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Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis

Munc13 is a multidomain protein of presynaptic active zones that mediates the priming and plasticity of synaptic vesicle exocytosis, but the mechanisms involved remain unclear. Here, we use biophysical, biochemical, and electrophysiological approaches to demonstrate that the central C(2)B-domain of...

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Autores principales: Shin, Ok-Ho, Lu, Jun, Rhee, Jeong-Seop, Tomchick, Diana R., Pang, Zhiping P., Wojcik, Sonja, Camacho-Perez, Marcial, Brose, Nils, Machius, Mischa, Rizo, Josep, Rosenmund, Christian, Südhof, Thomas C.
Formato: Texto
Lenguaje:English
Publicado: 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2916016/
https://www.ncbi.nlm.nih.gov/pubmed/20154707
http://dx.doi.org/10.1038/nsmb.1758
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author Shin, Ok-Ho
Lu, Jun
Rhee, Jeong-Seop
Tomchick, Diana R.
Pang, Zhiping P.
Wojcik, Sonja
Camacho-Perez, Marcial
Brose, Nils
Machius, Mischa
Rizo, Josep
Rosenmund, Christian
Südhof, Thomas C.
author_facet Shin, Ok-Ho
Lu, Jun
Rhee, Jeong-Seop
Tomchick, Diana R.
Pang, Zhiping P.
Wojcik, Sonja
Camacho-Perez, Marcial
Brose, Nils
Machius, Mischa
Rizo, Josep
Rosenmund, Christian
Südhof, Thomas C.
author_sort Shin, Ok-Ho
collection PubMed
description Munc13 is a multidomain protein of presynaptic active zones that mediates the priming and plasticity of synaptic vesicle exocytosis, but the mechanisms involved remain unclear. Here, we use biophysical, biochemical, and electrophysiological approaches to demonstrate that the central C(2)B-domain of Munc13 functions as a Ca(2+)-regulator of short-term synaptic plasticity. The crystal structure of the C(2)B-domain revealed an unusual Ca(2+)-binding site with an amphipathic α-helix. This configuration confers onto the C(2)B-domain unique Ca(2+)-dependent phospholipid-binding properties favoring phosphatidylinositolphosphates. A mutation that inactivated Ca(2+)-dependent phospholipid binding to the C(2)B-domain did not alter neurotransmitter release evoked by isolated action potentials, but depressed release evoked by action potential trains. In contrast, a mutation that increased Ca(2+)-dependent phosphatidylinositolbisphosphate binding to the C(2)B-domain enhanced release evoked by isolated action potentials and by action potential trains. Our data suggest that during repeated action potentials, Ca(2+)- and phosphatidylinositolphosphate-binding to the Munc13 C(2)B-domain potentiate synaptic vesicle exocytosis, thereby offsetting synaptic depression induced by vesicle depletion.
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spelling pubmed-29160162010-09-01 Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis Shin, Ok-Ho Lu, Jun Rhee, Jeong-Seop Tomchick, Diana R. Pang, Zhiping P. Wojcik, Sonja Camacho-Perez, Marcial Brose, Nils Machius, Mischa Rizo, Josep Rosenmund, Christian Südhof, Thomas C. Nat Struct Mol Biol Article Munc13 is a multidomain protein of presynaptic active zones that mediates the priming and plasticity of synaptic vesicle exocytosis, but the mechanisms involved remain unclear. Here, we use biophysical, biochemical, and electrophysiological approaches to demonstrate that the central C(2)B-domain of Munc13 functions as a Ca(2+)-regulator of short-term synaptic plasticity. The crystal structure of the C(2)B-domain revealed an unusual Ca(2+)-binding site with an amphipathic α-helix. This configuration confers onto the C(2)B-domain unique Ca(2+)-dependent phospholipid-binding properties favoring phosphatidylinositolphosphates. A mutation that inactivated Ca(2+)-dependent phospholipid binding to the C(2)B-domain did not alter neurotransmitter release evoked by isolated action potentials, but depressed release evoked by action potential trains. In contrast, a mutation that increased Ca(2+)-dependent phosphatidylinositolbisphosphate binding to the C(2)B-domain enhanced release evoked by isolated action potentials and by action potential trains. Our data suggest that during repeated action potentials, Ca(2+)- and phosphatidylinositolphosphate-binding to the Munc13 C(2)B-domain potentiate synaptic vesicle exocytosis, thereby offsetting synaptic depression induced by vesicle depletion. 2010-02-14 2010-03 /pmc/articles/PMC2916016/ /pubmed/20154707 http://dx.doi.org/10.1038/nsmb.1758 Text en Users may view, print, copy, download and text and data- mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Shin, Ok-Ho
Lu, Jun
Rhee, Jeong-Seop
Tomchick, Diana R.
Pang, Zhiping P.
Wojcik, Sonja
Camacho-Perez, Marcial
Brose, Nils
Machius, Mischa
Rizo, Josep
Rosenmund, Christian
Südhof, Thomas C.
Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title_full Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title_fullStr Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title_full_unstemmed Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title_short Munc13 C(2)B-Domain – an Activity-Dependent Ca(2+)-Regulator of Synaptic Exocytosis
title_sort munc13 c(2)b-domain – an activity-dependent ca(2+)-regulator of synaptic exocytosis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2916016/
https://www.ncbi.nlm.nih.gov/pubmed/20154707
http://dx.doi.org/10.1038/nsmb.1758
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