L Harlow1, Maggie H Chasse2, Elissa A Boguslawski2
1Department of Cancer Biology, Vanderbilt University, Nashville, Tennessee.
Purpose:
The successful clinical translation of compounds that target specific oncogenic transcription factors will require an understanding of the mechanism of target suppression to optimize the dose and schedule of administration. We have previously shown trabectedin reverses the gene signature of the EWS-FLI1 transcription factor. In this report, we establish the mechanism of suppression and use it to justify the reevaluation of this drug in the clinic in patients with Ewing sarcoma.Experimental Design: We demonstrate a novel epigenetic mechanism of trabectedin using biochemical fractionation and chromatin immunoprecipitation sequencing. We link the effect to drug schedule and EWS-FLI1 downstream target expression using confocal microscopy, qPCR, Western blot analysis, and cell viability assays. Finally, we quantitate target suppression within the three-dimensional architecture of the tumor in vivo using 18F-FLT imaging.
Results:
Trabectedin evicts the SWI/SNF chromatin-remodeling complex from chromatin and redistributes EWS-FLI1 in the nucleus leading to a marked increase in H3K27me3 and H3K9me3 at EWS-FLI1 target genes. These effects only occur at high concentrations of trabectedin leading to suppression of EWS-FLI1 target genes and a loss of cell viability. In vivo, low-dose irinotecan is required to improve the magnitude, penetrance, and duration of target suppression in the three-dimensional architecture of the tumor leading to differentiation of the Ewing sarcoma xenograft into benign mesenchymal tissue.
Conclusions:
These data provide the justification to evaluate trabectedin in the clinic on a short infusion schedule in combination with low-dose irinotecan with 18F-FLT PET imaging in patients with Ewing sarcoma.
Insights
Trabectedin suppresses Ewing sarcoma by disrupting EWS-FLI1 transcription factor activity through an epigenetic mechanism. Combining trabectedin with irinotecan and using 18F-FLT imaging shows promise for clinical evaluation.
Area of Science:
- Oncology
- Molecular Biology
- Epigenetics
Background:
- Targeting oncogenic transcription factors is crucial for cancer therapy.
- Trabectedin has previously shown potential in reversing the EWS-FLI1 gene signature.
Purpose of the Study:
- To elucidate the mechanism of action of trabectedin in suppressing EWS-FLI1.
- To optimize trabectedin's dose and schedule for Ewing sarcoma treatment.
- To justify clinical reevaluation of trabectedin for Ewing sarcoma.
Main Methods:
- Biochemical fractionation and ChIP-sequencing to identify epigenetic mechanisms.
- Confocal microscopy, qPCR, Western blot, and cell viability assays to assess drug effects.
- In vivo 18F-FLT imaging to quantify target suppression in tumor architecture.
Main Results:
- Trabectedin evicts SWI/SNF, increases H3K27me3 and H3K9me3 at target genes, and suppresses EWS-FLI1 activity at high concentrations.
- High-dose trabectedin leads to loss of cell viability.
- Combination with low-dose irinotecan enhances target suppression and promotes tumor differentiation in vivo.
Conclusions:
- The data support evaluating trabectedin in combination with irinotecan.
- A short infusion schedule for trabectedin is proposed.
- 18F-FLT PET imaging can be used to monitor treatment response in Ewing sarcoma patients.
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