Background: Transmembrane helices (TMHs) frequently occur amongst protein architectures as means for proteins to attach to or embed into biological membranes. Physical constraints such as the membrane’s hydrophobicity and electrostatic potential apply uniform requirements to TMHs and their flanking regions; consequently, they are mirrored in their sequence patterns (in addition to TMHs being a span of generally hydrophobic residues) on top of variations enforced by the specific protein’s biological functions. Results: With statistics derived from a large body of protein sequences, we demonstrate that, in addition to the positive charge preference at the cytoplasmic inside (positive-inside rule), negatively charged residues preferentially oc...
AbstractIn integral membrane proteins, regions that span the lipid bilayer alternate with regions th...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
The functions of transmembrane proteins in living cells are widespread; they range from various tran...
Abstract Background Transmembrane helices (TMHs) frequently occur amongst protein architectures as m...
The net charge per TMH plotted at each position; the positive-inside rule is stronger in TMHs from s...
ABSTRACT One of the central paradigms of structural biology is that membrane proteins are ‘‘inside-o...
Recent advances in determination of the high-resolution structure of membrane proteins now enable an...
Membrane proteins fulfil a number of tasks in cells, including signalling, cell-cell interaction, an...
alpha-Helical hairpins, consisting of a pair of closely spaced transmembrane (TM) helices that are c...
It has been shown previously that some membrane proteins have a conserved core of amino acid residue...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractThe topology of hydrophobic intramembrane proteins is characterized by a statistical asymmet...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
Transmembrane domain orientation within some membrane proteins is dependent on membrane lipid compos...
AbstractIn integral membrane proteins, regions that span the lipid bilayer alternate with regions th...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
The functions of transmembrane proteins in living cells are widespread; they range from various tran...
Abstract Background Transmembrane helices (TMHs) frequently occur amongst protein architectures as m...
The net charge per TMH plotted at each position; the positive-inside rule is stronger in TMHs from s...
ABSTRACT One of the central paradigms of structural biology is that membrane proteins are ‘‘inside-o...
Recent advances in determination of the high-resolution structure of membrane proteins now enable an...
Membrane proteins fulfil a number of tasks in cells, including signalling, cell-cell interaction, an...
alpha-Helical hairpins, consisting of a pair of closely spaced transmembrane (TM) helices that are c...
It has been shown previously that some membrane proteins have a conserved core of amino acid residue...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
-helices are amongst the most common secondary structural elements seen in membrane proteins and are...
AbstractThe topology of hydrophobic intramembrane proteins is characterized by a statistical asymmet...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
Transmembrane domain orientation within some membrane proteins is dependent on membrane lipid compos...
AbstractIn integral membrane proteins, regions that span the lipid bilayer alternate with regions th...
α-helices are amongst the most common secondary structural elements seen in membrane proteins and ar...
The functions of transmembrane proteins in living cells are widespread; they range from various tran...