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Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity

Attachment of polyubiquitin (poly-Ub) chains to proteins is a major posttranslational modification in eukaryotes. Linear ubiquitin chain assembly complex, consisting of HOIP (HOIL-1-interacting protein), HOIL-1L (heme-oxidized IRP2 Ub ligase 1), and SHARPIN (Shank-associated RH domain–interacting pr...

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Autores principales: Walinda, Erik, Sugase, Kenji, Ishii, Naoki, Shirakawa, Masahiro, Iwai, Kazuhiro, Morimoto, Daichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10511788/
https://www.ncbi.nlm.nih.gov/pubmed/37595872
http://dx.doi.org/10.1016/j.jbc.2023.105165
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author Walinda, Erik
Sugase, Kenji
Ishii, Naoki
Shirakawa, Masahiro
Iwai, Kazuhiro
Morimoto, Daichi
author_facet Walinda, Erik
Sugase, Kenji
Ishii, Naoki
Shirakawa, Masahiro
Iwai, Kazuhiro
Morimoto, Daichi
author_sort Walinda, Erik
collection PubMed
description Attachment of polyubiquitin (poly-Ub) chains to proteins is a major posttranslational modification in eukaryotes. Linear ubiquitin chain assembly complex, consisting of HOIP (HOIL-1-interacting protein), HOIL-1L (heme-oxidized IRP2 Ub ligase 1), and SHARPIN (Shank-associated RH domain–interacting protein), specifically synthesizes “head-to-tail” poly-Ub chains, which are linked via the N-terminal methionine α-amino and C-terminal carboxylate of adjacent Ub units and are thus commonly called “linear” poly-Ub chains. Linear ubiquitin chain assembly complex–assembled linear poly-Ub chains play key roles in immune signaling and suppression of cell death and have been associated with immune diseases and cancer; HOIL-1L is one of the proteins known to selectively bind linear poly-Ub via its Npl4 zinc finger (NZF) domain. Although the structure of the bound form of the HOIL-1L NZF domain with linear di-Ub is known, several aspects of the recognition specificity remain unexplained. Here, we show using NMR and orthogonal biophysical methods, how the NZF domain evolves from a free to the specific linear di-Ub-bound state while rejecting other potential Ub species after weak initial binding. The solution structure of the free NZF domain revealed changes in conformational stability upon linear Ub binding, and interactions between the NZF core and tail revealed conserved electrostatic contacts, which were sensitive to charge modulation at a reported phosphorylation site: threonine-207. Phosphomimetic mutations reduced linear Ub affinity by weakening the integrity of the linear di-Ub–bound conformation. The described molecular determinants of linear di-Ub binding provide insight into the dynamic aspects of the Ub code and the NZF domain’s role in full-length HOIL-1L.
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spelling pubmed-105117882023-09-22 Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity Walinda, Erik Sugase, Kenji Ishii, Naoki Shirakawa, Masahiro Iwai, Kazuhiro Morimoto, Daichi J Biol Chem Research Article Attachment of polyubiquitin (poly-Ub) chains to proteins is a major posttranslational modification in eukaryotes. Linear ubiquitin chain assembly complex, consisting of HOIP (HOIL-1-interacting protein), HOIL-1L (heme-oxidized IRP2 Ub ligase 1), and SHARPIN (Shank-associated RH domain–interacting protein), specifically synthesizes “head-to-tail” poly-Ub chains, which are linked via the N-terminal methionine α-amino and C-terminal carboxylate of adjacent Ub units and are thus commonly called “linear” poly-Ub chains. Linear ubiquitin chain assembly complex–assembled linear poly-Ub chains play key roles in immune signaling and suppression of cell death and have been associated with immune diseases and cancer; HOIL-1L is one of the proteins known to selectively bind linear poly-Ub via its Npl4 zinc finger (NZF) domain. Although the structure of the bound form of the HOIL-1L NZF domain with linear di-Ub is known, several aspects of the recognition specificity remain unexplained. Here, we show using NMR and orthogonal biophysical methods, how the NZF domain evolves from a free to the specific linear di-Ub-bound state while rejecting other potential Ub species after weak initial binding. The solution structure of the free NZF domain revealed changes in conformational stability upon linear Ub binding, and interactions between the NZF core and tail revealed conserved electrostatic contacts, which were sensitive to charge modulation at a reported phosphorylation site: threonine-207. Phosphomimetic mutations reduced linear Ub affinity by weakening the integrity of the linear di-Ub–bound conformation. The described molecular determinants of linear di-Ub binding provide insight into the dynamic aspects of the Ub code and the NZF domain’s role in full-length HOIL-1L. American Society for Biochemistry and Molecular Biology 2023-08-16 /pmc/articles/PMC10511788/ /pubmed/37595872 http://dx.doi.org/10.1016/j.jbc.2023.105165 Text en © 2023 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
Walinda, Erik
Sugase, Kenji
Ishii, Naoki
Shirakawa, Masahiro
Iwai, Kazuhiro
Morimoto, Daichi
Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title_full Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title_fullStr Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title_full_unstemmed Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title_short Solution structure of the HOIL-1L NZF domain reveals a conformational switch regulating linear ubiquitin affinity
title_sort solution structure of the hoil-1l nzf domain reveals a conformational switch regulating linear ubiquitin affinity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10511788/
https://www.ncbi.nlm.nih.gov/pubmed/37595872
http://dx.doi.org/10.1016/j.jbc.2023.105165
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