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Genome-wide screen identifies cullin-RING ligase machinery required for lenalidomide-dependent CRL4CRBN activity
Quinlan L Sievers1,2,3, Jessica A Gasser1,2, Glenn S Cowley1
1Broad Institute of MIT and Harvard, Cambridge, MA.
Abstract:
Lenalidomide mediates the ubiquitination and degradation of Ikaros family zinc finger protein 1 (IKZF1), IKZF3, and casein kinase 1α (CK1α) by facilitating their interaction with cereblon (CRBN), the substrate receptor for the CRL4CRBN E3 ubiquitin ligase. Through this mechanism, lenalidomide is a clinically effective treatment of multiple myeloma and myelodysplastic syndrome (MDS) with deletion of chromosome 5q [del(5q) MDS]. To identify the cellular machinery required for lenalidomide-induced CRL4CRBN activity, we performed a positive selection, genome-scale clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein 9 (Cas9) screen in a lenalidomide-sensitive myeloma cell line. CRBN was the top-ranking gene, with all CRBN-targeting guide RNAs (gRNAs) ranking as the 6 highest-scoring gRNAs. A counterscreen using an IKZF3 degron reporter to assay lenalidomide-induced protein degradation highlighted regulators of cullin-RING ligase neddylation and 2 E2 ubiquitin-conjugating enzymes as necessary for efficient lenalidomide-induced protein degradation. We demonstrated that loss of UBE2M or members of the constitutive photomorphogenesis 9 (COP9) signalosome results in altered neddylation of cullin 4A and impairs lenalidomide-dependent CRL4CRBN activity. Additionally, we established that UBE2D3 and UBE2G1 play distinct roles in substrate ubiquitination by CRL4CRBN, with UBE2D3 acting to prime targets via monoubiquitination and UBE2G1 functioning to extend polyubiquitin chains with lysine 48 linkages. The validation of UBE2D3 and UBE2G1 highlights the functional capacity of CRISPR-Cas9 screening to identify E2 ubiquitin-conjugating enzyme and E3 ubiquitin ligase complex pairings. More broadly, these findings establish key proteins required for lenalidomide-dependent CRL4CRBN function in myeloma and inform potential mechanisms of drug resistance.
Insights
Lenalidomide drug effectiveness in multiple myeloma relies on cereblon (CRBN) E3 ligase activity. Genome-wide CRISPR screening identified key proteins, including E2 enzymes UBE2D3 and UBE2G1, essential for lenalidomide-induced protein degradation.
Area of Science:
- Molecular Biology
- Genetics
- Pharmacology
Background:
- Lenalidomide is a crucial therapeutic for multiple myeloma and myelodysplastic syndrome.
- Its efficacy is linked to the cereblon (CRBN) E3 ubiquitin ligase complex.
- Understanding the machinery regulating CRL4CRBN activity is vital for optimizing lenalidomide treatment and overcoming resistance.
Purpose of the Study:
- To identify cellular components essential for lenalidomide-induced CRL4CRBN activity.
- To elucidate the roles of specific E2 ubiquitin-conjugating enzymes in lenalidomide's mechanism of action.
- To uncover potential mechanisms of drug resistance.
Main Methods:
- A genome-scale CRISPR-Cas9 screen was employed in a lenalidomide-sensitive myeloma cell line.
- A degron reporter assay was used to assess lenalidomide-induced protein degradation.
- Functional validation of identified genes, including E2 enzymes and COP9 signalosome components.
Main Results:
- CRBN was identified as a top-ranking gene essential for lenalidomide activity.
- Regulators of cullin neddylation and specific E2 ubiquitin-conjugating enzymes (UBE2M, UBE2D3, UBE2G1) were highlighted.
- Loss of UBE2M or COP9 signalosome impaired lenalidomide-dependent CRL4CRBN activity.
- UBE2D3 and UBE2G1 demonstrated distinct roles in substrate ubiquitination.
Conclusions:
- This study identifies key proteins, including UBE2D3 and UBE2G1, required for lenalidomide-dependent CRL4CRBN function in myeloma.
- Findings provide insights into the molecular mechanisms of lenalidomide action and potential drug resistance pathways.
- CRISPR screening is validated as a powerful tool for dissecting E3 ligase complex function.
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