Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a necessary step in the creation of synthetic cells. It is therefore of both fundamental and practical interest to better understand the basic mechanisms underlying spatial organisation in cells. In this work, we use a continuum model of membrane and protein dynamics to study the behaviour of curvature-inducing proteins on membranes of spherical shape, such as living cells or lipid vesicles. We show that the interplay between curvature energy, entropic forces, and the geometric constraints on the membrane can result in the formation of patterns of highly-curved/protein-rich and weakly-curved/protein-poor domains on the membrane. The spontaneous for...
We explore a simplified macroscopic model of membrane shaping by means of curvature-sensing BAR prot...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
The steric repulsion between proteins on biological membranes is one of the most generic mechanisms ...
The steric repulsion between proteins on biological membranes is one of the most generic mechanisms ...
Inspired by biological membrane shaping in the cell through means of curvature-inducing proteins, we...
Inspired by biological membrane shaping in the cell through means of curvature-inducing proteins, we...
We explore a simplified macroscopic model of membrane shaping by means of curvature-sensing BAR prot...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
We explore a simplified macroscopic model of membrane shaping by means of curvature-sensing BAR prot...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
Spatial organisation is a hallmark of all living cells, and recreating it in model systems is a nece...
To dynamically reshape the membrane, cells rely on a variety of intracellular mechanisms, ranging fr...
The steric repulsion between proteins on biological membranes is one of the most generic mechanisms ...
The steric repulsion between proteins on biological membranes is one of the most generic mechanisms ...
Inspired by biological membrane shaping in the cell through means of curvature-inducing proteins, we...
Inspired by biological membrane shaping in the cell through means of curvature-inducing proteins, we...
We explore a simplified macroscopic model of membrane shaping by means of curvature-sensing BAR prot...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
Biological membranes are selective soft barriers that compartmentalize internal structure of a cell ...
We explore a simplified macroscopic model of membrane shaping by means of curvature-sensing BAR prot...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...
Cellular membranes exhibit a large variety of shapes, strongly coupled to their function. Many biolo...