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Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1
The assembly of SNARE complexes between syntaxin, SNAP-25 and synaptobrevin is required to prime synaptic vesicles for fusion. Since Munc18 and tomosyn compete for syntaxin interactions, the interplay between these proteins is predicted to be important in regulating synaptic transmission. We explore...
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Formato: | Texto |
Lenguaje: | English |
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Frontiers Research Foundation
2010
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Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059690/ https://www.ncbi.nlm.nih.gov/pubmed/21423527 http://dx.doi.org/10.3389/fnsyn.2010.00141 |
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author | Gracheva, Elena O. Maryon, Ed B. Berthelot-Grosjean, Martine Richmond, Janet E. |
author_facet | Gracheva, Elena O. Maryon, Ed B. Berthelot-Grosjean, Martine Richmond, Janet E. |
author_sort | Gracheva, Elena O. |
collection | PubMed |
description | The assembly of SNARE complexes between syntaxin, SNAP-25 and synaptobrevin is required to prime synaptic vesicles for fusion. Since Munc18 and tomosyn compete for syntaxin interactions, the interplay between these proteins is predicted to be important in regulating synaptic transmission. We explored this possibility, by examining genetic interactions between C. elegans unc-18(Munc18), unc-64(syntaxin) and tom-1(tomosyn). We have previously demonstrated that unc-18 mutants have reduced synaptic transmission, whereas tom-1 mutants exhibit enhanced release. Here we show that the unc-18 mutant release defect is associated with loss of two morphologically distinct vesicle pools; those tethered within 25 nm of the plasma membrane and those docked with the plasma membrane. In contrast, priming defective unc-13 mutants accumulate tethered vesicles, while docked vesicles are greatly reduced, indicating tethering is UNC-18-dependent and occurs in the absence of priming. C. elegans unc-64 mutants phenocopy unc-18 mutants, losing both tethered and docked vesicles, whereas overexpression of open syntaxin preferentially increases vesicle docking, suggesting UNC-18/closed syntaxin interactions are responsible for vesicle tethering. Given the competition between vertebrate tomosyn and Munc18, for syntaxin binding, we hypothesized that C. elegans TOM-1 may inhibit both UNC-18-dependent vesicle targeting steps. Consistent with this hypothesis, tom-1 mutants exhibit enhanced UNC-18 plasma membrane localization and a concomitant increase in both tethered and docked synaptic vesicles. Furthermore, in tom-1;unc-18 double mutants the docked, primed vesicle pool is preferentially rescued relative to unc-18 single mutants. Together these data provide evidence for the differential regulation of two vesicle targeting steps by UNC-18 and TOM-1 through competitive interactions with syntaxin. |
format | Text |
id | pubmed-3059690 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2010 |
publisher | Frontiers Research Foundation |
record_format | MEDLINE/PubMed |
spelling | pubmed-30596902011-03-21 Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 Gracheva, Elena O. Maryon, Ed B. Berthelot-Grosjean, Martine Richmond, Janet E. Front Synaptic Neurosci Neuroscience The assembly of SNARE complexes between syntaxin, SNAP-25 and synaptobrevin is required to prime synaptic vesicles for fusion. Since Munc18 and tomosyn compete for syntaxin interactions, the interplay between these proteins is predicted to be important in regulating synaptic transmission. We explored this possibility, by examining genetic interactions between C. elegans unc-18(Munc18), unc-64(syntaxin) and tom-1(tomosyn). We have previously demonstrated that unc-18 mutants have reduced synaptic transmission, whereas tom-1 mutants exhibit enhanced release. Here we show that the unc-18 mutant release defect is associated with loss of two morphologically distinct vesicle pools; those tethered within 25 nm of the plasma membrane and those docked with the plasma membrane. In contrast, priming defective unc-13 mutants accumulate tethered vesicles, while docked vesicles are greatly reduced, indicating tethering is UNC-18-dependent and occurs in the absence of priming. C. elegans unc-64 mutants phenocopy unc-18 mutants, losing both tethered and docked vesicles, whereas overexpression of open syntaxin preferentially increases vesicle docking, suggesting UNC-18/closed syntaxin interactions are responsible for vesicle tethering. Given the competition between vertebrate tomosyn and Munc18, for syntaxin binding, we hypothesized that C. elegans TOM-1 may inhibit both UNC-18-dependent vesicle targeting steps. Consistent with this hypothesis, tom-1 mutants exhibit enhanced UNC-18 plasma membrane localization and a concomitant increase in both tethered and docked synaptic vesicles. Furthermore, in tom-1;unc-18 double mutants the docked, primed vesicle pool is preferentially rescued relative to unc-18 single mutants. Together these data provide evidence for the differential regulation of two vesicle targeting steps by UNC-18 and TOM-1 through competitive interactions with syntaxin. Frontiers Research Foundation 2010-10-05 /pmc/articles/PMC3059690/ /pubmed/21423527 http://dx.doi.org/10.3389/fnsyn.2010.00141 Text en Copyright © 2010 Gracheva, Maryon, Berthelot-Grosjean and Richmond. http://www.frontiersin.org/licenseagreement This is an open-access article subject to an exclusive license agreement between the authors and the Frontiers Research Foundation, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are credited. |
spellingShingle | Neuroscience Gracheva, Elena O. Maryon, Ed B. Berthelot-Grosjean, Martine Richmond, Janet E. Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title | Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title_full | Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title_fullStr | Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title_full_unstemmed | Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title_short | Differential Regulation of Synaptic Vesicle Tethering and Docking by UNC-18 and TOM-1 |
title_sort | differential regulation of synaptic vesicle tethering and docking by unc-18 and tom-1 |
topic | Neuroscience |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3059690/ https://www.ncbi.nlm.nih.gov/pubmed/21423527 http://dx.doi.org/10.3389/fnsyn.2010.00141 |
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