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HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation

HOIL‐1, a component of the linear ubiquitin chain assembly complex (LUBAC), ubiquitylates serine and threonine residues in proteins by esterification. Here, we report that mice expressing an E3 ligase‐inactive HOIL‐1[C458S] mutant accumulate polyglucosan in brain, heart and other organs, indicating...

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Autores principales: Kelsall, Ian R, McCrory, Elisha H, Xu, Yingqi, Scudamore, Cheryl L, Nanda, Sambit K, Mancebo‐Gamella, Paula, Wood, Nicola T, Knebel, Axel, Matthews, Stephen J, Cohen, Philip
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9016349/
https://www.ncbi.nlm.nih.gov/pubmed/35274759
http://dx.doi.org/10.15252/embj.2021109700
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author Kelsall, Ian R
McCrory, Elisha H
Xu, Yingqi
Scudamore, Cheryl L
Nanda, Sambit K
Mancebo‐Gamella, Paula
Wood, Nicola T
Knebel, Axel
Matthews, Stephen J
Cohen, Philip
author_facet Kelsall, Ian R
McCrory, Elisha H
Xu, Yingqi
Scudamore, Cheryl L
Nanda, Sambit K
Mancebo‐Gamella, Paula
Wood, Nicola T
Knebel, Axel
Matthews, Stephen J
Cohen, Philip
author_sort Kelsall, Ian R
collection PubMed
description HOIL‐1, a component of the linear ubiquitin chain assembly complex (LUBAC), ubiquitylates serine and threonine residues in proteins by esterification. Here, we report that mice expressing an E3 ligase‐inactive HOIL‐1[C458S] mutant accumulate polyglucosan in brain, heart and other organs, indicating that HOIL‐1’s E3 ligase activity is essential to prevent these toxic polysaccharide deposits from accumulating. We found that HOIL‐1 monoubiquitylates glycogen and α1:4‐linked maltoheptaose in vitro and identify the C6 hydroxyl moiety of glucose as the site of ester‐linked ubiquitylation. The monoubiquitylation of maltoheptaose was accelerated > 100‐fold by the interaction of Met1‐linked or Lys63‐linked ubiquitin oligomers with the RBR domain of HOIL‐1. HOIL‐1 also transferred pre‐formed ubiquitin oligomers to maltoheptaose en bloc, producing polyubiquitylated maltoheptaose in one catalytic step. The Sharpin and HOIP components of LUBAC, but not HOIL‐1, bound to unbranched and infrequently branched glucose polymers in vitro, but not to highly branched mammalian glycogen, suggesting a potential function in targeting HOIL‐1 to unbranched glucosaccharides in cells. We suggest that monoubiquitylation of unbranched glucosaccharides may initiate their removal from cells, preventing precipitation as polyglucosan.
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spelling pubmed-90163492022-04-28 HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation Kelsall, Ian R McCrory, Elisha H Xu, Yingqi Scudamore, Cheryl L Nanda, Sambit K Mancebo‐Gamella, Paula Wood, Nicola T Knebel, Axel Matthews, Stephen J Cohen, Philip EMBO J Articles HOIL‐1, a component of the linear ubiquitin chain assembly complex (LUBAC), ubiquitylates serine and threonine residues in proteins by esterification. Here, we report that mice expressing an E3 ligase‐inactive HOIL‐1[C458S] mutant accumulate polyglucosan in brain, heart and other organs, indicating that HOIL‐1’s E3 ligase activity is essential to prevent these toxic polysaccharide deposits from accumulating. We found that HOIL‐1 monoubiquitylates glycogen and α1:4‐linked maltoheptaose in vitro and identify the C6 hydroxyl moiety of glucose as the site of ester‐linked ubiquitylation. The monoubiquitylation of maltoheptaose was accelerated > 100‐fold by the interaction of Met1‐linked or Lys63‐linked ubiquitin oligomers with the RBR domain of HOIL‐1. HOIL‐1 also transferred pre‐formed ubiquitin oligomers to maltoheptaose en bloc, producing polyubiquitylated maltoheptaose in one catalytic step. The Sharpin and HOIP components of LUBAC, but not HOIL‐1, bound to unbranched and infrequently branched glucose polymers in vitro, but not to highly branched mammalian glycogen, suggesting a potential function in targeting HOIL‐1 to unbranched glucosaccharides in cells. We suggest that monoubiquitylation of unbranched glucosaccharides may initiate their removal from cells, preventing precipitation as polyglucosan. John Wiley and Sons Inc. 2022-03-11 /pmc/articles/PMC9016349/ /pubmed/35274759 http://dx.doi.org/10.15252/embj.2021109700 Text en ©2022 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
Kelsall, Ian R
McCrory, Elisha H
Xu, Yingqi
Scudamore, Cheryl L
Nanda, Sambit K
Mancebo‐Gamella, Paula
Wood, Nicola T
Knebel, Axel
Matthews, Stephen J
Cohen, Philip
HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title_full HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title_fullStr HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title_full_unstemmed HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title_short HOIL‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
title_sort hoil‐1 ubiquitin ligase activity targets unbranched glucosaccharides and is required to prevent polyglucosan accumulation
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9016349/
https://www.ncbi.nlm.nih.gov/pubmed/35274759
http://dx.doi.org/10.15252/embj.2021109700
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