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Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains

Many biochemical reactions require controlled recruitment of proteins to membranes. This is largely regulated by post-translational modifications. A frequent one is S-acylation, which consists of the addition of acyl chains and can be reversed by poorly understood acyl protein thioesterases (APTs)....

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Autores principales: Abrami, Laurence, Audagnotto, Martina, Ho, Sylvia, Marcaida, Maria Jose, Mesquita, Francisco S., Anwar, Muhammad U., Sandoz, Patrick A., Fonti, Giulia, Pojer, Florence, Peraro, Matteo Dal, van der Goot, F. Gisou
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610442/
https://www.ncbi.nlm.nih.gov/pubmed/33707782
http://dx.doi.org/10.1038/s41589-021-00753-2
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author Abrami, Laurence
Audagnotto, Martina
Ho, Sylvia
Marcaida, Maria Jose
Mesquita, Francisco S.
Anwar, Muhammad U.
Sandoz, Patrick A.
Fonti, Giulia
Pojer, Florence
Peraro, Matteo Dal
van der Goot, F. Gisou
author_facet Abrami, Laurence
Audagnotto, Martina
Ho, Sylvia
Marcaida, Maria Jose
Mesquita, Francisco S.
Anwar, Muhammad U.
Sandoz, Patrick A.
Fonti, Giulia
Pojer, Florence
Peraro, Matteo Dal
van der Goot, F. Gisou
author_sort Abrami, Laurence
collection PubMed
description Many biochemical reactions require controlled recruitment of proteins to membranes. This is largely regulated by post-translational modifications. A frequent one is S-acylation, which consists of the addition of acyl chains and can be reversed by poorly understood acyl protein thioesterases (APTs). Using a panel of computational and experimental approaches, we dissect the mode of action of the major cellular thioesterase APT2 (LYPLA2). We show that soluble APT2 is vulnerable to proteasomal degradation, from which membrane binding protects it. Interaction with membranes requires three consecutive steps: electrostatic attraction, insertion of a hydrophobic loop, and S-acylation by the palmitoyltransferases ZDHHC3 or ZDHHC7. Once bound, APT2 is predicted to deform the lipid bilayer to extract the acyl chain bound to its substrate and capture it in a hydrophobic pocket to allow hydrolysis. This molecular understanding of APT2 paves the way to understand the dynamics of APT2-mediated deacylation of substrates throughout the endomembrane system.
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spelling pubmed-76104422021-09-11 Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains Abrami, Laurence Audagnotto, Martina Ho, Sylvia Marcaida, Maria Jose Mesquita, Francisco S. Anwar, Muhammad U. Sandoz, Patrick A. Fonti, Giulia Pojer, Florence Peraro, Matteo Dal van der Goot, F. Gisou Nat Chem Biol Article Many biochemical reactions require controlled recruitment of proteins to membranes. This is largely regulated by post-translational modifications. A frequent one is S-acylation, which consists of the addition of acyl chains and can be reversed by poorly understood acyl protein thioesterases (APTs). Using a panel of computational and experimental approaches, we dissect the mode of action of the major cellular thioesterase APT2 (LYPLA2). We show that soluble APT2 is vulnerable to proteasomal degradation, from which membrane binding protects it. Interaction with membranes requires three consecutive steps: electrostatic attraction, insertion of a hydrophobic loop, and S-acylation by the palmitoyltransferases ZDHHC3 or ZDHHC7. Once bound, APT2 is predicted to deform the lipid bilayer to extract the acyl chain bound to its substrate and capture it in a hydrophobic pocket to allow hydrolysis. This molecular understanding of APT2 paves the way to understand the dynamics of APT2-mediated deacylation of substrates throughout the endomembrane system. 2021-04-01 2021-03-11 /pmc/articles/PMC7610442/ /pubmed/33707782 http://dx.doi.org/10.1038/s41589-021-00753-2 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Abrami, Laurence
Audagnotto, Martina
Ho, Sylvia
Marcaida, Maria Jose
Mesquita, Francisco S.
Anwar, Muhammad U.
Sandoz, Patrick A.
Fonti, Giulia
Pojer, Florence
Peraro, Matteo Dal
van der Goot, F. Gisou
Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title_full Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title_fullStr Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title_full_unstemmed Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title_short Palmitoylated acyl protein thioesterase APT2 deforms membranes to extract substrate acyl chains
title_sort palmitoylated acyl protein thioesterase apt2 deforms membranes to extract substrate acyl chains
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7610442/
https://www.ncbi.nlm.nih.gov/pubmed/33707782
http://dx.doi.org/10.1038/s41589-021-00753-2
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