Shape transformations and topological changes of lipid vesicles, such as fusion, budding, and fission, have important chemical physical and biological significance. In this paper, we study the fission process of lipid vesicles. Two distinct routes are considered that are both based on an asymmetry of the lipid distribution within the membrane. This asymmetry consists of a nonuniform distribution of two types of lipids. In the first mechanism, the two types of lipids are equally distributed over both leaflets of the membrane. Phase separation of the lipids within both leaflets, however, results in the formation of rafts, which form buds that can split off. In the second mechanism, the asymmetry consists of a difference in composition between...
Studies on vesicle formation by the Coat Protein I (COPI) complex have contributed to a basic unders...
The model systems (giant unilamellar vesicles, GUVs) represent an essential tool to study the format...
Unilamellar lipid vesicles can serve as model for protocells. We present a vesicle fission mechanism...
Shape transformations and topological changes of lipid vesicles, such as fusion, budding, and fissio...
Together with vesicle fusion and budding, vesicle fission plays an important role in intracellular t...
We report on budding and fission of protein-free vesicles swollen from a natural lipid mixture of bo...
AbstractMembrane fission occurs in eukaryotic cells whenever a vesicle is produced or a larger subce...
Asymmetric cell division is common in biology and plays critical roles in differentiation and develo...
A common mechanism for intracellular transport is the use of controlled deformations of the membrane...
Lipid bilayer membranes are known to form various structures like large sheets or vesicles. When bot...
Membrane fission is required for vesicular traffic between intracellular compartments. Dynamin is a ...
We present a model of bi-phasic vesicle in the limit of large surface tension. In this regime, the v...
Lipid membranes are selective barriers that encapsulate cellular components and define the identity ...
We discuss the shape formation and shape transitions of simple bilayer vesicles in context with thei...
AbstractMembrane budding-fission is a fundamental process generating intracellular carriers of prote...
Studies on vesicle formation by the Coat Protein I (COPI) complex have contributed to a basic unders...
The model systems (giant unilamellar vesicles, GUVs) represent an essential tool to study the format...
Unilamellar lipid vesicles can serve as model for protocells. We present a vesicle fission mechanism...
Shape transformations and topological changes of lipid vesicles, such as fusion, budding, and fissio...
Together with vesicle fusion and budding, vesicle fission plays an important role in intracellular t...
We report on budding and fission of protein-free vesicles swollen from a natural lipid mixture of bo...
AbstractMembrane fission occurs in eukaryotic cells whenever a vesicle is produced or a larger subce...
Asymmetric cell division is common in biology and plays critical roles in differentiation and develo...
A common mechanism for intracellular transport is the use of controlled deformations of the membrane...
Lipid bilayer membranes are known to form various structures like large sheets or vesicles. When bot...
Membrane fission is required for vesicular traffic between intracellular compartments. Dynamin is a ...
We present a model of bi-phasic vesicle in the limit of large surface tension. In this regime, the v...
Lipid membranes are selective barriers that encapsulate cellular components and define the identity ...
We discuss the shape formation and shape transitions of simple bilayer vesicles in context with thei...
AbstractMembrane budding-fission is a fundamental process generating intracellular carriers of prote...
Studies on vesicle formation by the Coat Protein I (COPI) complex have contributed to a basic unders...
The model systems (giant unilamellar vesicles, GUVs) represent an essential tool to study the format...
Unilamellar lipid vesicles can serve as model for protocells. We present a vesicle fission mechanism...