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Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion

Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complexes. At present, little is known about how the SNARE complexes mediating these two distinct pathways differ in structure. Using...

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Autores principales: Lagow, Robert D, Bao, Hong, Cohen, Evan N, Daniels, Richard W, Zuzek, Aleksej, Williams, Wade H, Macleod, Gregory T, Sutton, R. Bryan, Zhang, Bing
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2007
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1808484/
https://www.ncbi.nlm.nih.gov/pubmed/17341138
http://dx.doi.org/10.1371/journal.pbio.0050072
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author Lagow, Robert D
Bao, Hong
Cohen, Evan N
Daniels, Richard W
Zuzek, Aleksej
Williams, Wade H
Macleod, Gregory T
Sutton, R. Bryan
Zhang, Bing
author_facet Lagow, Robert D
Bao, Hong
Cohen, Evan N
Daniels, Richard W
Zuzek, Aleksej
Williams, Wade H
Macleod, Gregory T
Sutton, R. Bryan
Zhang, Bing
author_sort Lagow, Robert D
collection PubMed
description Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complexes. At present, little is known about how the SNARE complexes mediating these two distinct pathways differ in structure. Using the Drosophila neuromuscular synapse as a model, we show that a mutation modifying a hydrophobic layer in syntaxin 1A regulates the rate of vesicle fusion. Syntaxin 1A molecules share a highly conserved threonine in the C-terminal +7 layer near the transmembrane domain. Mutation of this threonine to isoleucine results in a structural change that more closely resembles those found in syntaxins ascribed to the constitutive secretory pathway. Flies carrying the I254 mutant protein have increased levels of SNARE complexes and dramatically enhanced rate of both constitutive and evoked vesicle fusion. In contrast, overexpression of the T254 wild-type protein in neurons reduces vesicle fusion only in the I254 mutant background. These results are consistent with molecular dynamics simulations of the SNARE core complex, suggesting that T254 serves as an internal brake to dampen SNARE zippering and impede vesicle fusion, whereas I254 favors fusion by enhancing intermolecular interaction within the SNARE core complex.
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spelling pubmed-18084842007-05-01 Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion Lagow, Robert D Bao, Hong Cohen, Evan N Daniels, Richard W Zuzek, Aleksej Williams, Wade H Macleod, Gregory T Sutton, R. Bryan Zhang, Bing PLoS Biol Research Article Both constitutive secretion and Ca(2+)-regulated exocytosis require the assembly of the soluble N-ethylmaleimide–sensitive factor attachment protein receptor (SNARE) complexes. At present, little is known about how the SNARE complexes mediating these two distinct pathways differ in structure. Using the Drosophila neuromuscular synapse as a model, we show that a mutation modifying a hydrophobic layer in syntaxin 1A regulates the rate of vesicle fusion. Syntaxin 1A molecules share a highly conserved threonine in the C-terminal +7 layer near the transmembrane domain. Mutation of this threonine to isoleucine results in a structural change that more closely resembles those found in syntaxins ascribed to the constitutive secretory pathway. Flies carrying the I254 mutant protein have increased levels of SNARE complexes and dramatically enhanced rate of both constitutive and evoked vesicle fusion. In contrast, overexpression of the T254 wild-type protein in neurons reduces vesicle fusion only in the I254 mutant background. These results are consistent with molecular dynamics simulations of the SNARE core complex, suggesting that T254 serves as an internal brake to dampen SNARE zippering and impede vesicle fusion, whereas I254 favors fusion by enhancing intermolecular interaction within the SNARE core complex. Public Library of Science 2007-04 2007-03-06 /pmc/articles/PMC1808484/ /pubmed/17341138 http://dx.doi.org/10.1371/journal.pbio.0050072 Text en © 2007 Lagow et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Lagow, Robert D
Bao, Hong
Cohen, Evan N
Daniels, Richard W
Zuzek, Aleksej
Williams, Wade H
Macleod, Gregory T
Sutton, R. Bryan
Zhang, Bing
Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title_full Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title_fullStr Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title_full_unstemmed Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title_short Modification of a Hydrophobic Layer by a Point Mutation in Syntaxin 1A Regulates the Rate of Synaptic Vesicle Fusion
title_sort modification of a hydrophobic layer by a point mutation in syntaxin 1a regulates the rate of synaptic vesicle fusion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC1808484/
https://www.ncbi.nlm.nih.gov/pubmed/17341138
http://dx.doi.org/10.1371/journal.pbio.0050072
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