Transmembrane helix association is a fundamental step in the folding of helical membrane proteins. The prototypical example of this association is formation of the glycophorin dimer. While its structure and stability have been well-characterized experimentally, the detailed assembly mechanism is harder to obtain. Here, we use all-atom simulations within phospholipid membrane to study glycophorin association. We find that initial association results in the formation of a non-native intermediate, separated by a significant free energy barrier from the dimer with a native binding interface. We have used transition-path sampling to determine the association mechanism. We find that the mechanism of the initial bimolecular association to form the...
The cell membrane is “stuffed” with proteins, whose transmembrane (TM) helical domains spontaneously...
The interactions and forces that direct membrane protein folding are poorly understood by comparison...
Interactions of lipids are central to the folding and stability of membrane proteins. Coarse-grained...
Transmembrane helix association is a fundamental step in the folding of helical membrane proteins. T...
Transmembrane helix association is a fundamental step in the folding of helical membrane proteins. T...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
ABSTRACT: While several reports have suggested a role for helix-helix interactions in membrane prote...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
The cell membrane is “stuffed” with proteins, whose transmembrane (TM) helical domains spontaneously...
The interactions and forces that direct membrane protein folding are poorly understood by comparison...
Interactions of lipids are central to the folding and stability of membrane proteins. Coarse-grained...
Transmembrane helix association is a fundamental step in the folding of helical membrane proteins. T...
Transmembrane helix association is a fundamental step in the folding of helical membrane proteins. T...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Atomistic simulations have recently been shown to be sufficiently accurate to reversibly fold globul...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
ABSTRACT: While several reports have suggested a role for helix-helix interactions in membrane prote...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
The glycophorin helix dimer is a paradigm for the exploration of helix-helix interactions in integra...
The cell membrane is “stuffed” with proteins, whose transmembrane (TM) helical domains spontaneously...
The interactions and forces that direct membrane protein folding are poorly understood by comparison...
Interactions of lipids are central to the folding and stability of membrane proteins. Coarse-grained...