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Myosin V and iNOS expression is enhanced in J774 murine macrophages treated with IFN-gamma
1Departamento de Imunologia, Microbiologia e Parasitologia, Universidade Federal de Uberlândia, Brasil.
Abstract:
Actin-based motor protein requirements and nitric oxide (NO) production are important features of macrophage activity during phagocytosis or microbicidal processes. Different classes of myosins contribute directly or indirectly to phagocytosis by providing mechanical force for phagosome closure or organelle movement. Recent data have shown the presence of myosins IC, II, V and IXb in phagosomes of bone marrow-derived murine macrophages. In our investigation we demonstrated the presence of different classes of myosins in J774 macrophages. We also analyzed the effect of gamma interferon (IFN-gamma), with or without calcium ionophore or cytochalasin B, on myosins as well as on inducible nitric oxide synthase (iNOS) expression and NO production. Myosins IC, II, Va, VI and IXb were identified in J774 macrophages. There was an increase of myosin V expression in IFN-gamma-treated cells. iNOS expression was increased by IFN-gamma treatment, while calcium ionophore and cytochalasin B had a negative influence on both myosin and iNOS expression, which was decreased. The increases in NO synthesis were reflected by increased iNOS expression. Macrophages activated by IFN-gamma released significant amounts of NO when compared to control groups. In contrast, NO production by calcium ionophore- and cytochalasin B-treated cells was similar to that of control cells. These results suggest that IFN-gamma is involved in macrophage activation by stimulating protein production to permit both phagocytosis and microbicidal activity.
Insights
Gamma interferon (IFN-gamma) activates macrophages, increasing myosin and inducible nitric oxide synthase (iNOS) expression, which enhances nitric oxide (NO) production for microbicidal activity. Calcium ionophore and cytochalasin B decreased these effects.
Area of Science:
- Immunology
- Cell Biology
Background:
- Macrophage functions like phagocytosis and microbicidal processes rely on actin-based motor proteins and nitric oxide (NO) production.
- Myosins are crucial for phagosome closure and organelle movement during phagocytosis.
- Previous studies identified myosins IC, II, V, and IXb in murine macrophage phagosomes.
Purpose of the Study:
- To identify myosin classes in J774 macrophages.
- To investigate the effects of gamma interferon (IFN-gamma), calcium ionophore, and cytochalasin B on myosin expression, inducible nitric oxide synthase (iNOS) expression, and NO production in macrophages.
Main Methods:
- J774 macrophages were treated with IFN-gamma, with or without calcium ionophore or cytochalasin B.
- Myosin expression, iNOS expression, and NO production were analyzed.
Main Results:
- Myosins IC, II, Va, VI, and IXb were identified in J774 macrophages.
- IFN-gamma treatment increased myosin V and iNOS expression, leading to higher NO production.
- Calcium ionophore and cytochalasin B decreased both myosin and iNOS expression, resulting in reduced NO production.
Conclusions:
- IFN-gamma activates macrophages by upregulating protein production necessary for phagocytosis and microbicidal activity.
- The study elucidates the role of specific myosins and iNOS in IFN-gamma-mediated macrophage activation and NO synthesis.