This review discusses main features of transmembrane (TM) proteins which distinguish them from water‐soluble proteins and allow their adaptation to the anisotropic membrane environment. We overview the structural limitations on membrane protein architecture, spatial arrangement of proteins in membranes and their intrinsic hydrophobic thickness, co‐translational and post‐translational folding and insertion into lipid bilayers, topogenesis, high propensity to form oligomers, and large‐scale conformational transitions during membrane insertion and transport function. Special attention is paid to the polarity of TM protein surfaces described by profiles of dipolarity/polarizability and hydrogen‐bonding capacity parameters that match polarity of...
AbstractRecent three-dimensional structures of helical membrane proteins present new challenges for ...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
Transmembrane domain orientation within some membrane proteins is dependent on membrane lipid compos...
AbstractTo gain insight into adaptations of proteins to their membranes, intrinsic hydrophobic thick...
To gain insight into adaptations of proteins to their membranes, intrinsic hydrophobic thicknesses, ...
AbstractWe provide an overview of lipid-dependent polytopic membrane protein folding and topogenesis...
AbstractMembrane protein folding and topogenesis are tuned to a given lipid profile since lipids and...
AbstractThe membrane environment, its composition, dynamics, and remodeling, have been shown to part...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Cells have developed an incredible machinery to facilitate the insertion of membrane proteins into t...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
AbstractBtuB is a large outer-membrane β-barrel protein that belongs to a class of active transport ...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
Grease to grease – this is how one might begin to describe the tendency of hydrophobic stretches in ...
The functioning of biological membrane proteins (MPs) within synthetic block copolymer membranes is ...
AbstractRecent three-dimensional structures of helical membrane proteins present new challenges for ...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
Transmembrane domain orientation within some membrane proteins is dependent on membrane lipid compos...
AbstractTo gain insight into adaptations of proteins to their membranes, intrinsic hydrophobic thick...
To gain insight into adaptations of proteins to their membranes, intrinsic hydrophobic thicknesses, ...
AbstractWe provide an overview of lipid-dependent polytopic membrane protein folding and topogenesis...
AbstractMembrane protein folding and topogenesis are tuned to a given lipid profile since lipids and...
AbstractThe membrane environment, its composition, dynamics, and remodeling, have been shown to part...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Cells have developed an incredible machinery to facilitate the insertion of membrane proteins into t...
Cells require membrane proteins for a wide spectrum of critical functions. Transmembrane proteins en...
AbstractBtuB is a large outer-membrane β-barrel protein that belongs to a class of active transport ...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
Grease to grease – this is how one might begin to describe the tendency of hydrophobic stretches in ...
The functioning of biological membrane proteins (MPs) within synthetic block copolymer membranes is ...
AbstractRecent three-dimensional structures of helical membrane proteins present new challenges for ...
The membranes of cells are highly complex and heterogeneous structures that fulfill multiple vital t...
Transmembrane domain orientation within some membrane proteins is dependent on membrane lipid compos...