Abstract
Microglia act as the protective immune cell of the brain. By surveying the tissue to identify and rectify problems, they function to maintain the health of brain cells. The prion protein N-terminal cleavage fragment, N1, has demonstrated neuroprotective activities in vitro and in vivo. This study aimed to elucidate whether N1 could modulate microglial function and, if so, determine the consequences for the surrounding tissue. Using a mixed neuronal lineage and microglia co-culture system, we showed that N1 stimulation changed overall morphology and metabolism, suggesting enhanced cellular viability. Furthermore, N1 induced an increase in Cxcl10 secretion in the co-cultures. Recombinant Cxcl10, administered exogenously, mediated the changes in the mixed neuronal lineage culture morphology and metabolism in the absence of microglia, but no effect of Cxcl10 was observed on microglia cultured on their own. Direct cell-to-cell contact was required for N1 to influence microglia in the co-cultures, and this was linked with restructuring of microglial membrane composition to include a higher GM1 content at interaction sites with surrounding cells. Our findings show that N1 can play a regulatory role in microglial function in the context of an inter-connected network of cells by changing both cellular interaction sites and cytokine secretion.
Publication types
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Research Support, N.I.H., Intramural
MeSH terms
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Animals
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Brain / cytology
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Brain / metabolism
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Cell Communication / drug effects
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Cell Differentiation
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Chemokine CXCL10 / genetics
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Chemokine CXCL10 / metabolism
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Coculture Techniques
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G(M1) Ganglioside / metabolism
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Gene Expression / drug effects
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Genes, Reporter
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Green Fluorescent Proteins / genetics
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Green Fluorescent Proteins / metabolism
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Luminescent Proteins / genetics
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Luminescent Proteins / metabolism
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Mice
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Mice, Knockout
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Microglia / cytology
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Microglia / drug effects*
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Microglia / metabolism
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Neural Stem Cells / cytology
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Neural Stem Cells / drug effects
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Neural Stem Cells / metabolism
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Neurons / cytology
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Neurons / drug effects*
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Neurons / metabolism
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Neuroprotective Agents / chemistry
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Neuroprotective Agents / metabolism
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Neuroprotective Agents / pharmacology*
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Peptide Fragments / chemistry
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Peptide Fragments / metabolism
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Peptide Fragments / pharmacology*
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Primary Cell Culture
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Prion Proteins / chemistry
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Prion Proteins / metabolism
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Prion Proteins / pharmacology*
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Prions / chemistry
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Prions / metabolism
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Receptors, CXCR3 / genetics
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Receptors, CXCR3 / metabolism
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Red Fluorescent Protein
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Single-Cell Analysis
Substances
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Chemokine CXCL10
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Cxcl10 protein, mouse
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Cxcr3 protein, mouse
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Luminescent Proteins
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Neuroprotective Agents
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Peptide Fragments
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Prion Proteins
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Prions
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Receptors, CXCR3
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Green Fluorescent Proteins
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G(M1) Ganglioside