SummaryWe identify a structural feature of transmembrane helical proteins that restricts their conformational space and suggests a new way of understanding the construction and stability of their native states. We show that five kinds of well-known specific favorable interhelical interactions (hydrogen bonds, aromatic interactions, salt bridges, and two interactions from packing motifs) precisely determine the packing of the transmembrane helices in 15 diverse proteins. To show this, we iteratively reassemble the helix bundle of each protein using only these interactions, generic interaction geometries, and individual helix backbone conformations. On average, the representative set of rebuilt structures best satisfying the constraints impos...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
AbstractThe recent structural elucidation of about one dozen channels (in which we include transport...
Membrane protein structure and function is critically dependent on the surrounding environment. Cons...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
AbstractProtein environments substantially influence the balance of molecular interactions that gene...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
Item does not contain fulltextA comparison is made between the distribution of residue preferences, ...
AbstractA total of 160 transmembrane helices of 15 non-homologous high-resolution X-ray protein stru...
SummaryThe environment and unique balance of molecular forces within lipid bilayers has a profound i...
AbstractWe present what we believe to be a novel statistical contact potential based on solved struc...
Pairs of helices in transmembrane (TM) proteins are often tightly packed. We present a scoring funct...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
AbstractThe recent structural elucidation of about one dozen channels (in which we include transport...
Membrane protein structure and function is critically dependent on the surrounding environment. Cons...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
AbstractFolding of polytopic transmembrane proteins involves interactions of individual transmembran...
AbstractProtein environments substantially influence the balance of molecular interactions that gene...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
A comparison is made between the distribution of residue preferences, three dimensional nearest neig...
Item does not contain fulltextA comparison is made between the distribution of residue preferences, ...
AbstractA total of 160 transmembrane helices of 15 non-homologous high-resolution X-ray protein stru...
SummaryThe environment and unique balance of molecular forces within lipid bilayers has a profound i...
AbstractWe present what we believe to be a novel statistical contact potential based on solved struc...
Pairs of helices in transmembrane (TM) proteins are often tightly packed. We present a scoring funct...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
AbstractThe recent structural elucidation of about one dozen channels (in which we include transport...
Membrane protein structure and function is critically dependent on the surrounding environment. Cons...