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Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery

Here we introduce the full functional reconstitution of genetically-validated core protein machinery (SNAREs, Munc13, Munc18, Synaptotagmin, Complexin) for synaptic vesicle priming and release in a geometry that enables detailed characterization of the fate of docked vesicles both before and after r...

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Autores principales: Sundaram, R Venkat Kalyana, Chatterjee, Atrouli, Bera, Manindra, Grushin, Kirill, Panda, Aniruddha, Li, Feng, Coleman, Jeff, Lee, Seong, Ramakrishnan, Sathish, Ernst, Andreas M., Gupta, Kallol, Rothman, James E., Krishnakumar, Shyam S.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274626/
https://www.ncbi.nlm.nih.gov/pubmed/37333317
http://dx.doi.org/10.1101/2023.06.05.543781
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author Sundaram, R Venkat Kalyana
Chatterjee, Atrouli
Bera, Manindra
Grushin, Kirill
Panda, Aniruddha
Li, Feng
Coleman, Jeff
Lee, Seong
Ramakrishnan, Sathish
Ernst, Andreas M.
Gupta, Kallol
Rothman, James E.
Krishnakumar, Shyam S.
author_facet Sundaram, R Venkat Kalyana
Chatterjee, Atrouli
Bera, Manindra
Grushin, Kirill
Panda, Aniruddha
Li, Feng
Coleman, Jeff
Lee, Seong
Ramakrishnan, Sathish
Ernst, Andreas M.
Gupta, Kallol
Rothman, James E.
Krishnakumar, Shyam S.
author_sort Sundaram, R Venkat Kalyana
collection PubMed
description Here we introduce the full functional reconstitution of genetically-validated core protein machinery (SNAREs, Munc13, Munc18, Synaptotagmin, Complexin) for synaptic vesicle priming and release in a geometry that enables detailed characterization of the fate of docked vesicles both before and after release is triggered with Ca(2+). Using this novel setup, we discover new roles for diacylglycerol (DAG) in regulating vesicle priming and Ca(2+)-triggered release involving the SNARE assembly chaperone Munc13. We find that low concentrations of DAG profoundly accelerate the rate of Ca(2+)-dependent release, and high concentrations reduce clamping and permit extensive spontaneous release. As expected, DAG also increases the number of ready-release vesicles. Dynamic single-molecule imaging of Complexin binding to ready-release vesicles directly establishes that DAG accelerates the rate of SNAREpin assembly mediated by Munc13 and Munc18 chaperones. The selective effects of physiologically validated mutations confirmed that the Munc18-Syntaxin-VAMP2 ‘template’ complex is a functional intermediate in the production of primed, ready-release vesicles, which requires the coordinated action of Munc13 and Munc18.
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spelling pubmed-102746262023-06-17 Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery Sundaram, R Venkat Kalyana Chatterjee, Atrouli Bera, Manindra Grushin, Kirill Panda, Aniruddha Li, Feng Coleman, Jeff Lee, Seong Ramakrishnan, Sathish Ernst, Andreas M. Gupta, Kallol Rothman, James E. Krishnakumar, Shyam S. bioRxiv Article Here we introduce the full functional reconstitution of genetically-validated core protein machinery (SNAREs, Munc13, Munc18, Synaptotagmin, Complexin) for synaptic vesicle priming and release in a geometry that enables detailed characterization of the fate of docked vesicles both before and after release is triggered with Ca(2+). Using this novel setup, we discover new roles for diacylglycerol (DAG) in regulating vesicle priming and Ca(2+)-triggered release involving the SNARE assembly chaperone Munc13. We find that low concentrations of DAG profoundly accelerate the rate of Ca(2+)-dependent release, and high concentrations reduce clamping and permit extensive spontaneous release. As expected, DAG also increases the number of ready-release vesicles. Dynamic single-molecule imaging of Complexin binding to ready-release vesicles directly establishes that DAG accelerates the rate of SNAREpin assembly mediated by Munc13 and Munc18 chaperones. The selective effects of physiologically validated mutations confirmed that the Munc18-Syntaxin-VAMP2 ‘template’ complex is a functional intermediate in the production of primed, ready-release vesicles, which requires the coordinated action of Munc13 and Munc18. Cold Spring Harbor Laboratory 2023-06-07 /pmc/articles/PMC10274626/ /pubmed/37333317 http://dx.doi.org/10.1101/2023.06.05.543781 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 International License (https://creativecommons.org/licenses/by/4.0/) , which allows reusers to distribute, remix, adapt, and build upon the material in any medium or format, so long as attribution is given to the creator. The license allows for commercial use.
spellingShingle Article
Sundaram, R Venkat Kalyana
Chatterjee, Atrouli
Bera, Manindra
Grushin, Kirill
Panda, Aniruddha
Li, Feng
Coleman, Jeff
Lee, Seong
Ramakrishnan, Sathish
Ernst, Andreas M.
Gupta, Kallol
Rothman, James E.
Krishnakumar, Shyam S.
Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title_full Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title_fullStr Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title_full_unstemmed Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title_short Novel Roles for Diacylglycerol in Synaptic Vesicle Priming and Release Revealed by Complete Reconstitution of Core Protein Machinery
title_sort novel roles for diacylglycerol in synaptic vesicle priming and release revealed by complete reconstitution of core protein machinery
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274626/
https://www.ncbi.nlm.nih.gov/pubmed/37333317
http://dx.doi.org/10.1101/2023.06.05.543781
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