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Updated: Jul 5, 2025

In Vitro Selection of Engineered Transcriptional Repressors for Targeted Epigenetic Silencing
Published on: May 5, 2023
Targeting the Epigenetic Reader ENL Inhibits Super-Enhancer-Driven Oncogenic Transcription and Synergizes with BET
Yongheng Chen1,2,3, Ying Ying1, Wenlong Ma1
1Department of Physiology, Shenzhen University Medical School, Shenzhen, China.
Abstract:
Epigenetic alterations at cis-regulatory elements (CRE) fine-tune transcriptional output. Epigenetic readers interact with CREs and can cooperate with other chromatin regulators to drive oncogene transcription. Here, we found that the YEATS domain-containing histone acetylation reader ENL (eleven-nineteen leukemia) acts as a key regulator of super-enhancers (SE), which are highly active distal CREs, across cancer types. ENL occupied the majority of SEs with substantially higher preference over typical enhancers, and the enrichment of ENL at SEs depended on its ability to bind acetylated histones. Rapid depletion of ENL by auxin-inducible degron tagging severely repressed the transcription of SE-controlled oncogenes, such as MYC, by inducing the decommissioning of their SEs, and restoring ENL protein expression largely reversed these effects. Additionally, ENL was indispensable for the rapid activation of SE-regulated immediate early genes in response to growth factor stimulation. Furthermore, ENL interacted with the histone chaperone FACT complex and was required for the deposition of FACT over CREs, which mediates nucleosome reorganization required for transcription initiation and elongation. Proper control of transcription by ENL and ENL-associated FACT was regulated by the histone reader BRD4. ENL was overexpressed in colorectal cancer and functionally contributed to colorectal cancer growth and metastasis. ENL degradation or inhibition synergized with BET inhibitors that target BRD4 in restraining colorectal cancer progression. These findings establish the essential role of epigenetic reader ENL in governing SE-driven oncogenic transcription and uncover the potential of ENL intervention to increase sensitivity to BET inhibition.
Significance:
ENL plays a key role in decoding epigenetic marks at highly active oncogenic super-enhancers and can be targeted in combination with BET inhibition as a promising synergistic strategy for optimizing cancer treatment.
Insights
The epigenetic reader ENL (eleven-nineteen leukemia) is crucial for super-enhancer activity and oncogene transcription in cancer. Targeting ENL enhances sensitivity to BET inhibitors, offering a new therapeutic strategy.
Area of Science:
- Epigenetics
- Molecular Biology
- Cancer Biology
Background:
- Epigenetic alterations at cis-regulatory elements (CREs) regulate gene transcription.
- Epigenetic readers, such as ENL, interact with CREs and chromatin regulators to drive oncogene transcription.
Purpose of the Study:
- To investigate the role of the histone acetylation reader ENL in regulating super-enhancers (SEs) and oncogene transcription across cancer types.
- To explore the therapeutic potential of targeting ENL, particularly in combination with BET inhibitors.
Main Methods:
- Utilized auxin-inducible degron tagging to deplete ENL and assess its impact on gene transcription and SEs.
- Investigated ENL's interaction with the FACT complex and its role in histone deposition at CREs.
- Examined the interplay between ENL, BRD4, and BET inhibitors in colorectal cancer models.
Main Results:
- ENL preferentially binds to SEs, regulating transcription of key oncogenes like MYC.
- ENL depletion leads to SE decommissioning and repressed oncogene transcription, which is reversible.
- ENL is essential for rapid activation of immediate early genes and interacts with the FACT complex for nucleosome reorganization.
- ENL overexpression drives colorectal cancer growth and metastasis, and its inhibition synergizes with BET inhibitors.
Conclusions:
- ENL is a critical epigenetic reader governing SE-driven oncogenic transcription.
- Targeting ENL presents a promising strategy to enhance the efficacy of BET inhibitors in cancer therapy.
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