Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling, mediated by protein-protein interactions. Disordered protein regions, and short conserved motifs within them, are emerging as key determinants of many such interactions. Here, we investigated whether disorder and conserved motifs are enriched in the juxtamembrane area of human single-pass transmembrane proteins. Conserved motifs were defined as short disordered regions that were much more conserved than the adjacent disordered residues. Human single-pass proteins had higher mean disorder in their cytoplasmic segments than their extracellular parts. Some, but not all, of this effect reflected the shorter length of the cytoplasmic tail. A peak...
Disordered domains are long regions of intrinsic disorder that ideally have conserved sequences, con...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
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,...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
The functions of transmembrane proteins in living cells are widespread; they range from various tran...
AbstractThe functions of transmembrane proteins in living cells are widespread; they range from vari...
Background Protein interactions are essential for most cellular functions. Interactions mediated by...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
Submitted to the faculty of the Bioinformatics Graduate Program in partial fulfillment of the requi...
<p>Why the intrinsically disordered regions evolve within human proteome has became an interesting q...
Abstract Background Intrinsically disordered regions ...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
The consecutive disordered regions (CDRs) are the basis for the formation of intrinsically disordere...
Disordered domains are long regions of intrinsic disorder that ideally have conserved sequences, con...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
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,...
Intracellular juxtamembrane regions of transmembrane proteins play pivotal roles in cell signalling,...
The functions of transmembrane proteins in living cells are widespread; they range from various tran...
AbstractThe functions of transmembrane proteins in living cells are widespread; they range from vari...
Background Protein interactions are essential for most cellular functions. Interactions mediated by...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...
Submitted to the faculty of the Bioinformatics Graduate Program in partial fulfillment of the requi...
<p>Why the intrinsically disordered regions evolve within human proteome has became an interesting q...
Abstract Background Intrinsically disordered regions ...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
The consecutive disordered regions (CDRs) are the basis for the formation of intrinsically disordere...
Disordered domains are long regions of intrinsic disorder that ideally have conserved sequences, con...
For proteins, the sequence → structure → function paradigm applies primarily to enzymes, transmembra...
Intrinsically disordered regions (IDRs) are peculiar stretches of amino acids that lack stable confo...