AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affect the structural organization of the thereby connected helices and the helical bundles as a whole. This effect, which has been largely ignored previously, is studied here by analyzing the x-ray structures of 41 α-helical membrane proteins. First we define the loop flexibility ratio, R, and find that 53% of the loops are stretched, where a stretched loop constrains the distance between the two connected helices. The significance of this constraining effect is supported by experiments carried out with bacteriorhodopsin and rhodopsin, in which cutting or eliminating their (predominately stretched) loops has led to a decrease in protein stability...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
AbstractThe recent structural elucidation of about one dozen channels (in which we include transport...
AbstractHelix-helix interactions are important for the folding, stability, and function of membrane ...
AbstractProtein environments substantially influence the balance of molecular interactions that gene...
α Helices are a basic unit of protein secondary structure and therefore the interaction between heli...
AbstractA total of 160 transmembrane helices of 15 non-homologous high-resolution X-ray protein stru...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
AbstractThe packing of helices spanning lipid bilayers is crucial for the stability and function of ...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractLoops connecting the transmembrane (TM) α-helices in membrane proteins are expected to affec...
AbstractThis article presents the results of a detailed analysis of helix-helix interactions in memb...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
Summaryα Helices are a basic unit of protein secondary structure and therefore the interaction betwe...
AbstractThe recent structural elucidation of about one dozen channels (in which we include transport...
AbstractHelix-helix interactions are important for the folding, stability, and function of membrane ...
AbstractProtein environments substantially influence the balance of molecular interactions that gene...
α Helices are a basic unit of protein secondary structure and therefore the interaction between heli...
AbstractA total of 160 transmembrane helices of 15 non-homologous high-resolution X-ray protein stru...
SummaryWe identify a structural feature of transmembrane helical proteins that restricts their confo...
AbstractThe packing of helices spanning lipid bilayers is crucial for the stability and function of ...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...
AbstractThe packing structures of transmembrane helices are traditionally attributed to patterns in ...
Transmembrane (TM) helices in integral membrane proteins are primarily alpha-helical in structure. H...