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Reentrant liquid condensate phase of proteins is stabilized by hydrophobic and non-ionic interactions

Nat Commun. 2021-02; 
Georg Krainer, Timothy J Welsh, Jerelle A Joseph, Jorge R Espinosa, Sina Wittmann, Ella de Csilléry, Akshay Sridhar, Zenon Toprakcioglu, Giedre Gudiškytė, Magdalena A Czekalska, William E Arter, Jordina Guillén-Boixet, Titus M Franzmann, Seema Qamar, Peter St George-Hyslop, Anthony A Hyman, Rosana Collepardo-Guevara, Simon Alberti, Tuomas P J Knowles
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摘要

Liquid-liquid phase separation of proteins underpins the formation of membraneless compartments in living cells. Elucidating the molecular driving forces underlying protein phase transitions is therefore a key objective for understanding biological function and malfunction. Here we show that cellular proteins, which form condensates at low salt concentrations, including FUS, TDP-43, Brd4, Sox2, and Annexin A11, can reenter a phase-separated regime at high salt concentrations. By bringing together experiments and simulations, we demonstrate that this reentrant phase transition in the high-salt regime is driven by hydrophobic and non-ionic interactions, and is mechanistically distinct from the low-salt regim... More

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