ArticleProceedings of the National Academy of Sciences of the United States of America2023
BRWD3 promotes KDM5 degradation to maintain H3K4 methylation levels.
Article in Proceedings of the National Academy of Sciences of the United States of America, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 11 papers.
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Who cites it
11 citing papers in PubMed, 12 citations in OpenAlex.
- Nanopore-based sequencing of active DNA replication reveals key principles of metazoan replication dynamics.Science advances · 2026Article
- Histone lysine demethylases in breast cancer: molecular mechanisms, biological functions, and therapeutic intervention.Molecular cancer · 2025Review
- Nanopore-based sequencing of active DNA replication reveals key principles of metazoan replication fork progression, origin and termination sites.bioRxiv : the preprint server for biology · 2025Article
- Bromodomain-containing proteins in the unicellular eukaryoteZoological research · 2025Review
- Molecular and clinical aspects of histone-related disorders.Human genomics · 2025Review
- Histone demethylases in autophagy and inflammation.Cell communication and signaling : CCS · 2025Review
- Review
- Prohibitin 2 orchestrates long noncoding RNA and gene transcription to accelerate tumorigenesis.Nature communications · 2024Article
- Single-electron transfer between sulfonium and tryptophan enables site-selective photo crosslinking of methyllysine reader proteins.Nature chemistry · 2024Article
- [X-linked intellectual disability syndrome with macrocephaly due to BRWD3 gene deletion].Revista de neurologia · 2024Article
- Potential of the Novel Slot Blot Method with a PVDF Membrane for Protein Identification and Quantification in Kampo Medicines.Membranes · 2023Article
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Authors and funding
6 authors at 2 institutions in 1 country.
Funding
Abstract
Histone modifications are critical for regulating chromatin structure and gene expression. Dysregulation of histone modifications likely contributes to disease states and cancer. Depletion of the chromatin-binding protein BRWD3 (Bromodomain and WD repeat-containing protein 3), a known substrate-specificity factor of the Cul4-DDB1 E3 ubiquitin ligase complex, results in increased H3K4me1 (H3 lysine 4 monomethylation) levels. The underlying mechanism linking BRWD3 and H3K4 methylation, however, has yet to be defined. Here, we show that depleting BRWD3 not only causes an increase in H3K4me1 levels but also causes a decrease in H3K4me3 (H3 lysine 4 trimethylation) levels, indicating that BRWD3 influences H3K4 methylation more broadly. Using immunoprecipitation coupled to quantitative mass spectrometry, we identified an interaction between BRWD3 and the H3K4-specific lysine demethylase 5 (KDM5/Lid), an enzyme that removes tri- and dimethyl marks from H3K4. Moreover, analysis of ChIP-seq (chromatin immunoprecipitation sequencing) data revealed that BRWD3 and KDM5 are significantly colocalized throughout the genome and H3K4me3 are highly enriched at BRWD3 binding sites. We show that BRWD3 promotes K48-linked polyubiquitination and degradation of KDM5 and that KDM5 degradation is dependent on both BRWD3 and Cul4. Critically, depleting KDM5 fully restores altered H3K4me3 levels and partially restores H3K4me1 levels upon BRWD3 depletion. Together, our results demonstrate that BRWD3 regulates KDM5 activity to balance H3K4 methylation levels.
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Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the OpenQuestion graph.