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Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains

In multidomain proteins, individual domains connected by flexible linkers are dynamically rearranged upon ligand binding and sensing changes in environmental factors, such as pH and temperature. Here, we characterize dynamic domain rearrangements of Lys48-linked ubiquitin (Ub) chains as models of mu...

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Autores principales: Hiranyakorn, Methanee, Yagi-Utsumi, Maho, Yanaka, Saeko, Ohtsuka, Naoya, Momiyama, Norie, Satoh, Tadashi, Kato, Koichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094362/
https://www.ncbi.nlm.nih.gov/pubmed/37047047
http://dx.doi.org/10.3390/ijms24076075
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author Hiranyakorn, Methanee
Yagi-Utsumi, Maho
Yanaka, Saeko
Ohtsuka, Naoya
Momiyama, Norie
Satoh, Tadashi
Kato, Koichi
author_facet Hiranyakorn, Methanee
Yagi-Utsumi, Maho
Yanaka, Saeko
Ohtsuka, Naoya
Momiyama, Norie
Satoh, Tadashi
Kato, Koichi
author_sort Hiranyakorn, Methanee
collection PubMed
description In multidomain proteins, individual domains connected by flexible linkers are dynamically rearranged upon ligand binding and sensing changes in environmental factors, such as pH and temperature. Here, we characterize dynamic domain rearrangements of Lys48-linked ubiquitin (Ub) chains as models of multidomain proteins in which molecular surfaces mediating intermolecular interactions are involved in intramolecular domain–domain interactions. Using NMR and other biophysical techniques, we characterized dynamic conformational interconversions of diUb between open and closed states regarding solvent exposure of the hydrophobic surfaces of each Ub unit, which serve as binding sites for various Ub-interacting proteins. We found that the hydrophobic Ub-Ub interaction in diUb was reinforced by cysteine substitution of Lys48 of the distal Ub unit because of interaction between the cysteinyl thiol group and the C-terminal segment of the proximal Ub unit. In contrast, the replacement of the isopeptide linker with an artificial ethylenamine linker minimally affected the conformational distributions. Furthermore, we demonstrated that the mutational modification allosterically impacted the exposure of the most distal Ub unit in triUb. Thus, the conformational interconversion of Ub chains offers a unique design framework in Ub-based protein engineering not only for developing biosensing probes but also for allowing new opportunities for the allosteric regulation of multidomain proteins.
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spelling pubmed-100943622023-04-13 Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains Hiranyakorn, Methanee Yagi-Utsumi, Maho Yanaka, Saeko Ohtsuka, Naoya Momiyama, Norie Satoh, Tadashi Kato, Koichi Int J Mol Sci Article In multidomain proteins, individual domains connected by flexible linkers are dynamically rearranged upon ligand binding and sensing changes in environmental factors, such as pH and temperature. Here, we characterize dynamic domain rearrangements of Lys48-linked ubiquitin (Ub) chains as models of multidomain proteins in which molecular surfaces mediating intermolecular interactions are involved in intramolecular domain–domain interactions. Using NMR and other biophysical techniques, we characterized dynamic conformational interconversions of diUb between open and closed states regarding solvent exposure of the hydrophobic surfaces of each Ub unit, which serve as binding sites for various Ub-interacting proteins. We found that the hydrophobic Ub-Ub interaction in diUb was reinforced by cysteine substitution of Lys48 of the distal Ub unit because of interaction between the cysteinyl thiol group and the C-terminal segment of the proximal Ub unit. In contrast, the replacement of the isopeptide linker with an artificial ethylenamine linker minimally affected the conformational distributions. Furthermore, we demonstrated that the mutational modification allosterically impacted the exposure of the most distal Ub unit in triUb. Thus, the conformational interconversion of Ub chains offers a unique design framework in Ub-based protein engineering not only for developing biosensing probes but also for allowing new opportunities for the allosteric regulation of multidomain proteins. MDPI 2023-03-23 /pmc/articles/PMC10094362/ /pubmed/37047047 http://dx.doi.org/10.3390/ijms24076075 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Hiranyakorn, Methanee
Yagi-Utsumi, Maho
Yanaka, Saeko
Ohtsuka, Naoya
Momiyama, Norie
Satoh, Tadashi
Kato, Koichi
Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title_full Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title_fullStr Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title_full_unstemmed Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title_short Mutational and Environmental Effects on the Dynamic Conformational Distributions of Lys48-Linked Ubiquitin Chains
title_sort mutational and environmental effects on the dynamic conformational distributions of lys48-linked ubiquitin chains
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10094362/
https://www.ncbi.nlm.nih.gov/pubmed/37047047
http://dx.doi.org/10.3390/ijms24076075
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