AbstractCellular membranes are highly dynamic, undergoing both persistent and dynamic shape changes driven by specialized proteins. The observed membrane shaping can be simple deformations of existing shapes or membrane remodeling involving fission or fusion. Here we describe several mechanistic principles by which membrane shaping proteins act. We especially consider models for membrane bending and fission by EHD2 proteins and membrane bending by N-BAR domains. There are major challenges ahead to understand the general principles by which diverse membrane bending proteins act and to understand how some proteins appear to span multiple modes of action from driving curvature to inducing membrane remodeling
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
AbstractCellular membranes are highly dynamic, undergoing both persistent and dynamic shape changes ...
Membrane-shaping proteins of the BAR domain superfamily are determinants of organelle biogenesis, me...
2016-07-29Membrane curvature is an essential biophysical property utilized within cells to execute t...
BAR domains bend membranes by imposing their curved shape. In this issue, Isas et al. show the struc...
AbstractBAR domains are proteins that sense and sculpt curved membranes in cells, furnishing a relat...
Membrane curvature is an important parameter in defining the morphology of cells, organelles and loc...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membrane curvature is an important parameter in defining the morphology of cells, organelles and loc...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
AbstractA wide spectrum of intracellular processes is dependent on the ability of cells to dynamical...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
AbstractCellular membranes are highly dynamic, undergoing both persistent and dynamic shape changes ...
Membrane-shaping proteins of the BAR domain superfamily are determinants of organelle biogenesis, me...
2016-07-29Membrane curvature is an essential biophysical property utilized within cells to execute t...
BAR domains bend membranes by imposing their curved shape. In this issue, Isas et al. show the struc...
AbstractBAR domains are proteins that sense and sculpt curved membranes in cells, furnishing a relat...
Membrane curvature is an important parameter in defining the morphology of cells, organelles and loc...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membrane curvature is an important parameter in defining the morphology of cells, organelles and loc...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
Membranes of intracellular organelles are characterized by large curvatures with radii of the order ...
AbstractA wide spectrum of intracellular processes is dependent on the ability of cells to dynamical...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...
Numerous physiological phenomena involve highly curved cell membranes with significant shape diversi...