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The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation

S-Acylation of the SNARE protein SNAP25 (synaptosome-associated protein of 25 kDa) is mediated by a subset of Golgi zinc finger DHHC-type palmitoyltransferase (zDHHC) enzymes, particularly zDHHC17. The ankyrin repeat domain of zDHHC17 interacts with a short linear motif known as the zDHHC ankyrin re...

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Autores principales: Salaun, Christine, Greaves, Jennifer, Tomkinson, Nicholas C. O., Chamberlain, Luke H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7247313/
https://www.ncbi.nlm.nih.gov/pubmed/32317281
http://dx.doi.org/10.1074/jbc.RA120.012726
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author Salaun, Christine
Greaves, Jennifer
Tomkinson, Nicholas C. O.
Chamberlain, Luke H.
author_facet Salaun, Christine
Greaves, Jennifer
Tomkinson, Nicholas C. O.
Chamberlain, Luke H.
author_sort Salaun, Christine
collection PubMed
description S-Acylation of the SNARE protein SNAP25 (synaptosome-associated protein of 25 kDa) is mediated by a subset of Golgi zinc finger DHHC-type palmitoyltransferase (zDHHC) enzymes, particularly zDHHC17. The ankyrin repeat domain of zDHHC17 interacts with a short linear motif known as the zDHHC ankyrin repeat–binding motif (zDABM) in SNAP25 ((112)VVASQP(117)), which is downstream of its S-acylated, cysteine-rich domain ((85)CGLCVCPC(92)). Here, we investigated the importance of a flexible linker region (amino acids 93–111, referred to hereafter as the “mini-linker” region) that separates the zDABM and S-acylated cysteines in SNAP25. Shortening the mini-linker did not affect the SNAP25–zDHHC17 interaction but blocked S-acylation. Insertion of additional flexible glycine-serine repeats had no effect on S-acylation, but extended and rigid alanine-proline repeats perturbed it. A SNAP25 mutant in which the mini-linker region was substituted with a flexible glycine-serine linker of the same length underwent efficient S-acylation. Furthermore, this mutant displayed the same intracellular localization as WT SNAP25, indicating that the amino acid composition of the mini-linker is not important for SNAP25 localization. Using the results of previous peptide array experiments, we generated a SNAP25 mutant predicted to have a higher-affinity zDABM. This mutant interacted with zDHHC17 more strongly but was S-acylated with reduced efficiency in HEK293T cells, implying that a lower-affinity interaction of the SNAP25 zDABM with zDHHC17 is optimal for S-acylation efficiency. These results show that amino acids 93–111 in SNAP25 act as a flexible molecular spacer that ensures efficient coupling of the SNAP25–zDHHC17 interaction and S-acylation of SNAP25.
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spelling pubmed-72473132020-06-05 The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation Salaun, Christine Greaves, Jennifer Tomkinson, Nicholas C. O. Chamberlain, Luke H. J Biol Chem Cell Biology S-Acylation of the SNARE protein SNAP25 (synaptosome-associated protein of 25 kDa) is mediated by a subset of Golgi zinc finger DHHC-type palmitoyltransferase (zDHHC) enzymes, particularly zDHHC17. The ankyrin repeat domain of zDHHC17 interacts with a short linear motif known as the zDHHC ankyrin repeat–binding motif (zDABM) in SNAP25 ((112)VVASQP(117)), which is downstream of its S-acylated, cysteine-rich domain ((85)CGLCVCPC(92)). Here, we investigated the importance of a flexible linker region (amino acids 93–111, referred to hereafter as the “mini-linker” region) that separates the zDABM and S-acylated cysteines in SNAP25. Shortening the mini-linker did not affect the SNAP25–zDHHC17 interaction but blocked S-acylation. Insertion of additional flexible glycine-serine repeats had no effect on S-acylation, but extended and rigid alanine-proline repeats perturbed it. A SNAP25 mutant in which the mini-linker region was substituted with a flexible glycine-serine linker of the same length underwent efficient S-acylation. Furthermore, this mutant displayed the same intracellular localization as WT SNAP25, indicating that the amino acid composition of the mini-linker is not important for SNAP25 localization. Using the results of previous peptide array experiments, we generated a SNAP25 mutant predicted to have a higher-affinity zDABM. This mutant interacted with zDHHC17 more strongly but was S-acylated with reduced efficiency in HEK293T cells, implying that a lower-affinity interaction of the SNAP25 zDABM with zDHHC17 is optimal for S-acylation efficiency. These results show that amino acids 93–111 in SNAP25 act as a flexible molecular spacer that ensures efficient coupling of the SNAP25–zDHHC17 interaction and S-acylation of SNAP25. American Society for Biochemistry and Molecular Biology 2020-05-22 2020-04-21 /pmc/articles/PMC7247313/ /pubmed/32317281 http://dx.doi.org/10.1074/jbc.RA120.012726 Text en © 2020 Salaun et al. Author's Choice—Final version open access under the terms of the Creative Commons CC-BY license (http://creativecommons.org/licenses/by/4.0) .
spellingShingle Cell Biology
Salaun, Christine
Greaves, Jennifer
Tomkinson, Nicholas C. O.
Chamberlain, Luke H.
The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title_full The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title_fullStr The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title_full_unstemmed The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title_short The linker domain of the SNARE protein SNAP25 acts as a flexible molecular spacer that ensures efficient S-acylation
title_sort linker domain of the snare protein snap25 acts as a flexible molecular spacer that ensures efficient s-acylation
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7247313/
https://www.ncbi.nlm.nih.gov/pubmed/32317281
http://dx.doi.org/10.1074/jbc.RA120.012726
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