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Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes

The recognition of intrinsically disordered proteins (IDPs) is highly dependent on dynamics owing to the lack of structure. Here we studied the interplay between dynamics and molecular recognition in IDPs with a combination of time‐resolving tools on timescales ranging from femtoseconds to nanosecon...

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Autores principales: Chowdhury, Aritra, Kovalenko, Sergey A., Aramburu, Iker Valle, Tan, Piau Siong, Ernsting, Nikolaus P., Lemke, Edward A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563697/
https://www.ncbi.nlm.nih.gov/pubmed/30703278
http://dx.doi.org/10.1002/anie.201813354
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author Chowdhury, Aritra
Kovalenko, Sergey A.
Aramburu, Iker Valle
Tan, Piau Siong
Ernsting, Nikolaus P.
Lemke, Edward A.
author_facet Chowdhury, Aritra
Kovalenko, Sergey A.
Aramburu, Iker Valle
Tan, Piau Siong
Ernsting, Nikolaus P.
Lemke, Edward A.
author_sort Chowdhury, Aritra
collection PubMed
description The recognition of intrinsically disordered proteins (IDPs) is highly dependent on dynamics owing to the lack of structure. Here we studied the interplay between dynamics and molecular recognition in IDPs with a combination of time‐resolving tools on timescales ranging from femtoseconds to nanoseconds. We interrogated conformational dynamics and surface water dynamics and its attenuation upon partner binding using two IDPs, IBB and Nup153FG, both of central relevance to the nucleocytoplasmic transport machinery. These proteins bind the same nuclear transport receptor (Importinβ) with drastically different binding mechanisms, coupled folding–binding and fuzzy complex formation, respectively. Solvent fluctuations in the dynamic interface of the Nup153FG‐Importinβ fuzzy complex were largely unperturbed and slightly accelerated relative to the unbound state. In the IBB‐Importinβ complex, on the other hand, substantial relative slowdown of water dynamics was seen in a more rigid interface. These results show a correlation between interfacial water dynamics and the plasticity of IDP complexes, implicating functional relevance for such differential modulation in cellular processes, including nuclear transport.
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spelling pubmed-65636972019-06-20 Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes Chowdhury, Aritra Kovalenko, Sergey A. Aramburu, Iker Valle Tan, Piau Siong Ernsting, Nikolaus P. Lemke, Edward A. Angew Chem Int Ed Engl Communications The recognition of intrinsically disordered proteins (IDPs) is highly dependent on dynamics owing to the lack of structure. Here we studied the interplay between dynamics and molecular recognition in IDPs with a combination of time‐resolving tools on timescales ranging from femtoseconds to nanoseconds. We interrogated conformational dynamics and surface water dynamics and its attenuation upon partner binding using two IDPs, IBB and Nup153FG, both of central relevance to the nucleocytoplasmic transport machinery. These proteins bind the same nuclear transport receptor (Importinβ) with drastically different binding mechanisms, coupled folding–binding and fuzzy complex formation, respectively. Solvent fluctuations in the dynamic interface of the Nup153FG‐Importinβ fuzzy complex were largely unperturbed and slightly accelerated relative to the unbound state. In the IBB‐Importinβ complex, on the other hand, substantial relative slowdown of water dynamics was seen in a more rigid interface. These results show a correlation between interfacial water dynamics and the plasticity of IDP complexes, implicating functional relevance for such differential modulation in cellular processes, including nuclear transport. John Wiley and Sons Inc. 2019-02-28 2019-03-26 /pmc/articles/PMC6563697/ /pubmed/30703278 http://dx.doi.org/10.1002/anie.201813354 Text en © 2019 The Authors. Published by Wiley-VCH Verlag GmbH & Co. KGaA. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Communications
Chowdhury, Aritra
Kovalenko, Sergey A.
Aramburu, Iker Valle
Tan, Piau Siong
Ernsting, Nikolaus P.
Lemke, Edward A.
Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title_full Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title_fullStr Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title_full_unstemmed Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title_short Mechanism‐Dependent Modulation of Ultrafast Interfacial Water Dynamics in Intrinsically Disordered Protein Complexes
title_sort mechanism‐dependent modulation of ultrafast interfacial water dynamics in intrinsically disordered protein complexes
topic Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6563697/
https://www.ncbi.nlm.nih.gov/pubmed/30703278
http://dx.doi.org/10.1002/anie.201813354
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