The functions of transmembrane proteins in living cells are widespread; they range from various transport processes to energy production, from cell-cell adhesion to communication. Structurally, they are highly ordered in their membrane-spanning regions, but may contain disordered regions in the cytosolic and extra-cytosolic parts. In this study, we have investigated the disordered regions in transmembrane proteins by a stringent definition of disordered residues on the currently available largest experimental dataset, and show a significant correlation between the spatial distributions of positively charged residues and disordered regions. This finding suggests a new role of disordered regions in transmembrane proteins by providing structur...
AbstractIntrinsically disordered regions in proteins possess important biological roles including tr...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
<p>(A) Organization of the different protein dataset depending on the transmembrane protein classes ...
AbstractThe functions of transmembrane proteins in living cells are widespread; they range from vari...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
<div><p>Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell sig...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
The intrinsically disordered proteins and protein regions (IDPs/IDPRs) do not have unique structures...
Transmembrane proteins (TMPs) play important roles in cells, ranging from transport processes and ce...
AbstractA great challenge in the proteomics and structural genomics era is to predict protein struct...
Protein and lipid membrane interactions play fundamental roles in a large number of cellular process...
AbstractA reliable and widely used transmembrane protein structure prediction algorithm was applied ...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
AbstractIntrinsically disordered regions in proteins possess important biological roles including tr...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
<p>(A) Organization of the different protein dataset depending on the transmembrane protein classes ...
AbstractThe functions of transmembrane proteins in living cells are widespread; they range from vari...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
<div><p>Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell sig...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
The intrinsically disordered proteins and protein regions (IDPs/IDPRs) do not have unique structures...
Transmembrane proteins (TMPs) play important roles in cells, ranging from transport processes and ce...
AbstractA great challenge in the proteomics and structural genomics era is to predict protein struct...
Protein and lipid membrane interactions play fundamental roles in a large number of cellular process...
AbstractA reliable and widely used transmembrane protein structure prediction algorithm was applied ...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
AbstractIntrinsically disordered regions in proteins possess important biological roles including tr...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
<p>(A) Organization of the different protein dataset depending on the transmembrane protein classes ...