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TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy

Cells use noncanonical autophagy, also called conjugation of ATG8 to single membranes (CASM), to label damaged intracellular compartments with ubiquitin‐like ATG8 family proteins in order to signal danger caused by pathogens or toxic compounds. CASM relies on E3 complexes to sense membrane damage, b...

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Autores principales: Kaur, Namrita, de la Ballina, Laura Rodriguez, Haukaas, Håvard Styrkestad, Torgersen, Maria Lyngaas, Radulovic, Maja, Munson, Michael J, Sabirsh, Alan, Stenmark, Harald, Simonsen, Anne, Carlsson, Sven R, Lystad, Alf Håkon
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/PMC10476171/
https://www.ncbi.nlm.nih.gov/pubmed/37409525
http://dx.doi.org/10.15252/embj.2022113105
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author Kaur, Namrita
de la Ballina, Laura Rodriguez
Haukaas, Håvard Styrkestad
Torgersen, Maria Lyngaas
Radulovic, Maja
Munson, Michael J
Sabirsh, Alan
Stenmark, Harald
Simonsen, Anne
Carlsson, Sven R
Lystad, Alf Håkon
author_facet Kaur, Namrita
de la Ballina, Laura Rodriguez
Haukaas, Håvard Styrkestad
Torgersen, Maria Lyngaas
Radulovic, Maja
Munson, Michael J
Sabirsh, Alan
Stenmark, Harald
Simonsen, Anne
Carlsson, Sven R
Lystad, Alf Håkon
author_sort Kaur, Namrita
collection PubMed
description Cells use noncanonical autophagy, also called conjugation of ATG8 to single membranes (CASM), to label damaged intracellular compartments with ubiquitin‐like ATG8 family proteins in order to signal danger caused by pathogens or toxic compounds. CASM relies on E3 complexes to sense membrane damage, but so far, only the mechanism to activate ATG16L1‐containing E3 complexes, associated with proton gradient loss, has been described. Here, we show that TECPR1‐containing E3 complexes are key mediators of CASM in cells treated with a variety of pharmacological drugs, including clinically relevant nanoparticles, transfection reagents, antihistamines, lysosomotropic compounds, and detergents. Interestingly, TECPR1 retains E3 activity when ATG16L1 CASM activity is obstructed by the Salmonella Typhimurium pathogenicity factor SopF. Mechanistically, TECPR1 is recruited by damage‐induced sphingomyelin (SM) exposure using two DysF domains, resulting in its activation and ATG8 lipidation. In vitro assays using purified human TECPR1‐ATG5‐ATG12 complex show direct activation of its E3 activity by SM, whereas SM has no effect on ATG16L1‐ATG5‐ATG12. We conclude that TECPR1 is a key activator of CASM downstream of SM exposure.
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spelling pubmed-104761712023-09-05 TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy Kaur, Namrita de la Ballina, Laura Rodriguez Haukaas, Håvard Styrkestad Torgersen, Maria Lyngaas Radulovic, Maja Munson, Michael J Sabirsh, Alan Stenmark, Harald Simonsen, Anne Carlsson, Sven R Lystad, Alf Håkon EMBO J Articles Cells use noncanonical autophagy, also called conjugation of ATG8 to single membranes (CASM), to label damaged intracellular compartments with ubiquitin‐like ATG8 family proteins in order to signal danger caused by pathogens or toxic compounds. CASM relies on E3 complexes to sense membrane damage, but so far, only the mechanism to activate ATG16L1‐containing E3 complexes, associated with proton gradient loss, has been described. Here, we show that TECPR1‐containing E3 complexes are key mediators of CASM in cells treated with a variety of pharmacological drugs, including clinically relevant nanoparticles, transfection reagents, antihistamines, lysosomotropic compounds, and detergents. Interestingly, TECPR1 retains E3 activity when ATG16L1 CASM activity is obstructed by the Salmonella Typhimurium pathogenicity factor SopF. Mechanistically, TECPR1 is recruited by damage‐induced sphingomyelin (SM) exposure using two DysF domains, resulting in its activation and ATG8 lipidation. In vitro assays using purified human TECPR1‐ATG5‐ATG12 complex show direct activation of its E3 activity by SM, whereas SM has no effect on ATG16L1‐ATG5‐ATG12. We conclude that TECPR1 is a key activator of CASM downstream of SM exposure. John Wiley and Sons Inc. 2023-07-06 /pmc/articles/PMC10476171/ /pubmed/37409525 http://dx.doi.org/10.15252/embj.2022113105 Text en © 2023 The Authors. Published under the terms of the CC BY NC ND 4.0 license. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Kaur, Namrita
de la Ballina, Laura Rodriguez
Haukaas, Håvard Styrkestad
Torgersen, Maria Lyngaas
Radulovic, Maja
Munson, Michael J
Sabirsh, Alan
Stenmark, Harald
Simonsen, Anne
Carlsson, Sven R
Lystad, Alf Håkon
TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title_full TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title_fullStr TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title_full_unstemmed TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title_short TECPR1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
title_sort tecpr1 is activated by damage‐induced sphingomyelin exposure to mediate noncanonical autophagy
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10476171/
https://www.ncbi.nlm.nih.gov/pubmed/37409525
http://dx.doi.org/10.15252/embj.2022113105
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