Folding and packing of membrane proteins are highly influenced by the lipidic component of the membrane. Here, we explore how the hydrophobic mismatch (the difference between the hydrophobic span of a transmembrane protein region and the hydrophobic thickness of the lipid membrane around the protein) influences transmembrane helix packing in a cellular environment. Using a ToxRED assay in Escherichia coli and a Bimolecular Fluorescent Complementation approach in human-derived cells complemented by atomistic molecular dynamics simulations we analyzed the dimerization of Glycophorin A derived transmembrane segments. We concluded that, biological membranes can accommodate transmembrane homo-dimers with a wide range of hydrophobic lengths. Hydr...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
<div><p>The vast majority of membrane proteins are anchored to biological membranes through hydropho...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
The principles that govern the folding and packing of membrane proteins are still not completely und...
Membrane proteins are responsible for a variety of key cellular functions including transport of ess...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Hydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membrane and a...
A novel mechanism for membrane modulation of transmembrane protein structure, and consequently funct...
AbstractThe principles that govern the folding and packing of membrane proteins are still not comple...
Summary: The dynamics of cellular membranes is primarily determined by lipid species forming a bilay...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
<div><p>The vast majority of membrane proteins are anchored to biological membranes through hydropho...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...
Folding and packing of membrane proteins are highly influenced by the lipidic component of the membr...
The principles that govern the folding and packing of membrane proteins are still not completely und...
Membrane proteins are responsible for a variety of key cellular functions including transport of ess...
AbstractA novel mechanism for membrane modulation of transmembrane protein structure, and consequent...
AbstractHydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membra...
Hydrophobic mismatch arises from a difference in the hydrophobic thickness of a lipid membrane and a...
A novel mechanism for membrane modulation of transmembrane protein structure, and consequently funct...
AbstractThe principles that govern the folding and packing of membrane proteins are still not comple...
Summary: The dynamics of cellular membranes is primarily determined by lipid species forming a bilay...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
AbstractThe influence of lipid bilayer properties on a defined and sequence-specific transmembrane h...
AbstractHydrophobic mismatch still represents a puzzle for transmembrane peptides, despite the appar...
Membrane proteins account for nearly a quarter of all genes, but their structure and function remain...
<div><p>The vast majority of membrane proteins are anchored to biological membranes through hydropho...
Oligomerization of transmembrane (TM) helices is a key stage in the folding of membrane proteins. Gl...