Signatures of protein structure in the cooperative gating of mechanosensitive ion channels
arXiv:1611.00693 · doi:10.1209/0295-5075/107/48004
Abstract
Membrane proteins deform the surrounding lipid bilayer, which can lead to membrane-mediated interactions between neighboring proteins. Using the mechanosensitive channel of large conductance (MscL) as a model system, we demonstrate how the observed differences in protein structure can affect membrane-mediated interactions and cooperativity among membrane proteins. We find that distinct oligomeric states of MscL lead to distinct gateway states for the clustering of MscL, and predict signatures of MscL structure and spatial organization in the cooperative gating of MscL. Our modeling approach establishes a quantitative relation between the observed shapes and cooperative function of membrane~proteins.
Cited by in corpus (5)
- Bilayer-thickness-mediated interactions between integral membrane proteins
- Architecture and Function of Mechanosensitive Membrane Protein Lattices
- Membrane-mediated interactions
- Dependence of protein-induced lipid bilayer deformations on protein shape
- Thermodynamic competition between membrane protein oligomeric states