Abstract
Liposome remodeling processes (e.g., vesiculation and tubulation) due to N-BAR domain interactions with the lipid bilayer are explored with a multi-scale simulation approach. Results from atomistic-level molecular dynamics simulations of membrane binding to the concave face of N-BAR domains are used along with discretized mesoscopic field-theoretic simulations to examine how the spontaneous curvature fields generated by N-BAR domains result in membrane remodeling. It is found that tubulation can be generated by anisotropic N-BAR spontaneous curvature fields, whereas vesiculation is only observed with isotropic N-BAR spontaneous curvature fields at high density. The results of the multi-scale simulations provide insight into recent experimental observations. © 2007 by the Biophysical Society.
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CITATION STYLE
Ayton, G. S., Blood, P. D., & Voth, G. A. (2007). Membrane remodeling from N-BAR domain interactions: Insights from multi-scale simulation. Biophysical Journal, 92(10), 3595–3602. https://doi.org/10.1529/biophysj.106.101709
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