bioRxiv · 10.1101/2023.01.09.523307
DNA-origami line-actants control domain organisation and fission in synthetic membranes
Abstract
Cells can precisely program the shape and lateral organisation of their membranes using protein machinery. Aiming to replicate a comparable degree of control, here we introduce DNA-Origami Line-Actants (DOLAs) as synthetic analogues of membrane-sculpting proteins. DOLAs are designed to selectively accumulate at the line-interface between co-existing domains in phase-separated lipid membranes, modulating the tendency of the domains to coalesce. With experiments and coarse-grained simulations, we demonstrate that DOLAs can reversibly stabilise two-dimensional analogues of Pickering emulsions on synthetic giant liposomes, enabling dynamic programming of membrane lateral organisation. The control afforded over membrane structure by DOLAs extends to three-dimensional morphology, as exemplified by a proof-of-concept synthetic pathway leading to vesicle fission. With DOLAs we lay the foundations for mimicking, in synthetic systems, some of the critical membrane-hosted functionalities of biological cells, including signalling, trafficking, sensing, and division.
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Rubio-Sanchez, R., Cicuta, P., Mognetti, B. M., Di Michele, L.. 2023-01-10. DNA-origami line-actants control domain organisation and fission in synthetic membranes. https://doi.org/10.1101/2023.01.09.523307
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