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Presynaptic inhibition upon CB1 or mGlu2/3 receptor activation requires ERK/ MAPK phosphorylation of Munc18-1.
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- المؤلفون: Schmitz, Sabine K1; King, Cillian1; Kortleven, Christian2; Huson, Vincent1; Kroon, Tim2; Kevenaar, Josta T1; Schut, Desiree1; Saarloos, Ingrid1; Hoetjes, Joost P1; Wit, Heidi1; Stiedl, Oliver1,3; Spijker, Sabine3; Li, Ka Wan3; Mansvelder, Huibert D2; Smit, August B3; Cornelisse, Lennart Niels1; Verhage, Matthijs1; Toonen, Ruud F1
- المصدر:
EMBO Journal. 6/1/2016, Vol. 35 Issue 11, p1236-1250. 15p.
- الموضوع:
- معلومة اضافية
- نبذة مختصرة :
Presynaptic cannabinoid ( CB1R) and metabotropic glutamate receptors ( mGluR2/3) regulate synaptic strength by inhibiting secretion. Here, we reveal a presynaptic inhibitory pathway activated by extracellular signal-regulated kinase ( ERK) that mediates CB1R- and mGluR2/3-induced secretion inhibition. This pathway is triggered by a variety of events, from foot shock-induced stress to intense neuronal activity, and induces phosphorylation of the presynaptic protein Munc18-1. Mimicking constitutive phosphorylation of Munc18-1 results in a drastic decrease in synaptic transmission. ERK-mediated phosphorylation of Munc18-1 ultimately leads to degradation by the ubiquitin-proteasome system. Conversely, preventing ERK-dependent Munc18-1 phosphorylation increases synaptic strength. CB1R- and mGluR2/3-induced synaptic inhibition and depolarization-induced suppression of excitation ( DSE) are reduced upon ERK/ MEK pathway inhibition and further reduced when ERK-dependent Munc18-1 phosphorylation is blocked. Thus, ERK-dependent Munc18-1 phosphorylation provides a major negative feedback loop to control synaptic strength upon activation of presynaptic receptors and during intense neuronal activity. [ABSTRACT FROM AUTHOR]
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