| Literature DB >> 35204673 |
Kevin Mangum1, Katherine Gallagher1, Frank M Davis1.
Abstract
Abdominal aortic aneurysm (AAA) is a life-threatening disease associated with high morbidity and mortality in the setting of acute rupture. Recently, advances in surgical and endovascular repair of AAA have been achieved; however, pharmaceutical therapies to prevent AAA expansion and rupture remain lacking. This highlights an ongoing need to improve the understanding the pathological mechanisms that initiate formation, maintain growth, and promote rupture of AAA. Over the past decade, epigenetic modifications, such as DNA methylation, posttranslational histone modifications, and non-coding RNA, have emerged as important regulators of cellular function. Accumulating studies reveal the importance of epigenetic enzymes in the dynamic regulation of key signaling pathways that alter cellular phenotypes and have emerged as major intracellular players in a wide range of biological processes. In this review, we discuss the roles and implications of epigenetic modifications in AAA animal models and their relevance to human AAA pathology.Entities:
Keywords: cardiometabolic; epigenetics; inflammation; macrophage; monocyte; vascular
Mesh:
Year: 2022 PMID: 35204673 PMCID: PMC8961599 DOI: 10.3390/biom12020172
Source DB: PubMed Journal: Biomolecules ISSN: 2218-273X
Epigenetic modifications in inflammatory cells in AAAs.
| Epigenetic Modification | Cellular Origin | Regulation | Target Gene(s) | Related Function |
|---|---|---|---|---|
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| DNMT1, DNMT3A | T-lymphocyte | Downregulated | --- | Potential role in T-cell dysfunction, particularly decreased suppressive |
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| JMJD3 | Macrophage | Upregulated | H3K27me3 on promoters for: IL1β, TNF, IL23 | Increases macrophage inflammatory cytokine production; macrophage proinflammatory polarization |
| HDAC I and IIa | Macrophage | Upregulated | --- | Increased proinflammatory macrophage phenotype and inflammatory mediators |
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| miRNA-24 | Macrophage | Upregulated | Chi311 | Limits inflammation and ECM |
| miRNA-33 | Macrophage | Downregulated | ABCA1 | Monocyte chemotaxis, macrophage |
| miRNA-181b | Macrophage | Upregulated | TIMP3, ELN | Downregulates ECM |
| miRNA-223 | Macrophage | Upregulated in tissue, downregulated plasma | MMP12 | Inhibits vascular inflammation |
| miRNA-155 | T-lymphocyte | Upregulated | CTLA4 | Regulation of T-cell activation |
AAA, abdominal aortic aneurysm; ECM, extracellular matrix; IL1β, interleukin 1β; IL23, interleukin 23; TNF, tumor necrosis factor.
Epigenetic modifications in endothelial cells in AAAs.
| Epigenetic Modification | Cellular Origin | Regulation | Target Gene(s) | Related Function |
|---|---|---|---|---|
|
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| BRG1 | Endothelial cell | COL1A1, COL1A2, vimentin | Promotes AAA formation upregulation of fibrotic gene expression | |
| HDAC9 | Endothelial cell | Enhances endothelial-to-mesenchymal transition | ||
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| miRNA-20a | Endothelial cell | Upregulated | PTEN, ATG7 | Inhibits endothelial cell apoptosis |
| miRNA-21 | Endothelial cell | Upregulated | ||
| miRNA-27a | Endothelial cell | Upregulated | SEMA6A | Promotes endothelial-to-mesenchymal transition |
| miRNA-92a | Endothelial cell | Upregulated | KLF4 | Secreted by EC, inhibits KLF4 expression in macrophages; enhances atherosclerotic lesion formation |
| miRNA-126 | Endothelial cell | Upregulated | ADAM9 | Overexpression reduces AAA formation; suppression of inflammatory cytokines |
| miRNA-221 | Endothelial cell | Upregulated | CDKN1B, PIK3R1 | Promotes angiogenesis via regulating endothelial tip-cell proliferation and migration |
| miRNA-222 | Endothelial cell | Upregulated | ADIPOR1 | Overexpression promotes AAA by interfering with endothelial progenitor cell function |
| Let-7 (miRNA) | Endothelial cell | Upregulated | ||
| GATA6-AS (lncRNA) | Endothelial cell | Upregulated? | LOXL2 | Inhibition of TGFβ2-mediated endothelial-to-mesenchymal transition |
| H19 (lncRNA) | Endothelial cell | Inhibition of endothelial-to-mesenchymal transition | ||
| MALAT-1 (lncRNA) | Endothelial cell | NOX2 | Increased inflammation and ROS production | |
| SENCR (lncRNA) | Endothelial cell | CKAP4 | Stabilizes vascular EC adherens junctions | |
AAA, abdominal aortic aneurysm; EC, endothelial cell; ROS, reactive oxygen species.
Epigenetic modifications in smooth muscle cells in AAAs.
| Epigenetic Modification | Cellular Origin | Regulation | Target Gene(s) | Related Function |
|---|---|---|---|---|
|
| ||||
| miRNA-15b-5p | SMC | Upregulated | ACSS2 | Promotes SMC apoptosis |
| miRNA-23b | SMC | FOXO4 | Inhibits AAA formation; maintains SMC mature phenotype, inhibits phenotypic modulation | |
| miRNA-96-5p | SMC | NFAT5 | Promotes SMC apoptosis | |
| miRNA-126-5p | SMC | Downregulated | VEPH1 | Inhibits AAA formation; overexpression inhibits MMP-9 and MMP-2 expression and promotes SMC differentiation |
| miRNA-143/145 | SMC | Downregulated | SRF, myocardin, KLF4/5, MRTF-B | Inhibits phenotypic modulation in SMC after vessel injury |
| miRNA-199a-5p | SMC | Upregulated | SIRT1 | Increases SMC senescence and ROS production |
| miRNA-504 | SMC | Downregulated | p53 | Inhibits p53-induced SMC apoptosis |
| miRNA-516a | SMC | Upregulated | MTHFR | Overexpression leads to increased expression of MMP-2 and decreased expression of TIMP-1 |
| CRNDE | SMC | Downregulated | SMAD3 | Increases SMC proliferation, inhibits SMC apoptosis; inhibits AAA progression |
| H19 | SMC | Upregulated | HIF1α | Increases SMC apoptosis |
| PVT1 | SMC | Upregulated | Induces SMC phenotypic modulation | |
| SENCE | SMC | Downregulated | Increases SMC apoptosis and expression of MMP-2 and MMP-9; decreases AAA formation | |
| SMYD2 | SMC | Downregulated | Increased promoter methylation in AAA | |
AAA, abdominal aortic aneurysm; SMC, smooth muscle cell.