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FEBS Letters|November 12, 2009
Mechanical requirements for membrane fission: common facts from various examplesMartin Lenz, Sandrine Morlot, Aurélien Roux
Biophysical Journal|November 30, 2010
Deformation of dynamin helices damped by membrane frictionSandrine Morlot, Martin Lenz, Jacques Prost, et al.
Annual Review of Biophysics|April 2, 2013
Mechanics of dynamin-mediated membrane fissionSandrine Morlot, Aurélien Roux
Nature Communications|February 20, 2015
A balance between membrane elasticity and polymerization energy sets the shape of spherical clathrin coatsMohammed Saleem, Sandrine Morlot, Annika Hohendahl, et al.
Cell|October 30, 2012
Membrane shape at the edge of the dynamin helix sets location and duration of the fission reactionSandrine Morlot, Valentina Galli, Marius Klein, et al.
Cell|November 3, 2015
Relaxation of Loaded ESCRT-III Spiral Springs Drives Membrane DeformationNicolas Chiaruttini, Lorena Redondo-Morata, Adai Colom, et al.
Proceedings of the National Academy of Sciences of the United States of America|February 18, 2010
Membrane curvature controls dynamin polymerizationAurélien Roux, Gerbrand Koster, Martin Lenz, et al.
Faraday Discussions|December 2, 2021
Common principles of surface deformation in biologyAurélien Roux
Nature Communications|May 31, 2020
Anisotropic ESCRT-III architecture governs helical membrane tube formationJoachim Moser von Filseck, Luca Barberi, Nathaniel Talledge, et al.
F1000Prime Reports|November 7, 2014
Reaching a consensus on the mechanism of dynamin?Aurélien Roux
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