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Published on: February 17, 2016
Olig2-Targeted G-Protein-Coupled Receptor Gpr17 Regulates Oligodendrocyte Survival in Response to
Abstract:
Demyelinating diseases, such as multiple sclerosis, are known to result from acute or chronic injury to the myelin sheath and inadequate remyelination; however, the underlying molecular mechanisms remain unclear. Here, we performed genome occupancy analysis by chromatin immunoprecipitation sequencing in oligodendrocytes in response to lysolecithin-induced injury and found that Olig2 and its downstream target Gpr17 are critical factors in regulating oligodendrocyte survival. After injury to oligodendrocytes, Olig2 was significantly upregulated and transcriptionally targeted the Gpr17 locus. Gpr17 activation inhibited oligodendrocyte survival by reducing the intracellular cAMP level and inducing expression of the pro-apoptotic gene Xaf1 The protein kinase A signaling pathway and the transcription factor c-Fos mediated the regulatory effects of Gpr17 in oligodendrocytes. We showed that Gpr17 inhibition elevated Epac1 expression and promoted oligodendrocyte differentiation. The loss of Gpr17, either globally or specifically in oligodendrocytes, led to an earlier onset of remyelination after myelin injury in mice. Similarly, pharmacological inhibition of Gpr17 with pranlukast promoted remyelination. Our findings indicate that Gpr17, an Olig2 transcriptional target, is activated after injury to oligodendrocytes and that targeted inhibition of Gpr17 promotes oligodendrocyte remyelination.
Significance Statement:
Genome occupancy analysis of oligodendrocytes in response to lysolecithin-mediated demyelination injury revealed that Olig2 and its downstream target Gpr17 are part of regulatory circuitry critical for oligodendrocyte survival. Gpr17 inhibits oligodendrocyte survival through activation of Xaf1 and cell differentiation by reducing Epac1 expression. The loss of Gpr17 in mice led to precocious myelination and an earlier onset of remyelination after demyelination. Pharmacological inhibition of Gpr17 promoted remyelination, highlighting the potential for Gpr17-targeted therapeutic approaches in demyelination diseases.
Insights
Targeting Gpr17 promotes remyelination in demyelinating diseases. Inhibiting Gpr17 in oligodendrocytes enhances myelin repair after injury, offering new therapeutic strategies for conditions like multiple sclerosis.
Area of Science:
- Neuroscience
- Cell Biology
- Molecular Biology
Background:
- Demyelinating diseases, including multiple sclerosis, involve myelin damage and impaired remyelination.
- The molecular mechanisms driving oligodendrocyte survival and remyelination after injury are not fully understood.
Purpose of the Study:
- To investigate the role of Olig2 and its downstream target Gpr17 in oligodendrocyte survival and remyelination following injury.
- To explore Gpr17 as a potential therapeutic target for promoting remyelination.
Main Methods:
- Genome occupancy analysis (ChIP-sequencing) in oligodendrocytes after lysolecithin-induced injury.
- Assessing oligodendrocyte survival, apoptosis (Xaf1), intracellular cAMP levels, and differentiation markers (Epac1).
- In vivo studies using Gpr17 knockout mice and pharmacological inhibition with pranlukast.
Main Results:
- Olig2 targets Gpr17 expression after oligodendrocyte injury.
- Gpr17 activation inhibits oligodendrocyte survival and promotes apoptosis via Xaf1.
- Gpr17 inhibition increases Epac1 expression, promoting oligodendrocyte differentiation and remyelination.
- Loss or inhibition of Gpr17 accelerates remyelination in mouse models.
Conclusions:
- Gpr17 is a critical regulator of oligodendrocyte survival and remyelination following injury.
- Targeted inhibition of Gpr17 presents a promising therapeutic strategy for promoting remyelination in demyelinating diseases.
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