Molecular dynamics are essential for protein function. In some cases these dynamics involve the interconversion between ground state, highly populated conformers and less populated higher energy structures ('excited states') that play critical roles in biochemical processes. Here we describe recent advances in NMR spectroscopy methods that enable studies of these otherwise invisible excited states at an atomic level and that help elucidate their important relation to function. We discuss a range of examples from molecular recognition, ligand binding, enzyme catalysis and protein folding that illustrate the role that motion plays in 'funneling' conformers along preferred pathways that facilitate their biological function
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceThe function of bio-macromolecules is determined by both their 3D structure an...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...
Proteins are dynamic molecules that often undergo conformational changes while performing their spec...
International audienceOverwhelming evidence now illustrates the defining role of atomic-scale protei...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
In recent years, a dynamic view of the structure and function of biological macromolecules is emergi...
Deciphering the mechanism of protein folding is one of the most desirable goals in the field of stru...
Deciphering the mechanism of protein folding is one of the most desirable goals in the field of stru...
International audienceAdvances in characterizing complexes of intrinsically disordered proteins (IDP...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
A strength of NMR spectroscopy is its ability to monitor, on an atomic level, molecular changes and ...
International audienceAdvances in characterizing complexes of intrinsically disordered proteins (IDP...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceThe function of bio-macromolecules is determined by both their 3D structure an...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...
Proteins are dynamic molecules that often undergo conformational changes while performing their spec...
International audienceOverwhelming evidence now illustrates the defining role of atomic-scale protei...
Protein-ligand binding is a puzzling process. Many theories have been devised since the pioneering k...
In recent years, a dynamic view of the structure and function of biological macromolecules is emergi...
Deciphering the mechanism of protein folding is one of the most desirable goals in the field of stru...
Deciphering the mechanism of protein folding is one of the most desirable goals in the field of stru...
International audienceAdvances in characterizing complexes of intrinsically disordered proteins (IDP...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
A strength of NMR spectroscopy is its ability to monitor, on an atomic level, molecular changes and ...
International audienceAdvances in characterizing complexes of intrinsically disordered proteins (IDP...
International audienceIntrinsically disordered proteins are ubiquitous throughout all known proteome...
International audienceThe function of bio-macromolecules is determined by both their 3D structure an...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...