| Literature DB >> 30150556 |
Jianlin Wang1,2, Zhaoping Qiu3,4, Yadi Wu5,6.
Abstract
Histone post-translational modifications influence many fundamental cellular events by regulating chromatin structure and gene transcriptional activity. These modifications are highly dynamic and tightly controlled, with many enzymes devoted to the addition and removal of these modifications. Interestingly, these modifying enzymes are themselves fine-tuned and precisely regulated at the level of protein turnover by ubiquitin-proteasomal processing. Here, we focus on recent progress centered on the mechanisms regulating ubiquitination of histone modifying enzymes, including ubiquitin proteasomal degradation and the reverse process of deubiquitination. We will also discuss the potential pathophysiological significance of these processes.Entities:
Keywords: epigenetic; histone modifying enzyme; protein degradation; ubiquitin
Year: 2018 PMID: 30150556 PMCID: PMC6162602 DOI: 10.3390/cells7090118
Source DB: PubMed Journal: Cells ISSN: 2073-4409 Impact factor: 6.600
Figure 1The ubiquitin proteasomal system degrades histone modifying enzymes. Histone modifying enzyme is ubiquitinated and degraded by a ubiquitin ligase (E3) while histone modifying enzyme is stabilized by deubiquitinases (DUBs) through deubiquitination. UPS = ubiquitination proteasome system; Ub = Ubiquitin.
Figure 2The regulation of EZH2 and related pathologies by the ubiquitin proteasomal system. Composition of the E3 complex and DUB targets EZH2. The Skp-1- Cullin-1-F-Box (SCF) E3s are multimeric E3 ligases that mediates the ubiquitin (Ub) transfers from E2 conjugating enzymes to EZH2.
The ubiquitin proteasomal regulation of histone modification enzymes.
| Class of Histone Modifying Enzyme | UPS-Regulated Histone Modifying Enzyme | Target of the Histone Modifying Enzyme | Kinases Involved in UPS-Regulation of Histone-Modifying Enzyme | E3 ligases Regulating Histone Modifying Enzyme | DUBs Regulating Histone Modifying Enzyme | Physiological and Pathophysiological Functions of UPS-Regulation of Histone Modifying Enzyme |
|---|---|---|---|---|---|---|
| Acetylation Enzyme | p300 | H2AK5, H2B, H3, H4 | Mdm2, FBX3, BRMS1 | Cell growth, proliferation, development, differentiation, cell-cycle regulation, DNA damage response, tumorigenesis and apoptosis | ||
| PCAF | Free H3, H3K14, H4K8 | Mdm2 | proliferation, differentiation, apoptosis and cell-cycle progression | |||
| HBO1 | H3K14, H4 | ATM/ATR | CRL4 | cell-cycle progression, DNA replication and proliferation | ||
| Mek1 | FBXW15 | |||||
| Tip60 | H2AK5, H4K16 | UHRF1, EDD1, Mdm2 | USP7 | Cellular signaling, DNA damage repair and transcription | ||
| Deacetylation Enzymes | HDAC1 | H2A, H2B, H3, H4 | Mdm2, Chfr, REN | Development, gene repression, cell cycle, DNA repair, etc | ||
| HDAC2 | H2A, H2B, H3, H4K16 | RLIM, Mule | USP4, USP17 | Differentiation and Development, gene repression, cell cycle, DNA repair, etc | ||
| SETD2 | H3K36 | SPOP | Transcription elongation, RNA processing, DNA repair and damage response, polycomb silencing | |||
| Lysine Methylation Enzymes | SETD3 | H3K36 | GSK3β | FBXW7β | Cell proliferation and tumorigenesis | |
| Set8 | H3K20 | Cdt2 | Cell cycle progression, transcription regulation, DNA repair, genome stability and tumor metastasis | |||
| CDK1 | Cdh1 | |||||
| Skp2 | ||||||
| CK1 | β-TRCP | |||||
| EZH2 | H3K27 | Smurf2, CHIP | USP21, ZRANB1 | Cell proliferation, tumorigenesis, metastasis and stem cell renewal and maintenance | ||
| Jak2 | β-TRCP | |||||
| CDK5 | FBXW7 | |||||
| p38 | Praja1 | |||||
| Lysine Demethylation Enzymes | JMJD2A | H3K9, H3K36 | FBXL4, FBXW2, FBXO22, RNF8 | Replication timing and gemomic stability, DNA damage response, cellular differentiation, and animal development | ||
| LSD1 | H3K4 | Jade2 | USP28, USP22, USP7 | Differentiation, self-renewal and tumor metastasis | ||
| Arginine Methylation Enzymes | PRMT1 | H4R3 | FBXL17, TRIM48, E4B, CHIP | Cell proliferation, progenitor maintenance and tumor metastasis | ||
| PRMT4 | H3R17, H3R26 | Skp2 | Transcription pre- mRNA splicing and cell cycle progression | |||
| Reader | BRD4 | SPOP, CRBN | DUB3 | Cell-cycle, apoptosis, cell proliferation, DNA damage response, autophagy, memory formation and migration and invision |