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Isolation of Cortical Microglia with Preserved Immunophenotype and Functionality From Murine Neonates
Published on: January 30, 2014
Intracellular signaling in M-CSF-induced microglia activation: role of Iba1
Yoshinori Imai1, Shinichi Kohsaka1
1Department of Neurochemistry, National Institute of Neuroscience, Tokyo, Japan.
Abstract:
Microglia are reactively activated by various environmental stimulations caused by brain injury or disease. Activated microglia exhibit morphological transformation, proliferation, migration, phagocytosis, and the production of bioactive molecules. Various molecules are reported and suggested to activate microglia. Among them, macrophage-colony-stimulating factor (M-CSF) is considered one of the most convincing candidates responsible for maintaining activation properties of microglia. Therefore, the focus of the present study is on intracellular molecular events that arise downstream of M-CSF stimulation. M-CSF activates its receptor, Fms tyrosine kinase, and Fms sequentially activates a number of signaling molecules, including PI3K or phospholipase Cgamma (PLCgamma). Stimulation of continuing signaling cascades results in the activation of a small GTPase, Rac, the key molecule in microglia activation. Rac is known to be activated downstream of receptor tyrosine kinases and to regulate reorganization of the actin cytoskeleton, which profoundly underlies the above-mentioned properties of activated microglia. Iba1, a macrophage/microglia-specific calcium-binding protein, was identified by our group and was shown to be involved in the Rac signaling pathway. Further, we introduce a novel signaling pathway in which Rac is activated, dependent on PLCgamma and Iba1. However, to understand the molecular details of microglia activation, future work is required.
Insights
Macrophage-colony-stimulating factor (M-CSF) activates microglia via Fms tyrosine kinase, leading to Rac activation. A novel pathway involving phospholipase Cgamma (PLCgamma) and Iba1 in Rac activation is introduced.
Area of Science:
- Neuroimmunology
- Cellular signaling
Background:
- Microglia, the immune cells of the brain, are activated by injury or disease.
- Activated microglia display altered morphology, proliferation, migration, phagocytosis, and release bioactive molecules.
- Macrophage-colony-stimulating factor (M-CSF) is a key activator maintaining microglial activation.
Purpose of the Study:
- To investigate the intracellular molecular events downstream of M-CSF stimulation in microglia.
- To elucidate the signaling pathways involved in M-CSF-induced microglia activation.
Main Methods:
- Study focused on signaling cascades initiated by M-CSF.
- Examined the roles of Fms tyrosine kinase, PI3K, phospholipase Cgamma (PLCgamma), Rac, and Iba1 in microglia activation.
Main Results:
- M-CSF activates Fms tyrosine kinase, which sequentially activates PI3K or PLCgamma.
- Signaling cascades culminate in the activation of the small GTPase, Rac, a key molecule in microglia activation.
- A novel signaling pathway where Rac activation is dependent on PLCgamma and Iba1 was identified.
Conclusions:
- M-CSF-induced microglia activation involves complex intracellular signaling pathways.
- Rac GTPase is a central regulator of microglia activation downstream of M-CSF.
- The newly identified PLCgamma-Iba1-Rac pathway provides new insights into microglial responses.
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