Proteins from hyperthermophilic organisms are evolutionary optimised to adopt functional structures and dynamics under conditions in which their mesophilic homologues are generally inactive or unfolded. Understanding the nature of such adaptation is of crucial interest to clarify the underlying mechanisms of biological activity in proteins. Here we measured NMR residual dipolar couplings of a hyperthermophilic acylphosphatase enzyme at 80°C and used these data to generate an accurate structural ensemble representative of its native state. The resulting energy landscape was compared to that obtained for a human homologue at 37°C, and additional NMR experiments were carried out to probe fast (15N relaxation) and slow (H/D exchange) backbone d...
The way in which the network of intramolecular interactions determines the cooperative folding and c...
Uncovering the role of global protein dynamics in enzyme turnover is needed to fully understand enzy...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...
Proteins from hyperthermophilic organisms are evolutionary optimised to adopt functional structures ...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
Molecular dynamics simulations were employed to study how protein solution structure and dynamics ar...
Structural changes are critical to the ability of proteins, particularly enzymes, to carry out their...
Thermophilic enzymes adapted to perform catalysis at elevated temperatures are often sluggish enzym...
<div><p>The relationship between inherent internal conformational processes and enzymatic activity o...
The millisecond time scale motions in ribonuclease A (RNase A) were studied by solution NMR CPMG and...
One of the fundamental challenges of physical biology is to understand the relationship between prot...
International audienceComparing homologous enzymes adapted to different thermal environments aids to...
International audienceOne of the fundamental challenges of physical biology is to understand the rel...
ABSTRACT: We used 19F NMR to extend the temperature range accessible to detailed kinetic and equilib...
International audienceOverwhelming evidence now illustrates the defining role of atomic-scale protei...
The way in which the network of intramolecular interactions determines the cooperative folding and c...
Uncovering the role of global protein dynamics in enzyme turnover is needed to fully understand enzy...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...
Proteins from hyperthermophilic organisms are evolutionary optimised to adopt functional structures ...
Protein function relies upon a fine balance between stability and flexibility. To examine this balan...
Molecular dynamics simulations were employed to study how protein solution structure and dynamics ar...
Structural changes are critical to the ability of proteins, particularly enzymes, to carry out their...
Thermophilic enzymes adapted to perform catalysis at elevated temperatures are often sluggish enzym...
<div><p>The relationship between inherent internal conformational processes and enzymatic activity o...
The millisecond time scale motions in ribonuclease A (RNase A) were studied by solution NMR CPMG and...
One of the fundamental challenges of physical biology is to understand the relationship between prot...
International audienceComparing homologous enzymes adapted to different thermal environments aids to...
International audienceOne of the fundamental challenges of physical biology is to understand the rel...
ABSTRACT: We used 19F NMR to extend the temperature range accessible to detailed kinetic and equilib...
International audienceOverwhelming evidence now illustrates the defining role of atomic-scale protei...
The way in which the network of intramolecular interactions determines the cooperative folding and c...
Uncovering the role of global protein dynamics in enzyme turnover is needed to fully understand enzy...
Among the tools of structural biology, NMR spectroscopy is unique in that it not only derives a stat...