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  • Maturation of a PKG-dependent retrograde mechanism for exoendocytic coupling of synaptic vesicles.

Maturation of a PKG-dependent retrograde mechanism for exoendocytic coupling of synaptic vesicles.

Neuron (2012-05-15)
Kohgaku Eguchi, Setsuko Nakanishi, Hiroshi Takagi, Zacharie Taoufiq, Tomoyuki Takahashi
ABSTRACT

At presynaptic terminals vesicular membranes are fused into plasma membrane upon exocytosis and retrieved by endocytosis. During a sustained high-frequency transmission, exoendocytic coupling is critical for the maintenance of synaptic transmission. Here, we show that this homeostatic coupling is supported by cGMP-dependent protein kinase (PKG) at the calyx of Held. This mechanism starts to operate after hearing onset during the second postnatal week, when PKG expression becomes upregulated in the brainstem. Pharmacological tests with capacitance measurements revealed that presynaptic PKG activity is supported by a retrograde signal cascade mediated by NO that is released by activation of postsynaptic NMDA receptors. Activation of PKG also upregulates phosphatidylinositol-4,5-bisphosphate, thereby accelerating endocytosis. Furthermore, presynaptic PKG activity upregulates synaptic fidelity during high-frequency transmission. We conclude that maturation of the PKG-dependent retrograde signal cascade strengthens the homeostatic plasticity for the maintenance of high-frequency synaptic transmission at the fast glutamatergic synapse.

MATERIALS
Product Number
Brand
Product Description

Sigma-Aldrich
Phosphatase Inhibitor Cocktail 3, DMSO solution
Sigma-Aldrich
KT 5823, ≥85% (HPLC), lyophilized powder
Sigma-Aldrich
Sodium orthovanadate, ≥90% (titration)
Sigma-Aldrich
KT5823, Highly specific, cell-permeable, reversible, and ATP-competitive inhibitor of protein kinase G (Ki = 234 nM).
Sigma-Aldrich
PTIO
Sigma-Aldrich
KT5720, A potent, specific, cell-permeable, reversible and ATP-competitive inhibitor of protein kinase A (Ki = 56 nM) that is prepared by a chemical modification of K-252a.