Intrinsic disorder is more abundant in eukaryotic than prokaryotic proteins. Methods predicting intrinsic disorder are based on the amino acid sequence of a protein. Therefore, there must exist an underlying difference in the sequences between eukaryotic and prokaryotic proteins causing the (predicted) difference in intrinsic disorder. By comparing proteins, from complete eukaryotic and prokaryotic proteomes, we show that the difference in intrinsic disorder emerges from the linker regions connecting Pfam domains. Eukaryotic proteins have more extended linker regions, and in addition, the eukaryotic linkers are significantly more disordered, 38% vs. 12-16% disordered residues. Next, we examined the underlying reason for the increase in diso...
Intrinsically disordered proteins and protein regions lack a stable three-dimensional structure unde...
Recent proteome-wide screening approaches have provided a wealth of information about interacting pr...
Intrinsically disordered proteins are characterized by unusual sequence composition, structural flex...
<div><p>Intrinsically disordered proteins and intrinsically disordered protein regions are highly ab...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
<p>Why the intrinsically disordered regions evolve within human proteome has became an interesting q...
Based on early bioinformatic studies on a handful of species, the frequency of structural disorder o...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Intrinsically disordered proteins (IDPs) and intrinsically disordered protein regions (IDPRs) exist ...
Intrinsically disordered proteins (IDPs) and intrinsically disordered protein regions (IDPRs) exist ...
Abstract Background Intrinsically disordered regions ...
Abstract Background Intrinsically disordered regions ...
Intrinsically disordered proteins and protein regions lack a stable three-dimensional structure unde...
Recent proteome-wide screening approaches have provided a wealth of information about interacting pr...
Intrinsically disordered proteins are characterized by unusual sequence composition, structural flex...
<div><p>Intrinsically disordered proteins and intrinsically disordered protein regions are highly ab...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
Disordered regions play important roles in protein adaptation to challenging environmental condition...
<p>Why the intrinsically disordered regions evolve within human proteome has became an interesting q...
Based on early bioinformatic studies on a handful of species, the frequency of structural disorder o...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Proteins evolve through point mutations as well as by insertions and deletions (indels). During the ...
Intrinsically disordered proteins (IDPs) and intrinsically disordered protein regions (IDPRs) exist ...
Intrinsically disordered proteins (IDPs) and intrinsically disordered protein regions (IDPRs) exist ...
Abstract Background Intrinsically disordered regions ...
Abstract Background Intrinsically disordered regions ...
Intrinsically disordered proteins and protein regions lack a stable three-dimensional structure unde...
Recent proteome-wide screening approaches have provided a wealth of information about interacting pr...
Intrinsically disordered proteins are characterized by unusual sequence composition, structural flex...