| Literature DB >> 31866860 |
Chao Yu1, Shougang Zhuang1,2.
Abstract
Emerging evidence has demonstrated that epigenetic regulation plays a vital role in gene expression under normal and pathological conditions. Alterations in the expression and activation of histone methyltransferases (HMTs) have been reported in preclinical models of multiple kidney diseases, including acute kidney injury, chronic kidney disease, diabetic nephropathy, polycystic kidney disease, and renal cell carcinoma. Pharmacological inhibition of these enzymes has shown promise in preclinical models of those renal diseases. In this review, we summarize recent knowledge regarding expression and activation of various HMTs and their functional roles in some kidney diseases. The preclinical activity of currently available HMT inhibitors and the mechanisms of their actions are highlighted.Entities:
Keywords: chronic kidney diseases; epigenetic regulations; expression; histone methyltransferases; histone modification
Year: 2019 PMID: 31866860 PMCID: PMC6908484 DOI: 10.3389/fphar.2019.01393
Source DB: PubMed Journal: Front Pharmacol ISSN: 1663-9812 Impact factor: 5.810
Classification of histone methyltransferases.
| Methyltransferase | Type | Site | Function | ||
|---|---|---|---|---|---|
| KMTs | SET1 family | EZH1 | H3K27 | Transcriptional repression | |
| SET1 family | H3K27 | H2K27 | Transcriptional repression | ||
| SET2 family | NSD1-3 | H3K36 | Transcriptional activation | ||
| SET2 family | SETD2 | H3K36 | Transcriptional activation | ||
| SET2 family | SMYD2 | H3K36/p53 | Transcriptional activation | ||
| SUV39 family | SUV39H1 | H3K9 | Heterochromatin formation/silencing | ||
| SUV39 family | SUV39H2 | H3K9 | Heterochromatin formation/silencing | ||
| SUV39 family | G9a | H3K9 | Heterochromatin formation/silencing | ||
| SUV39 family | GLP | H3K9 | Heterochromatin formation/silencing | ||
| SUV39 family | ESET//SETDB1 | H3K9 | Transcriptional repression | ||
| SUV39 family | CLLL8/SETDB2 | ||||
| RIZ family | RIZ1 | H3K9 | Transcriptional repression | ||
| RIZ family | BLIMP1/PRDM1 | ||||
| RIZ family | PFM1/CRS2 | ||||
| Non-group family | SET7/9 | H3K4/p53/TAF10 | Transcriptional repression | ||
| Non-group family | SET8 | H4K20 | Transcriptional repression | ||
| Non-group family | SUV4-20H1 | H4K20 | DNA damage response | ||
| Non-group family | SUV4-20H2 | H4K20 | |||
| non-SET family | DOT1L | H3K79 | Transcriptional activation | ||
| PRMTs | I | PRMT1 | H4R3 | Transcriptional activation | |
| I | PRMT3 | RPS2 | Transcriptional activation | ||
| I | PRMT4 /CARM1 | H3R2, H3R17, H3R26 | Transcriptional activation | ||
| II | PRMT5 | H3R8, H4R3 | Transcriptional repression | ||
| III | PRMT7 | H4R3 | Imprinting in male germ cell | ||
Expression of HMTs in human kidney diseases.
| Human kidney disease | HMTs | Histone Targets | References | |
|---|---|---|---|---|
| Focal segmental glomerulosclerosis, IgA nephropathy | EZH2 EZH2 | upregulated upregulated | H3K27 H3K27 me3 | ( |
| IgA nephropathy | G9a | upregulated | H3K9 | ( |
| Diabetic nephropathy | SUV39H1 | upregulated | H3K7 | ( |
| IgA and membranous nephropathy | SET7/9 | upregulated | H3K4 | ( |
| Polycystic kidneys | SMYD2 | upregulated | H3K4, H3K36 | ( |
| Membranous nephropathy Focal segmental glomerulosclerosis | MLL3 EZH2 | Upregulated upregulated | H3K4 H3K36 | ( |
Histone methyltransferase inhibition in kidney diseases.
| KMTs | Histone targets | Inhibitors or Knockout mice | Model | Effects | References |
|---|---|---|---|---|---|
| EZH2 | H3K27 | 3-DZNeP | UUO | Inhibits renal fibroblast activation and EMT, alleviates renal fibrosis | ( |
| 3-DZNeP | I/R or FA induced AKI | Alleviates AKI and reduces renal tubular cell death | ( | ||
| 3-DZNeP | Cisplatin induced AKI | Protects against renal tubular cell death, inhibits AKI | ( | ||
| 3-DZNeP | Hyperuricemia-induced CKD | Inhibits fibroblast activation and proliferation, attenuates renal injury | ( | ||
| 3-DZNeP KO mice EPZ-6438, KO mice | STZ-induced DN, Adriamycin nephrotoxicity, SNx | Induces podocyte injury, increases oxidative stress and proteinuira Sensitize mice to glomerular disease increase podocyte injury and dedifferentiation | ( | ||
| Same models as above | Sensitize mice to glomerular disease increase podocyte injury and dedifferentiation | ( | |||
| GSK126 | Rat renal interstitial fibroblast cells | Inhibits activation of cultured renal interstitial fibroblasts | ( | ||
| G9a | H3K9 | BIX01294 | UUO | Attenuates renal fibrosis and retains klotho expression | ( |
| SUV39H1 | H3K9 | Chaetocin | Mesangial cells | Increases fibronectin and p21expression | ( |
| SET7/9 | H3K4 | Sinefungin | UUO | Ameliorates renal fibrosis; Suppresses peritoneal fibrosis | ( |
| DOT1L | H3K79 | EPZ5676 | UUO | Inhibits renal fibroblast activation and EMT; attenuates renal fibrosis | ( |
| SMYD2 | H3K4;H3K36 | AZ505 KO mice | Hypomorphic Pkd1nl/nl mice | Delay cyst growth in ADPKD, reduce activation of STAT3 and NF-κB | ( |
DN, Diabetic nephropathy; STZ, streptozotocin; CKD, chronic kidney disease; UUO, unilateral ureteral obstruction; SNx, subtotal nephrectomy; KO, knockout mice; AKI, acute kidney injury; EMT; epithelial–mesenchymal transition; ADPKD, autosomal dominant polycystic kidney disease; STAT3, signal transducer and activator of transcription 3; NF-κB, nuclear factor kappa light chain enhancer of activated B cells.