NMR represents a key spectroscopic technique that contributes to the emerging field of highly flexible, intrinsically disordered proteins (IDPs) or protein regions (IDRs) that lack a stable three-dimensional structure. A set of exclusively heteronuclear NMR experiments tailored for proline residues, highly abundant in IDPs/IDRs, are presented here. They provide a valuable complement to the widely used approach based on amide proton detection, filling the gap introduced by the lack of amide protons in proline residues within polypeptide chains. The novel experiments have very interesting properties for the investigations of IDPs/IDRs of increasing complexity.</p
International audienceOver the last two decades, it has become increasingly clear that a large fract...
In the realm of proteins, it is widely accepted that structure informs function. However, there are ...
Intrinsically disordered regions are predicted to exist in a significant fraction of proteins encode...
International audienceThe characterization of the conformational properties of intrinsically disorde...
Recent advances in NMR methodology and techniques allow the structural investigation of biomolecules...
Intrinsically disordered proteins (IDPs) have recently attracted the attention of the scientific com...
Intrinsically disordered proteins (IDPs) that lack stable conformations and are highly flexible hav...
It is important to identify proline cis/trans isomers that appear in several regulatory mechanisms o...
Abstract In recent years, IDPs (intrinsically disordered proteins) have emerged as pivotal actors in...
International audienceIn this review, we detail the most common experimental approaches to assess an...
Proline is prevalent in intrinsically disordered proteins (IDPs). NMR assignment of proline-rich IDP...
International audienceThe realization that a protein can be fully functional even in the absence of ...
International audienceIn line with their high accessibility, disordered proteins are exquisite targe...
International audienceThere is growing interest in the development of physical methods to study the ...
NMR spectroscopy is by far the most versatile and information rich technique to study intrinsically ...
International audienceOver the last two decades, it has become increasingly clear that a large fract...
In the realm of proteins, it is widely accepted that structure informs function. However, there are ...
Intrinsically disordered regions are predicted to exist in a significant fraction of proteins encode...
International audienceThe characterization of the conformational properties of intrinsically disorde...
Recent advances in NMR methodology and techniques allow the structural investigation of biomolecules...
Intrinsically disordered proteins (IDPs) have recently attracted the attention of the scientific com...
Intrinsically disordered proteins (IDPs) that lack stable conformations and are highly flexible hav...
It is important to identify proline cis/trans isomers that appear in several regulatory mechanisms o...
Abstract In recent years, IDPs (intrinsically disordered proteins) have emerged as pivotal actors in...
International audienceIn this review, we detail the most common experimental approaches to assess an...
Proline is prevalent in intrinsically disordered proteins (IDPs). NMR assignment of proline-rich IDP...
International audienceThe realization that a protein can be fully functional even in the absence of ...
International audienceIn line with their high accessibility, disordered proteins are exquisite targe...
International audienceThere is growing interest in the development of physical methods to study the ...
NMR spectroscopy is by far the most versatile and information rich technique to study intrinsically ...
International audienceOver the last two decades, it has become increasingly clear that a large fract...
In the realm of proteins, it is widely accepted that structure informs function. However, there are ...
Intrinsically disordered regions are predicted to exist in a significant fraction of proteins encode...