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Steric confinement of proteins on lipid membranes can drive curvature and tubulation
- Source :
- Proceedings of the National Academy of Sciences. 107:7781-7786
- Publication Year :
- 2010
- Publisher :
- Proceedings of the National Academy of Sciences, 2010.
-
Abstract
- Deformation of lipid membranes into curved structures such as buds and tubules is essential to many cellular structures including endocytic pits and filopodia. Binding of specific proteins to lipid membranes has been shown to promote membrane bending during endocytosis and transport vesicle formation. Additionally, specific lipid species are found to colocalize with many curved membrane structures, inspiring ongoing exploration of a variety of roles for lipid domains in membrane bending. However, the specific mechanisms by which lipids and proteins collaborate to induce curvature remain unknown. Here we demonstrate a new mechanism for induction and amplification of lipid membrane curvature that relies on steric confinement of protein binding on membrane surfaces. Using giant lipid vesicles that contain domains with high affinity for his-tagged proteins, we show that protein crowding on lipid domain surfaces creates a protein layer that buckles outward, spontaneously bending the domain into stable buds and tubules. In contrast to previously described bending mechanisms relying on local steric interactions between proteins and lipids (i.e. helix insertion into membranes), this mechanism produces tubules whose dimensions are defined by global parameters: domain size and membrane tension. Our results suggest the intriguing possibility that confining structures, such as lipid domains and protein lattices, can amplify membrane bending by concentrating the steric interactions between bound proteins. This observation highlights a fundamental physical mechanism for initiation and control of membrane bending that may help explain how lipids and proteins collaborate to create the highly curved structures observed in vivo.
- Subjects :
- Multidisciplinary
Chemistry
Membrane lipids
Peripheral membrane protein
Biophysics
Proteins
Biological membrane
Biological Sciences
Cell biology
Membrane bending
Orientations of Proteins in Membranes database
Models, Chemical
Membrane curvature
Phosphatidylcholines
Membrane fluidity
Histidine
Unilamellar Liposomes
Protein Binding
Elasticity of cell membranes
Subjects
Details
- ISSN :
- 10916490 and 00278424
- Volume :
- 107
- Database :
- OpenAIRE
- Journal :
- Proceedings of the National Academy of Sciences
- Accession number :
- edsair.doi.dedup.....ad49912e30f520dae2829b99c65d563c