The E3 ubiquitin ligase activity of RING1B is not essential for early mouse development
Explore this paper's citation graph
- Type
- article
- Published
- 2015-09-15
- Cited by
- 155
- References
- 33
- Access
- Open access
- OpenAlex
- https://openalex.org/W1935585532
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20781456
Keywords
PRC2, Biology, Ubiquitin ligase, Ubiquitin, Psychological repression
References
- Gene targeting: a practical approach.
- A new non‐catalytic role for ubiquitin ligase RNF8 in unfolding higher‐order chromatin structure
- Ring1B Compacts Chromatin Structure and Represses Gene Expression Independent of Histone Ubiquitination
- Recognition and Specificity Determinants of the Human Cbx Chromodomains
- PRC1 and PRC2 Are Not Required for Targeting of H2A.Z to Developmental Genes in Embryonic Stem Cells
- TRIM37 is a new histone H2A ubiquitin ligase and breast cancer oncoprotein
- Histone H2A Mono-Ubiquitination Is a Crucial Step to Mediate PRC1-Dependent Repression of Developmental Genes to Maintain ES Cell Identity
- Transcriptional regulation by Polycomb group proteins
- Targeting Polycomb to Pericentric Heterochromatin in Embryonic Stem Cells Reveals a Role for H2AK119u1 in PRC2 Recruitment
- UTX and UTY Demonstrate Histone Demethylase-Independent Function in Mouse Embryonic Development
- PCGF Homologs, CBX Proteins, and RYBP Define Functionally Distinct PRC1 Family Complexes
- Histone H2A monoubiquitination promotes histone H3 methylation in Polycomb repression
- Histone H2A monoubiquitination represses transcription by inhibiting RNA polymerase II transcriptional elongation.
- Ubiquitin E3 Ligase Ring1b/Rnf2 of Polycomb Repressive Complex 1 Contributes to Stable Maintenance of Mouse Embryonic Stem Cells
- Chromatin Sampling—An Emerging Perspective on Targeting Polycomb Repressor Proteins
- Gene silencing triggers polycomb repressive complex 2 recruitment to CpG islands genome wide.
- SAM domain polymerization links subnuclear clustering of PRC1 to gene silencing.
- Multiplexed Illumina sequencing libraries from picogram quantities of DNA
- Variant PRC1 Complex-Dependent H2A Ubiquitylation Drives PRC2 Recruitment and Polycomb Domain Formation
- Compaction of chromatin by diverse Polycomb group proteins requires localized regions of high charge.
Cited by
- Zrf1 controls mesoderm lineage genes and cardiomyocyte differentiation
- The Epigenetic Paradox of Pluripotent ES Cells.
- Polycomb in Transcriptional Phase Transition of Developmental Genes.
- Polycomb inhibits histone acetylation by CBP by binding directly to its catalytic domain
- BAP1/ASXL1 recruitment and activation for H2A deubiquitination
- H2A.Z.1 mono-ubiquitylation antagonizes BRD2 to maintain poised chromatin in ESCs
- Dual role of Med12 in PRC1-dependent gene repression and ncRNA-mediated transcriptional activation
- Characterization of non-canonical Polycomb Repressive Complex 1 subunits during early mouse embryogenesis
- Emerging roles for Polycomb proteins in cancer.
- Molecular basis of PRC1 targeting to Polycomb response elements by PhoRC
- Abnormal X chromosome inactivation and sex-specific gene dysregulation after ablation of FBXL10
- The dynamic interactome and genomic targets of Polycomb complexes during stem cell differentiation
- Epigenetic balance of gene expression by Polycomb and COMPASS families
- Enhancer regions show high histone H3.3 turnover that changes during differentiation
- Role of the Polycomb Repressive Complex 2 (PRC2) in Transcriptional Regulation and Cancer.
- On‐site remodeling at chromatin: How multiprotein complexes are rebuilt during DNA repair and transcriptional activation
- Interdependence of PRC1 and PRC2 for recruitment to Polycomb Response Elements
- BMI1–UBR5 axis regulates transcriptional repression at damaged chromatin
- RYBP stimulates PRC1 to shape chromatin-based communication between Polycomb repressive complexes
- Putting the brakes on transcription at damaged chromatin: Do Polycomb silencers do more than modify histones?
Related papers
- The poxvirus encoded ubiquitin ligase, p28, is regulated by proteasomal degradation and autoubiquitination.
- Ubiquitination and Degradation of Mutant p53
- Promiscuous Interactions of gp78 E3 ligase CUE domain with polyubiquitin chains
- The Antibiotic Treatment Index: A Novel Tool to Improve Antibiotic Resistance Monitoring
- The Ubiquitin E3 Ligase MaLUL2 Is Involved in High Temperature-Induced Green Ripening in Banana Fruit
- mSWI/SNF promotes polycomb repression both directly and through genome-wide redistribution
- Reconstitution and Structural Analysis of a HECT Ligase-Ubiquitin Complex via an Activity-Based Probe
- Multiple E3 ligases act as antiviral factors against SARS-CoV-2 via inducing the ubiquitination and degradation of ORF9b
- Ubiquitin over-expression promotes E6AP autodegradation and reactivation of the p53/MDM2 pathway in HeLa cells