Hydration makes a difference!

  • Understanding how protein rich condensates formed upon liquid–liquid phase separation (LLPS) evolve into solid aggregates is of fundamental importance for several medical applications, since these are suspected to be hot-spots for many neurotoxic diseases. This requires developing experimental approaches to observe in real-time both LLPS and liquid–solid phase separation (LSPS), and to unravel the delicate balance of protein and water interactions dictating the free energy differences between the two. We present a vibrational THz spectroscopy approach that allows doing so from the point of view of hydration water. We focus on a cellular prion protein of high medical relevance, which we can drive to undergo either LLPS or LSPS with few mutations. We find that it is a subtle balance of hydrophobic and hydrophilic solvation contributions that allows tuning between LLPS and LSPS. Hydrophobic hydration provides an entropic driving force to phase separation, through the release of hydration water into the bulk. Water hydrating hydrophilic groups provides an enthalpic driving force to keep the condensates in a liquid state. As a result, when we modify the protein by a few mutations to be less hydrophilic, we shift from LLPS to LSPS. This molecular understanding paves the way for a rational design of proteins.

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Metadaten
Author:Sashary RamosORCiDGND, Janine KampsORCiDGND, Simone PezzottiGND, Konstanze WinklhoferORCiDGND, Jörg TatzeltORCiDGND, Martina HavenithORCiDGND
URN:urn:nbn:de:hbz:294-108246
DOI:https://doi.org/10.13154/294-10824
Subtitle (English):How to tune protein complexes between liquid–liquid and liquid–solid phase separation
Document Type:Article
Language:English
Date of Publication (online):2023/12/14
Date of first Publication:2023/09/20
Embargo Date:2024/09/21
Publishing Institution:Ruhr-Universität Bochum, Universitätsbibliothek
Tag:EXC 2033 RESOLV (Ruhr Explores Solvation)
First Page:1
Last Page:19
Note:
Postprint zu:
Royal Society of Chemistry:
Physical Chemistry Chemical Physics, 2023, Bd. 25, H. 41, 28063-28069
First published: 20.09.2023
https://doi.org/10.1039/D3CP03299J
Accepted Version: Embargo 12 Monate
Note:
Cluster of Excellence RESOLV – EXC 2033 (ID: 390677874)
www.solvation.de
Institutes/Facilities:Lehrstuhl für Physikalische Chemie II
Dewey Decimal Classification:Naturwissenschaften und Mathematik / Chemie, Kristallographie, Mineralogie
faculties:Fakultät für Chemie und Biochemie
Licence (German):License LogoKeine Creative Commons Lizenz - es gelten die Rechteeinräumung und das deutsche Urheberrecht