A bending rigidity parameter for stress granule condensates

Author:

Law Jack O.1ORCID,Jones Carl M.12ORCID,Stevenson Thomas1ORCID,Williamson Thomas A.3ORCID,Turner Matthew S.4ORCID,Kusumaatmaja Halim3ORCID,Grellscheid Sushma N.12ORCID

Affiliation:

1. Computational Biology Unit and Department of Biological Sciences, University of Bergen, Bergen, Norway.

2. Department of Biosciences, University of Durham, Durham, UK.

3. Department of Physics, University of Durham, Durham, UK.

4. Department of Physics, University of Warwick, Coventry, UK.

Abstract

Interfacial tension plays an important role in governing the dynamics of droplet coalescence and determining how condensates interact with and deform lipid membranes and biological filaments. We demonstrate that an interfacial tension-only model is inadequate for describing stress granules in live cells. Harnessing a high-throughput flicker spectroscopy pipeline to analyze the shape fluctuations of tens of thousands of stress granules, we find that the measured fluctuation spectra require an additional contribution, which we attribute to elastic bending deformation. We also show that stress granules have an irregular, nonspherical base shape. These results suggest that stress granules are viscoelastic droplets with a structured interface, rather than simple Newtonian liquids. Furthermore, we observe that the measured interfacial tensions and bending rigidities span a range of several orders of magnitude. Hence, different types of stress granules (and more generally, other biomolecular condensates) can only be differentiated via large-scale surveys.

Publisher

American Association for the Advancement of Science (AAAS)

Subject

Multidisciplinary

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