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Updated: Apr 13, 2026

A Scalable, Cell-Based Method for the Functional Assessment of Ube3a Variants
Published on: October 10, 2022
Endogenous protein tagging coupled with a CRISPR screening approach identifies UBE3C as a potential MYC oncogene
Marcel Seibert1,2, Nina Kurrle1,2,3, Sifora Kaleab1,3
1Department of Medicine Hematology/Oncology, Goethe University Frankfurt, University Medicine Frankfurt, 60590, Frankfurt am Main, Germany.
Abstract:
The transcription factor MYC is a key regulator of cellular proliferation and metabolism and is frequently dysregulated in malignancies such as multiple myeloma (MM). Despite its clinical relevance, direct therapeutic targeting of MYC remains limited, emphasizing the need to identify upstream regulators that control endogenous MYC expression. To systematically uncover such regulators, we developed a genome-wide CRISPR-Cas9 loss-of-function screening approach, employing a custom-engineered MM reporter cell line (RPMI8226-F11), in which oncogenic MYC protein was endogenously tagged with EGFP (referred to as GFP). This fluorescent readout enabled a direct, quantitative assessment of endogenous MYC expression levels. A pooled genome-wide sgRNA library was introduced, and cells were sorted based on GFP fluorescent intensity to reflect varying MYC levels. Next-generation sequencing of sgRNA distributions across sorted populations enabled the identification of candidate MYC regulators. Validation of screen hits, including the established MYC activator IRF4 and repressor FBXW7, confirmed the reliability of our system. To further dissect regulatory networks, we performed an overrepresentation analysis of target genes, which revealed the enrichment of Mediator complex subunits among MYC activators and ubiquitin-proteasome pathway components among MYC repressors. Functional validation of prioritized hits-MED30 (Mediator complex) and UBE3C (E3 ubiquitin ligase)-demonstrated a strong impact on endogenous MYC levels. Notably, the knockout of UBE3C markedly increased MYC expression, whereas its paralogs, UBE3A and UBE3B, showed no measurable effect, suggesting a specific regulatory role for UBE3C in MM cells. Together, our study provides a comprehensive CRISPR screen-based resource for the discovery of MYC regulators and highlights UBE3C as a potential therapeutic node for modulating MYC expression in MM.
Insights
Researchers identified new regulators of the MYC gene, crucial for cell growth and cancer. Using a CRISPR screen in multiple myeloma cells, they found UBE3C specifically increases MYC levels, offering a potential therapeutic target.
Area of Science:
- Cancer Biology
- Gene Regulation
- Molecular Oncology
Background:
- The transcription factor MYC is a critical regulator of cell proliferation and metabolism.
- MYC dysregulation is common in malignancies like multiple myeloma (MM).
- Targeting MYC directly is challenging, necessitating identification of its upstream regulators.
Purpose of the Study:
- To systematically identify novel regulators controlling endogenous MYC expression.
- To develop and validate a genome-wide CRISPR-Cas9 screening platform for MYC regulation discovery.
- To pinpoint potential therapeutic targets for modulating MYC in multiple myeloma.
Main Methods:
- Utilized a custom-engineered multiple myeloma cell line with endogenously tagged MYC (GFP reporter).
- Performed a genome-wide CRISPR-Cas9 loss-of-function screen, sorting cells by MYC (GFP) levels.
- Analyzed sgRNA distribution via next-generation sequencing and validated key regulators (MED30, UBE3C).
Main Results:
- The screening system successfully identified known MYC regulators (IRF4, FBXW7), validating its efficacy.
- Overrepresentation analysis revealed Mediator complex subunits as MYC activators and ubiquitin-proteasome components as repressors.
- UBE3C knockout significantly increased MYC expression, while paralogs UBE3A and UBE3B had no effect, highlighting UBE3C's specific role.
Conclusions:
- This study provides a valuable CRISPR screen resource for discovering MYC regulators.
- UBE3C is identified as a specific E3 ubiquitin ligase that positively regulates MYC expression in MM.
- UBE3C represents a potential therapeutic target for controlling MYC in multiple myeloma.
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