Literature DB >> 15388780

Regulation of transmitter release by synapsin II in mouse motor terminals.

Dmitry Samigullin1, Cynthia A Bill, William L Coleman, Maria Bykhovskaia.   

Abstract

We investigated quantal release and ultrastructure in the neuromuscular junctions of synapsin II knockout (Syn II KO) mice. Synaptic responses were recorded focally from the diaphragm synapses during electrical stimulation of the phrenic nerve. We found that synapsin II affects transmitter release in a Ca(2+)-dependent manner. At reduced extracellular Ca(2+) (0.5 mM), Syn II KO mice demonstrated a significant increase in evoked and spontaneous quantal release, while at the physiological Ca(2+) concentration (2 mM), quantal release in Syn II KO synapses was unaffected. Protein kinase inhibitor H7 (100 microM) suppressed quantal release significantly stronger in Syn II KO synapses than in wild type (WT), indicating that Syn II KO synapses may compensate for the lack of synapsin II via a phosphorylation-dependent pathway. Electron microscopy analysis demonstrated that the lack of synapsin II results in an approximately 40% decrease in the density of synaptic vesicles in the reserve pool, while the number of vesicles docked to the presynaptic membrane remained unchanged. Synaptic depression in Syn II KO synapses was slightly increased, which is consistent with the depleted vesicle store in these synapses. At reduced Ca(2+) frequency facilitation of synchronous release was significantly increased in Syn II KO, while facilitation of asynchronous release was unaffected. Thus, at the reduced Ca(2+) concentration, synapsin II suppressed transmitter release and facilitation. These results demonstrate that synapsin II can regulate vesicle clustering, transmitter release, and facilitation.

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Year:  2004        PMID: 15388780      PMCID: PMC1665329          DOI: 10.1113/jphysiol.2004.073494

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  40 in total

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  23 in total

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2.  Synapsin II Regulation of GABAergic Synaptic Transmission Is Dependent on Interneuron Subtype.

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Review 7.  The role of synapsins in neuronal development.

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9.  Synapsin II and calcium regulate vesicle docking and the cross-talk between vesicle pools at the mouse motor terminals.

Authors:  William L Coleman; Cynthia A Bill; Fatma Simsek-Duran; György Lonart; Dmitry Samigullin; Maria Bykhovskaia
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10.  Functions of synapsins in corticothalamic facilitation: important roles of synapsin I.

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