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Cryo-electron tomography reveals structural insights into the membrane binding and remodeling activity of dynamin-like EHDs

Melo, A. A.; Sprink, T.; Noel, J.; Vazquez Sarandeses, E.; van Hoorn, C.; Loerke, J.; M.T. Spahn, C.; Daumke, O.

2021-09-21 biophysics
10.1101/2021.09.20.461157 bioRxiv
Show abstract

Dynamin-related Eps15-homology domain containing proteins (EHDs) oligomerize on membrane surfaces into filaments leading to membrane remodeling. EHD crystal structures in an open and a closed conformation were previously reported, but structural information on the membrane-bound EHD oligomeric structure has remained enigmatic. Consequently, mechanistic insight into EHD-mediated membrane remodeling is lacking. Here, by using cryo-electron tomography and subtomogram averaging, we determined the structure of an EHD4 filament on a tubular membrane template at an average resolution of 7.6 [A]. Assembly of EHD4 is mediated via interfaces in the G-domain and the helical domain. The oligomerized EHD4 structure resembles the closed conformation, where the tips of the helical domains protrude into the membrane. The variation in filament geometry and tube radius suggests the AMPPNP-bound filament has a spontaneous curvature of approximately 1/70 nm-1. Combining the available structural and functional data, we propose a model of EHD-mediated membrane remodeling.

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