Abstract: The human erythrocyte sialoglycoprotein glycophorin A (GpA) has been used extensively in experiment and simulations as a model of transmembrane helix-dimer formation, emphasizing the critical role of specific residue-residue interactions between helices in dimer stability. While the tertiary dimer structure is modulated by the hydrophobic lipid bilayer environment, we show that interactions of GpA with ordered interfacial water are commensurate to intrahelical forces. The role of lipid-water interface in stabilizing transmembrane proteins is not yet understood; however, dramatic water reordering in the presence of the transmembrane domains is observed from simulations and is possibly measurable by experiment. Interfacial interacti...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
<div><p>Membranes are central for cells as borders to the environment or intracellular organelle def...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
The hydrophobic thickness of membranes, which is manly defined by fatty acids, influences the packin...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
AbstractInsertion and formation of membrane proteins involves the interaction of protein helices wit...
Abstract: The hydrophobic thickness of membranes, which is manly defined by fatty acids, influences ...
Copyright © 2015 Park-media, Ltd. This is an open access article distributed under the Creative Comm...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
<div><p>Membranes are central for cells as borders to the environment or intracellular organelle def...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
The hydrophobic thickness of membranes, which is manly defined by fatty acids, influences the packin...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
AbstractInsertion and formation of membrane proteins involves the interaction of protein helices wit...
Abstract: The hydrophobic thickness of membranes, which is manly defined by fatty acids, influences ...
Copyright © 2015 Park-media, Ltd. This is an open access article distributed under the Creative Comm...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
<div><p>Membranes are central for cells as borders to the environment or intracellular organelle def...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...