Genomics

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Synergistic targeting of EP300/CBP and EYA co-activators collapses the rhabdomyosarcoma core regulatory circuit. [Cut & Run]


ABSTRACT: Rhabdomyosarcoma (RMS) is a high-risk and lethal pediatric sarcoma that resembles developing skeletal muscle. RMS tumors have a low mutation burdens, though but these scant mutations contain mutations inalter genes involved in transcriptional control. Transcriptional dysregulation is critical to RMS pathogenesis, supported by studies in both RMS tumors carrying mutationally derived chimeric transcription factors (“fusion positive (FP)”), or those without (“fusion negative” (FN)). However, mechanisms to selectively target dysregulated transcription in RMS remain outstanding. Here, we develop a novel approach selectively targeting RMS transcription. To do so, we discovered a common cell-identity- controlling pan-RMS core -regulatory circuit (CRC) composed of oncogenic and lineage-specific, myogenic master transcription factors (mTFs). These mTFs are regulated by super-enhancers, and they co-bind genome-wide to control the malignant transcriptome of both FP- and FN-RMS. Using a super-enhancer-based reporter screen, we identify the EP300/CBP inhibitor A485 as a potent inhibitor of the pan-RMS CRC, though efficacy of this compound was limited by toxicity. To enhance on-target specificity, we identify the protein EYA2 as a co-factor of the pan-RMS CRC, and use a second-generation EYA1/2 tyrosine phosphatase inhibitor called LG1-34 to inactivate its function. While A485 and LG1-34 independently reduce mTF transcription and drive RMS cell death, in combination, these agents function synergistically to reduce RMS growth in vitro and in vivo. These results demonstrate that combined targeting of enhancer maintenance and CRC co-factors is a powerful strategy to suppress the RMS transcriptome and enforce RMS cell death.

ORGANISM(S): Homo sapiens

PROVIDER: GSE347491 | GEO | 2026/09/28

REPOSITORIES: GEO

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