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Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains

Ubiquitin‐binding shuttle UBQLN2 mediates crosstalk between proteasomal degradation and autophagy, likely via interactions with K48‐ and K63‐linked polyubiquitin chains, respectively. UBQLN2 comprises self‐associating regions that drive its homotypic liquid–liquid phase separation (LLPS). Specific i...

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Autores principales: Dao, Thuy P, Yang, Yiran, Presti, Maria F, Cosgrove, Michael S, Hopkins, Jesse B, Ma, Weikang, Loh, Stewart N, Castañeda, Carlos A
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/PMC9346500/
https://www.ncbi.nlm.nih.gov/pubmed/35762418
http://dx.doi.org/10.15252/embr.202255056
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author Dao, Thuy P
Yang, Yiran
Presti, Maria F
Cosgrove, Michael S
Hopkins, Jesse B
Ma, Weikang
Loh, Stewart N
Castañeda, Carlos A
author_facet Dao, Thuy P
Yang, Yiran
Presti, Maria F
Cosgrove, Michael S
Hopkins, Jesse B
Ma, Weikang
Loh, Stewart N
Castañeda, Carlos A
author_sort Dao, Thuy P
collection PubMed
description Ubiquitin‐binding shuttle UBQLN2 mediates crosstalk between proteasomal degradation and autophagy, likely via interactions with K48‐ and K63‐linked polyubiquitin chains, respectively. UBQLN2 comprises self‐associating regions that drive its homotypic liquid–liquid phase separation (LLPS). Specific interactions between one of these regions and ubiquitin inhibit UBQLN2 LLPS. Here, we show that, unlike ubiquitin, the effects of multivalent polyubiquitin chains on UBQLN2 LLPS are highly dependent on chain types. Specifically, K11‐Ub4 and K48‐Ub4 chains generally inhibit UBQLN2 LLPS, whereas K63‐Ub4, M1‐Ub4 chains, and a designed tetrameric ubiquitin construct significantly enhance LLPS. We demonstrate that these opposing effects stem from differences in chain conformations but not in affinities between chains and UBQLN2. Chains with extended conformations and increased accessibility to the ubiquitin‐binding surface promote UBQLN2 LLPS by enabling a switch between homotypic to partially heterotypic LLPS that is driven by both UBQLN2 self‐interactions and interactions between multiple UBQLN2 units with each polyubiquitin chain. Our study provides mechanistic insights into how the structural and conformational properties of polyubiquitin chains contribute to heterotypic LLPS with ubiquitin‐binding shuttles and adaptors.
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spelling pubmed-93465002022-08-09 Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains Dao, Thuy P Yang, Yiran Presti, Maria F Cosgrove, Michael S Hopkins, Jesse B Ma, Weikang Loh, Stewart N Castañeda, Carlos A EMBO Rep Articles Ubiquitin‐binding shuttle UBQLN2 mediates crosstalk between proteasomal degradation and autophagy, likely via interactions with K48‐ and K63‐linked polyubiquitin chains, respectively. UBQLN2 comprises self‐associating regions that drive its homotypic liquid–liquid phase separation (LLPS). Specific interactions between one of these regions and ubiquitin inhibit UBQLN2 LLPS. Here, we show that, unlike ubiquitin, the effects of multivalent polyubiquitin chains on UBQLN2 LLPS are highly dependent on chain types. Specifically, K11‐Ub4 and K48‐Ub4 chains generally inhibit UBQLN2 LLPS, whereas K63‐Ub4, M1‐Ub4 chains, and a designed tetrameric ubiquitin construct significantly enhance LLPS. We demonstrate that these opposing effects stem from differences in chain conformations but not in affinities between chains and UBQLN2. Chains with extended conformations and increased accessibility to the ubiquitin‐binding surface promote UBQLN2 LLPS by enabling a switch between homotypic to partially heterotypic LLPS that is driven by both UBQLN2 self‐interactions and interactions between multiple UBQLN2 units with each polyubiquitin chain. Our study provides mechanistic insights into how the structural and conformational properties of polyubiquitin chains contribute to heterotypic LLPS with ubiquitin‐binding shuttles and adaptors. John Wiley and Sons Inc. 2022-06-28 /pmc/articles/PMC9346500/ /pubmed/35762418 http://dx.doi.org/10.15252/embr.202255056 Text en © 2022 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
Dao, Thuy P
Yang, Yiran
Presti, Maria F
Cosgrove, Michael S
Hopkins, Jesse B
Ma, Weikang
Loh, Stewart N
Castañeda, Carlos A
Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title_full Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title_fullStr Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title_full_unstemmed Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title_short Mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
title_sort mechanistic insights into enhancement or inhibition of phase separation by different polyubiquitin chains
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9346500/
https://www.ncbi.nlm.nih.gov/pubmed/35762418
http://dx.doi.org/10.15252/embr.202255056
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