Active coacervate droplets as a model for membraneless organelles and protocells

Membraneless organelles like stress granules are active liquid-liquid phase-separated droplets that are involved in many intracellular processes. Their active and dynamic behavior is often regulated by ATP-dependent reactions. However, how exactly membraneless organelles control their dynamic compos...

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Veröffentlicht in:Nature communications 2020-10, Vol.11 (1), p.5167-5167, Article 5167
Hauptverfasser: Donau, Carsten, Späth, Fabian, Sosson, Marilyne, Kriebisch, Brigitte A. K., Schnitter, Fabian, Tena-Solsona, Marta, Kang, Hyun-Seo, Salibi, Elia, Sattler, Michael, Mutschler, Hannes, Boekhoven, Job
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Sprache:eng
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Zusammenfassung:Membraneless organelles like stress granules are active liquid-liquid phase-separated droplets that are involved in many intracellular processes. Their active and dynamic behavior is often regulated by ATP-dependent reactions. However, how exactly membraneless organelles control their dynamic composition remains poorly understood. Herein, we present a model for membraneless organelles based on RNA-containing active coacervate droplets regulated by a fuel-driven reaction cycle. These droplets emerge when fuel is present, but decay without. Moreover, we find these droplets can transiently up-concentrate functional RNA which remains in its active folded state inside the droplets. Finally, we show that in their pathway towards decay, these droplets break apart in multiple droplet fragments. Emergence, decay, rapid exchange of building blocks, and functionality are all hallmarks of membrane-less organelles, and we believe that our work could be powerful as a model to study such organelles. Membraneless organelles are liquid-liquid phase-separated droplets whose behaviour can be regulated by chemical reactions, but this process is poorly understood. Here, the authors report model membraneless organelles based on coacervate droplets that show fuel-driven dynamic behaviour and concentrate functional RNA.
ISSN:2041-1723
2041-1723
DOI:10.1038/s41467-020-18815-9