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TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure

Invasive bacteria enter the cytosol of host cells through initial uptake into bacteria‐containing vacuoles (BCVs) and subsequent rupture of the BCV membrane, thereby exposing to the cytosol intraluminal, otherwise shielded danger signals such as glycans and sphingomyelin. The detection of glycans by...

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Autores principales: Boyle, Keith B, Ellison, Cara J, Elliott, Paul R, Schuschnig, Martina, Grimes, Krista, Dionne, Marc S, Sasakawa, Chihiro, Munro, Sean, Martens, Sascha, Randow, Felix
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10476172/
https://www.ncbi.nlm.nih.gov/pubmed/37409490
http://dx.doi.org/10.15252/embj.2022113012
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author Boyle, Keith B
Ellison, Cara J
Elliott, Paul R
Schuschnig, Martina
Grimes, Krista
Dionne, Marc S
Sasakawa, Chihiro
Munro, Sean
Martens, Sascha
Randow, Felix
author_facet Boyle, Keith B
Ellison, Cara J
Elliott, Paul R
Schuschnig, Martina
Grimes, Krista
Dionne, Marc S
Sasakawa, Chihiro
Munro, Sean
Martens, Sascha
Randow, Felix
author_sort Boyle, Keith B
collection PubMed
description Invasive bacteria enter the cytosol of host cells through initial uptake into bacteria‐containing vacuoles (BCVs) and subsequent rupture of the BCV membrane, thereby exposing to the cytosol intraluminal, otherwise shielded danger signals such as glycans and sphingomyelin. The detection of glycans by galectin‐8 triggers anti‐bacterial autophagy, but how cells sense and respond to cytosolically exposed sphingomyelin remains unknown. Here, we identify TECPR1 (tectonin beta‐propeller repeat containing 1) as a receptor for cytosolically exposed sphingomyelin, which recruits ATG5 into an E3 ligase complex that mediates lipid conjugation of LC3 independently of ATG16L1. TECPR1 binds sphingomyelin through its N‐terminal DysF domain (N'DysF), a feature not shared by other mammalian DysF domains. Solving the crystal structure of N'DysF, we identified key residues required for the interaction, including a solvent‐exposed tryptophan (W154) essential for binding to sphingomyelin‐positive membranes and the conjugation of LC3 to lipids. Specificity of the ATG5/ATG12‐E3 ligase responsible for the conjugation of LC3 is therefore conferred by interchangeable receptor subunits, that is, the canonical ATG16L1 and the sphingomyelin‐specific TECPR1, in an arrangement reminiscent of certain multi‐subunit ubiquitin E3 ligases.
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spelling pubmed-104761722023-09-05 TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure Boyle, Keith B Ellison, Cara J Elliott, Paul R Schuschnig, Martina Grimes, Krista Dionne, Marc S Sasakawa, Chihiro Munro, Sean Martens, Sascha Randow, Felix EMBO J Articles Invasive bacteria enter the cytosol of host cells through initial uptake into bacteria‐containing vacuoles (BCVs) and subsequent rupture of the BCV membrane, thereby exposing to the cytosol intraluminal, otherwise shielded danger signals such as glycans and sphingomyelin. The detection of glycans by galectin‐8 triggers anti‐bacterial autophagy, but how cells sense and respond to cytosolically exposed sphingomyelin remains unknown. Here, we identify TECPR1 (tectonin beta‐propeller repeat containing 1) as a receptor for cytosolically exposed sphingomyelin, which recruits ATG5 into an E3 ligase complex that mediates lipid conjugation of LC3 independently of ATG16L1. TECPR1 binds sphingomyelin through its N‐terminal DysF domain (N'DysF), a feature not shared by other mammalian DysF domains. Solving the crystal structure of N'DysF, we identified key residues required for the interaction, including a solvent‐exposed tryptophan (W154) essential for binding to sphingomyelin‐positive membranes and the conjugation of LC3 to lipids. Specificity of the ATG5/ATG12‐E3 ligase responsible for the conjugation of LC3 is therefore conferred by interchangeable receptor subunits, that is, the canonical ATG16L1 and the sphingomyelin‐specific TECPR1, in an arrangement reminiscent of certain multi‐subunit ubiquitin E3 ligases. John Wiley and Sons Inc. 2023-07-06 /pmc/articles/PMC10476172/ /pubmed/37409490 http://dx.doi.org/10.15252/embj.2022113012 Text en © 2023 MRC Laboratory of Molecular Biology and The Authors. Published under the terms of the CC BY 4.0 license. https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Boyle, Keith B
Ellison, Cara J
Elliott, Paul R
Schuschnig, Martina
Grimes, Krista
Dionne, Marc S
Sasakawa, Chihiro
Munro, Sean
Martens, Sascha
Randow, Felix
TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title_full TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title_fullStr TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title_full_unstemmed TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title_short TECPR1 conjugates LC3 to damaged endomembranes upon detection of sphingomyelin exposure
title_sort tecpr1 conjugates lc3 to damaged endomembranes upon detection of sphingomyelin exposure
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10476172/
https://www.ncbi.nlm.nih.gov/pubmed/37409490
http://dx.doi.org/10.15252/embj.2022113012
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