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BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission

Nervous wreck (Nwk) is a conserved F-BAR protein that attenuates synaptic growth and promotes synaptic function in Drosophila. In an effort to understand how Nwk carries out its dual roles, we isolated interacting proteins using mass spectrometry. We report a conserved interaction between Nwk protei...

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Autores principales: Ukken, Fiona P., Bruckner, Joseph J., Weir, Kurt L., Hope, Sarah J., Sison, Samantha L., Birschbach, Ryan M., Hicks, Lawrence, Taylor, Kendra L., Dent, Erik W., Gonsalvez, Graydon B., O'Connor-Giles, Kate M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732300/
https://www.ncbi.nlm.nih.gov/pubmed/26567222
http://dx.doi.org/10.1242/jcs.178699
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author Ukken, Fiona P.
Bruckner, Joseph J.
Weir, Kurt L.
Hope, Sarah J.
Sison, Samantha L.
Birschbach, Ryan M.
Hicks, Lawrence
Taylor, Kendra L.
Dent, Erik W.
Gonsalvez, Graydon B.
O'Connor-Giles, Kate M.
author_facet Ukken, Fiona P.
Bruckner, Joseph J.
Weir, Kurt L.
Hope, Sarah J.
Sison, Samantha L.
Birschbach, Ryan M.
Hicks, Lawrence
Taylor, Kendra L.
Dent, Erik W.
Gonsalvez, Graydon B.
O'Connor-Giles, Kate M.
author_sort Ukken, Fiona P.
collection PubMed
description Nervous wreck (Nwk) is a conserved F-BAR protein that attenuates synaptic growth and promotes synaptic function in Drosophila. In an effort to understand how Nwk carries out its dual roles, we isolated interacting proteins using mass spectrometry. We report a conserved interaction between Nwk proteins and BAR-SH3 sorting nexins, a family of membrane-binding proteins implicated in diverse intracellular trafficking processes. In mammalian cells, BAR-SH3 sorting nexins induce plasma membrane tubules that localize NWK2, consistent with a possible functional interaction during the early stages of endocytic trafficking. To study the role of BAR-SH3 sorting nexins in vivo, we took advantage of the lack of genetic redundancy in Drosophila and employed CRISPR-based genome engineering to generate null and endogenously tagged alleles of SH3PX1. SH3PX1 localizes to neuromuscular junctions where it regulates synaptic ultrastructure, but not synapse number. Consistently, neurotransmitter release was significantly diminished in SH3PX1 mutants. Double-mutant and tissue-specific-rescue experiments indicate that SH3PX1 promotes neurotransmitter release presynaptically, at least in part through functional interactions with Nwk, and might act to distinguish the roles of Nwk in regulating synaptic growth and function.
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spelling pubmed-47323002016-02-09 BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission Ukken, Fiona P. Bruckner, Joseph J. Weir, Kurt L. Hope, Sarah J. Sison, Samantha L. Birschbach, Ryan M. Hicks, Lawrence Taylor, Kendra L. Dent, Erik W. Gonsalvez, Graydon B. O'Connor-Giles, Kate M. J Cell Sci Research Article Nervous wreck (Nwk) is a conserved F-BAR protein that attenuates synaptic growth and promotes synaptic function in Drosophila. In an effort to understand how Nwk carries out its dual roles, we isolated interacting proteins using mass spectrometry. We report a conserved interaction between Nwk proteins and BAR-SH3 sorting nexins, a family of membrane-binding proteins implicated in diverse intracellular trafficking processes. In mammalian cells, BAR-SH3 sorting nexins induce plasma membrane tubules that localize NWK2, consistent with a possible functional interaction during the early stages of endocytic trafficking. To study the role of BAR-SH3 sorting nexins in vivo, we took advantage of the lack of genetic redundancy in Drosophila and employed CRISPR-based genome engineering to generate null and endogenously tagged alleles of SH3PX1. SH3PX1 localizes to neuromuscular junctions where it regulates synaptic ultrastructure, but not synapse number. Consistently, neurotransmitter release was significantly diminished in SH3PX1 mutants. Double-mutant and tissue-specific-rescue experiments indicate that SH3PX1 promotes neurotransmitter release presynaptically, at least in part through functional interactions with Nwk, and might act to distinguish the roles of Nwk in regulating synaptic growth and function. The Company of Biologists Ltd 2016-01-01 /pmc/articles/PMC4732300/ /pubmed/26567222 http://dx.doi.org/10.1242/jcs.178699 Text en © 2016. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/3.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Ukken, Fiona P.
Bruckner, Joseph J.
Weir, Kurt L.
Hope, Sarah J.
Sison, Samantha L.
Birschbach, Ryan M.
Hicks, Lawrence
Taylor, Kendra L.
Dent, Erik W.
Gonsalvez, Graydon B.
O'Connor-Giles, Kate M.
BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title_full BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title_fullStr BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title_full_unstemmed BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title_short BAR-SH3 sorting nexins are conserved interacting proteins of Nervous wreck that organize synapses and promote neurotransmission
title_sort bar-sh3 sorting nexins are conserved interacting proteins of nervous wreck that organize synapses and promote neurotransmission
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4732300/
https://www.ncbi.nlm.nih.gov/pubmed/26567222
http://dx.doi.org/10.1242/jcs.178699
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