| Literature DB >> 36117172 |
Yahui Liu1,2,3, Guochao Shi4,5,6.
Abstract
Sirtuins are nicotinamide adenine dinucleotide (NAD+)-dependent lysine deacylases and deacetylases that participate in a variety of cellular processes, including transcriptional activity, energy metabolism, DNA damage response, inflammation, apoptosis, autophagy, and oxidative stress. As a result, sirtuins are linked to multiple pathophysiological processes, such as cardiovascular diseases, metabolic diseases, autoimmune diseases, infectious diseases, and respiratory diseases. Asthma is the most common respiratory disease, which is characterized by airway inflammation and airway remodeling. Accumulating evidence has indicated that sirtuins are involved in the pathogenesis of asthma. Furthermore, some studies have suggested that sirtuin modulators are potential agents for the treatment of asthma via alteration of the expression or activity of sirtuins. In this review, we illustrate the role of sirtuins in asthma, discuss related molecular mechanisms, and evaluate the sirtuins-targeted therapy for asthma.Entities:
Keywords: Asthma; Modulators; SIRT1; Sirtuins
Mesh:
Substances:
Year: 2022 PMID: 36117172 PMCID: PMC9482752 DOI: 10.1186/s12931-022-02175-7
Source DB: PubMed Journal: Respir Res ISSN: 1465-9921
Fig. 1Localization (A) and structure (B) of human sirtuins
Enzymatic activity and functions of sirtuins
| Sirtuin | Enzymatic functions | Biological functions in asthma |
|---|---|---|
| SIRT1 | Deacetylase | Both protective and deleterious roles in asthma |
| SIRT2 | Deacetylase | Pro-inflammatory role |
| SIRT3 | Deacetylase | Protective role in asthma |
| SIRT4 | Mono-ADP-ribosylase Lipoamidase Deacylase | / |
| SIRT5 | Deacetylase Deglutarylase Demalonylase Desuccinylase | / |
| SIRT6 | Deacetylase defatty-acylase Mono-ADP-ribosylase | Protective role in asthma |
| SIRT7 | Deacetylase Desuccinylase Deglutarylase | Promotes proliferation and migration of airway smooth muscle cells |
Involved mechanisms or effects of modulators of SIRT1 in asthma
| Modulators | Models or specimens | Involved mechanisms or effects |
|---|---|---|
| SRT1720 [ | OVA-induced asthma mouse model | Decrease total and eosinophil cell counts and IL-5 and IL-13 levels in the BAL fluid, alleviate inflammatory cell lung infiltrates histologically, suppress cell proliferation, decrease IL-6 and TNF-α production in splenocytes |
| Resveratrol [ | OVA-induced asthma mouse model | Suppress cell proliferation, decrease IL-6 and TNF-α production in splenocytes |
| Resveratrol [ | OVA-induced asthma mouse model | Alleviate OVA-induced airway inflammation and airway remodeling via PTEN pathway |
| Gentiopicroside [ | OVA-induced asthma mouse model | Alleviate airway inflammation through regulating SIRT1/NF-κB p65 signaling pathway |
| Sirtinol [ | PBMCs from healthy subjects, CD4 + CD45RA + T cells from human cord blood, and HUT78 T lymphocytes | Increase the expression of Th2-associated cytokines, and increase acetylation of GATA-3 protein |
| Salermide [ | human airway epithelial cell line 16HBE, and OVA-induced asthma mouse model | Increased IL-6 mRNA and protein levels via activation of Akt |
| Sirtinol [ | OVA-induced asthma mouse model | Attenuate airway inflammation and hyperresponsiveness through the modulation of vascular endothelial growth factor expression mediated by HIF-1α |
| Cambinol [ | OVA-induced asthma mouse model | Alleviate airway inflammation and hyperresponsiveness, decrease Th2 cytokine production and T cell proliferation in DCs through the derepression of PPAR-γ |
| Sirtinol [ | OVA-induced asthma mouse model | Alleviate airway inflammation and hyperresponsiveness, decrease Th2 cytokine production and T cell proliferation in DCs through the derepression of PPAR-γ |
| EX-527 [ | OVA-induced asthma mouse model | Reduce airway inflammation through the mTOR-mediated autophagy pathway |
OVA: ovalbumin; IL-5: interleukin 5; BAL: bronchoalveolar lavage; TNF-α: tumor necrosis factor-α; PTEN: phosphatase and tensin homologue; NF-κB: Nuclear factor kappa-light-chain-enhancer of activated B cells; PBMCs: peripheral blood mononuclear cells; Akt: serine/threonine-protein kinase; HIF-1α: hypoxia-inducible factor 1α; DCs: dendric cells; PPAR: peroxisome proliferator-activated receptors; mTOR: mammalian target of rapamycin