| Literature DB >> 24089590 |
Ewa Pniewska1, Rafal Pawliczak.
Abstract
The increased morbidity, mortality, and ineffective treatment associated with the pathogenesis of chronic inflammatory diseases such as asthma and chronic obstructive pulmonary disease (COPD) have generated much research interest. The key role is played by phospholipases from the A2 superfamily: enzymes which are involved in inflammation through participation in pro- and anti-inflammatory mediators production and have an impact on many immunocompetent cells. The 30 members of the A2 superfamily are divided into 7 groups. Their role in asthma and COPD has been studied in vitro and in vivo (animal models, cell cultures, and patients). This paper contains complete and updated information about the involvement of particular enzymes in the etiology and course of asthma and COPD.Entities:
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Year: 2013 PMID: 24089590 PMCID: PMC3780701 DOI: 10.1155/2013/793505
Source DB: PubMed Journal: Mediators Inflamm ISSN: 0962-9351 Impact factor: 4.711
Figure 1Phospholipases and their role in lipids metabolism.
Characteristics of structure and localization of human phospholipase A2 enzymes. Adapted and modified from [1, 4]. The Roman numeral indicates the group, and the capital letter after the number indicates the subgroup.
| Name | Members (human) | Molecular mass (kDa) | Relationship with Ca2+ | Catalytic site | Localization |
|---|---|---|---|---|---|
|
Secretory | IB (sPLA2IB) | 13–15 | Secreted | ||
| IIA (sPLA2IIA) | 13–15 | Secreted; membrane; secretory granules | |||
| IID (sPLA2IID) | 14-15 | Secreted | |||
| IIE (sPLA2IIE) | 14-15 | Secreted | |||
| IIF (sPLA2IIF) | 16-17 | Secreted | |||
| III (sPLA2III) | 55 | Dependent | Histidine/Aspartic acid | Secreted | |
| V (sPLA2V) | 14 | Secreted; Golgi apparatus; nuclear envelope; plasma membrane | |||
| X (sPLA2X) | 14 | Secreted | |||
| XIIA (sPLA2XIIA) | 19 | Secreted; cytoplasm | |||
| XIIB (sPLA2XIIB, XIII) | 20 | Secreted | |||
|
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| IVA (cPLA2
| 85 | Dependent | Nucleus; cytoplasmic vesicles | ||
| IVB (cPLA2
| 114 | Cytosol | |||
| Cytosolic phospholipase A2 (cPLA2) | IVC (cPLA2
| 61 | Independent | ER; Mitochondrium | |
| IVD (cPLA2
| 92-93 | Serine/Aspartic acid/Arginine | Cytosol; Cytoplasmic vesicle membrane; peripheral membrane protein; cytoplasmic side | ||
| IVE (cPLA2
| 96 | Dependent | Cytosol; lysosome membrane; peripheral membrane protein | ||
| IVF (cPLA2
| 95 | Cytosol; lysosome membrane; peripheral membrane protein; cytoplasmic side | |||
|
| |||||
| Ca2+-independent phospholipase A2 (iPLA2) | VIA-(iPLA2
| 84–90 | Cytosol | ||
| VIB (iPLA2
| 88–91 | ER; peroxisomal and mitochondrial membrane | |||
| VIC (iPLA2
| 146 | Independent | Serine | ER; single-pass type I membrane protein; cytoplasmic side | |
| VID (iPLA2
| 53 | Membrane; single-pass type II membrane protein | |||
| VIE (iPLA2
| 57 | Lipid droplet membrane; single-pass type II membrane protein; cell membrane | |||
| VIF (iPLA2
| 28 | Cytoplasm | |||
|
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| Acidic Ca2+-independent phospholipase A2 | aiPLA2 | 26 | Independent | Serine | Cytoplasm; Lysosome |
|
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| Lysosomal phospholipase A2 | XV (LPLA2, LLPL, ACS) | 45 | Independent | Serine/Histidine/Aspartic acid | Secreted; Lysosome |
|
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| PAF acetylhydrolase (PAF-AH) or Lipoprotein-associated phospholipase A2 | VIIA (Lp-PLA2, Plasma PAF-AH) | 45 | Independent | Serine/Histidine/Aspartic acid | Secreted |
| VIIB (PAF-AH II) | 40 | Cytoplasm | |||
| VIIIA (PAF-AH Ib) | 26 | Cytoplasm | |||
| VIIIB (PAF-AH Ib) | 26 | Cytoplasm | |||
|
| |||||
| Adipose-specific phospholipase A2 | XVI (H-Rev107) | 18 | Independent | Cystein/Histidine/Histidine | Cytoplasm, perinuclear region, Single-pass membrane protein |
ER: endoplasmic reticulum; NTE: neuropathy target esterase.
Mechanism of action and function of human phospholipase A2 enzymes. Adapted and modified from [1, 4, 5].
| Name | Mechanism of action | Function | Sources | |
|---|---|---|---|---|
| Physiology | Pathophysiology | |||
| Secretory phospholipases A2 (sPLA2s) | (i) Enzymatic (liberation of AA and lysophospholipids) | (i) Lipid remodeling for membrane homeostasis | (i) Inflammatory diseases (rheumatoid arthritis, adult respiratory distress syndrome, inflammatory bowel disease, and pancreatitis) | Neutrophils, eosinophils, basophils, T-cells, monocytes, macrophages, platelets, mast cells, airway epithelial cells, alveolar type II epithelial cells, |
|
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| Cytosolic phospholipases A2 (cPLA2s) | (i) enzymatic: lysophospholipase and transacylase activity | (i) AA releasing | (i) Inflammation | Every tissue |
|
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| Ca2+-independent phospholipases | VIA, VIB, VIC, VID, VIEVIF-phospholipase A2 activity | (i) Remodeling of phospholipids | (i) Wallerian degeneration (VIA) | (i) Alveolar cells |
| aiPLA2-phospholipase A2 and peroxiredoxin 6 activity | (i) Degradation and recycling of surfactant phospholipids (remodeling of phosphatidylcholine to dipalmitoyl-phosphatidylcholine (DPPC) | (i) lung cancer, mesothelioma, sarcoidosis | (i) Alveolar macrophages | |
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| Lysosomal phospholipase A2 | (i) Acyl-ceramide synthase | (i) may be the crucial enzyme of pulmonary surfactant phospholipid degradation by alveolar macrophages | (i) Phospholipidosis | (i) Alveolar macrophages |
|
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| PAF acetylhydrolases (PAF-AH) or Lipoprotein-associated phospholipases A2 | (i) Phospholipase A2 activity | (i) Anti-inflammatory properties by hydrolyzing platelet activating factor (PAF) | (i) Generation of lysophospholipids and fatty acid hydroperoxides (ROS) | (i) Alveolar macrophages |
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| Adipose-specific phospholipase A2 | (i) Phospholipase A1 and A2 activity | (i) catalyzes the release of fatty acids from phospholipids in adipose tissue | (i) Obesity | Adipose tissue |