Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming

The interaction between RIM and the C2A domain of Munc13 is known to be required for synaptic vesicle priming. Here the authors show new implications of the C2A domain of Munc13, through its dynamic interaction with RIM, in orchestrating a wide range of modulatory operations that shape vesicle docki...

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Autores principales: Marcial Camacho, Jayeeta Basu, Thorsten Trimbuch, Shuwen Chang, Cristina Pulido-Lozano, Shwu-Shin Chang, Irina Duluvova, Masin Abo-Rady, Josep Rizo, Christian Rosenmund
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Publicado: Nature Portfolio 2017
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Acceso en línea:https://doaj.org/article/52a5936a1e17420b818768e85afd9042
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spelling oai:doaj.org-article:52a5936a1e17420b818768e85afd90422021-12-02T17:06:17ZHeterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming10.1038/ncomms152932041-1723https://doaj.org/article/52a5936a1e17420b818768e85afd90422017-05-01T00:00:00Zhttps://doi.org/10.1038/ncomms15293https://doaj.org/toc/2041-1723The interaction between RIM and the C2A domain of Munc13 is known to be required for synaptic vesicle priming. Here the authors show new implications of the C2A domain of Munc13, through its dynamic interaction with RIM, in orchestrating a wide range of modulatory operations that shape vesicle docking, priming and neurotransmitter release.Marcial CamachoJayeeta BasuThorsten TrimbuchShuwen ChangCristina Pulido-LozanoShwu-Shin ChangIrina DuluvovaMasin Abo-RadyJosep RizoChristian RosenmundNature PortfolioarticleScienceQENNature Communications, Vol 8, Iss 1, Pp 1-13 (2017)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Marcial Camacho
Jayeeta Basu
Thorsten Trimbuch
Shuwen Chang
Cristina Pulido-Lozano
Shwu-Shin Chang
Irina Duluvova
Masin Abo-Rady
Josep Rizo
Christian Rosenmund
Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
description The interaction between RIM and the C2A domain of Munc13 is known to be required for synaptic vesicle priming. Here the authors show new implications of the C2A domain of Munc13, through its dynamic interaction with RIM, in orchestrating a wide range of modulatory operations that shape vesicle docking, priming and neurotransmitter release.
format article
author Marcial Camacho
Jayeeta Basu
Thorsten Trimbuch
Shuwen Chang
Cristina Pulido-Lozano
Shwu-Shin Chang
Irina Duluvova
Masin Abo-Rady
Josep Rizo
Christian Rosenmund
author_facet Marcial Camacho
Jayeeta Basu
Thorsten Trimbuch
Shuwen Chang
Cristina Pulido-Lozano
Shwu-Shin Chang
Irina Duluvova
Masin Abo-Rady
Josep Rizo
Christian Rosenmund
author_sort Marcial Camacho
title Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
title_short Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
title_full Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
title_fullStr Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
title_full_unstemmed Heterodimerization of Munc13 C2A domain with RIM regulates synaptic vesicle docking and priming
title_sort heterodimerization of munc13 c2a domain with rim regulates synaptic vesicle docking and priming
publisher Nature Portfolio
publishDate 2017
url https://doaj.org/article/52a5936a1e17420b818768e85afd9042
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