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Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21

PROPPINs/WIPIs are β-propeller proteins that bind phosphoinositides and contribute to the recruitment of protein complexes involved in membrane remodelling processes such as autophagosome formation and endosomal trafficking. Yeast Atg21 and mammalian WIPI2 interact with Atg16/ATG16L1 to mediate recr...

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Autores principales: Bueno-Arribas, Miranda, Cruz-Cuevas, Celia, Navas, María-Angeles, Escalante, Ricardo, Vincent, Olivier
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10688262/
https://www.ncbi.nlm.nih.gov/pubmed/37989223
http://dx.doi.org/10.1098/rsob.230192
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author Bueno-Arribas, Miranda
Cruz-Cuevas, Celia
Navas, María-Angeles
Escalante, Ricardo
Vincent, Olivier
author_facet Bueno-Arribas, Miranda
Cruz-Cuevas, Celia
Navas, María-Angeles
Escalante, Ricardo
Vincent, Olivier
author_sort Bueno-Arribas, Miranda
collection PubMed
description PROPPINs/WIPIs are β-propeller proteins that bind phosphoinositides and contribute to the recruitment of protein complexes involved in membrane remodelling processes such as autophagosome formation and endosomal trafficking. Yeast Atg21 and mammalian WIPI2 interact with Atg16/ATG16L1 to mediate recruitment of the lipidation machinery to the autophagosomal membrane. Here, we used the reverse double two-hybrid method (RD2H) to identify residues in Atg21 and Atg16 critical for protein–protein binding. Although our results are generally consistent with the crystal structure of the Atg21-Atg16 complex reported previously, they also reveal that dimerization of the Atg16 coiled-coil domain is required for Atg21 binding. Furthermore, most of the residues identified in Atg21 are conserved in WIPI2 and we showed that these residues also mediate ATG16L1 binding. Strikingly, these residues occupy the same position in the β-propeller structure as residues in PROPPINs/WIPIs Hsv2 and WIPI4 that mediate Atg2/ATG2A binding, supporting the idea that these proteins use different amino acids at the same position to interact with different autophagic proteins. Finally, our findings demonstrate the effectiveness of the RD2H system to identify critical residues for protein–protein interactions and the utility of this method to generate combinatory mutants with a complete loss of binding capacity.
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spelling pubmed-106882622023-11-30 Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21 Bueno-Arribas, Miranda Cruz-Cuevas, Celia Navas, María-Angeles Escalante, Ricardo Vincent, Olivier Open Biol Research PROPPINs/WIPIs are β-propeller proteins that bind phosphoinositides and contribute to the recruitment of protein complexes involved in membrane remodelling processes such as autophagosome formation and endosomal trafficking. Yeast Atg21 and mammalian WIPI2 interact with Atg16/ATG16L1 to mediate recruitment of the lipidation machinery to the autophagosomal membrane. Here, we used the reverse double two-hybrid method (RD2H) to identify residues in Atg21 and Atg16 critical for protein–protein binding. Although our results are generally consistent with the crystal structure of the Atg21-Atg16 complex reported previously, they also reveal that dimerization of the Atg16 coiled-coil domain is required for Atg21 binding. Furthermore, most of the residues identified in Atg21 are conserved in WIPI2 and we showed that these residues also mediate ATG16L1 binding. Strikingly, these residues occupy the same position in the β-propeller structure as residues in PROPPINs/WIPIs Hsv2 and WIPI4 that mediate Atg2/ATG2A binding, supporting the idea that these proteins use different amino acids at the same position to interact with different autophagic proteins. Finally, our findings demonstrate the effectiveness of the RD2H system to identify critical residues for protein–protein interactions and the utility of this method to generate combinatory mutants with a complete loss of binding capacity. The Royal Society 2023-11-22 /pmc/articles/PMC10688262/ /pubmed/37989223 http://dx.doi.org/10.1098/rsob.230192 Text en © 2023 The Authors. https://creativecommons.org/licenses/by/4.0/Published by the Royal Society under the terms of the Creative Commons Attribution License http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, provided the original author and source are credited.
spellingShingle Research
Bueno-Arribas, Miranda
Cruz-Cuevas, Celia
Navas, María-Angeles
Escalante, Ricardo
Vincent, Olivier
Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title_full Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title_fullStr Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title_full_unstemmed Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title_short Coiled-coil-mediated dimerization of Atg16 is required for binding to the PROPPIN Atg21
title_sort coiled-coil-mediated dimerization of atg16 is required for binding to the proppin atg21
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10688262/
https://www.ncbi.nlm.nih.gov/pubmed/37989223
http://dx.doi.org/10.1098/rsob.230192
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