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S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction

S-acylation is an essential post-translational modification, which is mediated by a family of 23 zDHHC enzymes in humans. Several thousand proteins are modified by S-acylation; however, we lack a detailed understanding of how enzyme–substrate recognition and specificity is achieved. Previous work sh...

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Autores principales: Butler, Liam, Locatelli, Carolina, Allagioti, Despoina, Lousa, Irina, Lemonidis, Kimon, Tomkinson, Nicholas C.O., Salaun, Christine, Chamberlain, Luke H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800311/
https://www.ncbi.nlm.nih.gov/pubmed/36442513
http://dx.doi.org/10.1016/j.jbc.2022.102754
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author Butler, Liam
Locatelli, Carolina
Allagioti, Despoina
Lousa, Irina
Lemonidis, Kimon
Tomkinson, Nicholas C.O.
Salaun, Christine
Chamberlain, Luke H.
author_facet Butler, Liam
Locatelli, Carolina
Allagioti, Despoina
Lousa, Irina
Lemonidis, Kimon
Tomkinson, Nicholas C.O.
Salaun, Christine
Chamberlain, Luke H.
author_sort Butler, Liam
collection PubMed
description S-acylation is an essential post-translational modification, which is mediated by a family of 23 zDHHC enzymes in humans. Several thousand proteins are modified by S-acylation; however, we lack a detailed understanding of how enzyme–substrate recognition and specificity is achieved. Previous work showed that the ankyrin repeat domain of zDHHC17 (ANK17) recognizes a short linear motif, known as the zDHHC ANK binding motif (zDABM) in substrate protein SNAP25, as a mechanism of substrate recruitment prior to S-acylation. Here, we investigated the S-acylation of the Sprouty and SPRED family of proteins by zDHHC17. Interestingly, although Sprouty-2 (Spry2) contains a zDABM that interacts with ANK17, this mode of binding is dispensable for S-acylation, and indeed removal of the zDABM does not completely ablate binding to zDHHC17. Furthermore, the related SPRED3 protein interacts with and is efficiently S-acylated by zDHHC17, despite lacking a zDABM. We undertook mutational analysis of SPRED3 to better understand the basis of its zDABM-independent interaction with zDHHC17. This analysis found that the cysteine-rich SPR domain of SPRED3, which is the defining feature of all Sprouty and SPRED proteins, interacts with zDHHC17. Surprisingly, the interaction with SPRED3 was independent of ANK17. Our mutational analysis of Spry2 was consistent with the SPR domain of this protein containing a zDHHC17-binding site, and Spry2 also showed detectable binding to a zDHHC17 mutant lacking the ANK domain. Thus, zDHHC17 can recognize its substrates through zDABM-dependent and/or zDABM–independent mechanisms, and some substrates display more than one mode of binding to this enzyme.
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spelling pubmed-98003112023-01-03 S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction Butler, Liam Locatelli, Carolina Allagioti, Despoina Lousa, Irina Lemonidis, Kimon Tomkinson, Nicholas C.O. Salaun, Christine Chamberlain, Luke H. J Biol Chem Research Article S-acylation is an essential post-translational modification, which is mediated by a family of 23 zDHHC enzymes in humans. Several thousand proteins are modified by S-acylation; however, we lack a detailed understanding of how enzyme–substrate recognition and specificity is achieved. Previous work showed that the ankyrin repeat domain of zDHHC17 (ANK17) recognizes a short linear motif, known as the zDHHC ANK binding motif (zDABM) in substrate protein SNAP25, as a mechanism of substrate recruitment prior to S-acylation. Here, we investigated the S-acylation of the Sprouty and SPRED family of proteins by zDHHC17. Interestingly, although Sprouty-2 (Spry2) contains a zDABM that interacts with ANK17, this mode of binding is dispensable for S-acylation, and indeed removal of the zDABM does not completely ablate binding to zDHHC17. Furthermore, the related SPRED3 protein interacts with and is efficiently S-acylated by zDHHC17, despite lacking a zDABM. We undertook mutational analysis of SPRED3 to better understand the basis of its zDABM-independent interaction with zDHHC17. This analysis found that the cysteine-rich SPR domain of SPRED3, which is the defining feature of all Sprouty and SPRED proteins, interacts with zDHHC17. Surprisingly, the interaction with SPRED3 was independent of ANK17. Our mutational analysis of Spry2 was consistent with the SPR domain of this protein containing a zDHHC17-binding site, and Spry2 also showed detectable binding to a zDHHC17 mutant lacking the ANK domain. Thus, zDHHC17 can recognize its substrates through zDABM-dependent and/or zDABM–independent mechanisms, and some substrates display more than one mode of binding to this enzyme. American Society for Biochemistry and Molecular Biology 2022-11-25 /pmc/articles/PMC9800311/ /pubmed/36442513 http://dx.doi.org/10.1016/j.jbc.2022.102754 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Butler, Liam
Locatelli, Carolina
Allagioti, Despoina
Lousa, Irina
Lemonidis, Kimon
Tomkinson, Nicholas C.O.
Salaun, Christine
Chamberlain, Luke H.
S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title_full S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title_fullStr S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title_full_unstemmed S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title_short S-acylation of Sprouty and SPRED proteins by the S-acyltransferase zDHHC17 involves a novel mode of enzyme–substrate interaction
title_sort s-acylation of sprouty and spred proteins by the s-acyltransferase zdhhc17 involves a novel mode of enzyme–substrate interaction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9800311/
https://www.ncbi.nlm.nih.gov/pubmed/36442513
http://dx.doi.org/10.1016/j.jbc.2022.102754
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