Small-angle X-ray scattering (SAXS) and elastic and quasi-elastic neutron scattering techniques were used to investigate the high-pressure-induced changes on interactions, the low-resolution structure and the dynamics of lysozyme in solution. SAXS data, analysed using a global-fit procedure based on a new approach for hydrated protein form factor description, indicate that lysozyme completely maintains its globular structure up to 1500 bar, but significant modi. cations in the protein-protein interaction potential occur at approximately 600-1000 bar. Moreover, the mass density of the protein hydration water shows a clear discontinuity within this pressure range. Neutron scattering experiments indicate that the global and the local lysozyme ...
Combining small-angle X-ray and neutron scattering measurements with inelastic neutron scattering ex...
This review article describes our neutron scattering experiments made in the past four years for the...
AbstractWe performed an elastic neutron scattering investigation of the molecular dynamics of lysozy...
Small-angle X-ray scattering (SAXS) and elastic and quasi-elastic neutron scattering techniques were...
Small-angle X-ray scattering (SAXS) and elastic and quasi-elastic neutron scattering techniques wer...
International audienceThe influence of high hydrostatic pressure on the internal sub-nanosecond dyna...
International audienceWe performed complementary inelastic neutron scattering (INS) experiments and ...
The “rules ” governing protein structure and stability are still poorly understood. Important clues ...
The motivation of the study presented here is to investigate how hydrostatic pressure influences the...
We report here the results of elastic incoherent neutron scattering experiments on three globular pr...
We present here a study of the dynamics of two monomeric proteins, trypsin and lysozyme, by means of...
International audienceThis paper presents a study of the influence of non-denaturing hydrostatic pre...
AbstractUnderstanding the intermolecular interaction potential, V(r), of proteins under the influenc...
Combining small-angle X-ray and neutron scattering measurements with inelastic neutron scattering ex...
This review article describes our neutron scattering experiments made in the past four years for the...
AbstractWe performed an elastic neutron scattering investigation of the molecular dynamics of lysozy...
Small-angle X-ray scattering (SAXS) and elastic and quasi-elastic neutron scattering techniques were...
Small-angle X-ray scattering (SAXS) and elastic and quasi-elastic neutron scattering techniques wer...
International audienceThe influence of high hydrostatic pressure on the internal sub-nanosecond dyna...
International audienceWe performed complementary inelastic neutron scattering (INS) experiments and ...
The “rules ” governing protein structure and stability are still poorly understood. Important clues ...
The motivation of the study presented here is to investigate how hydrostatic pressure influences the...
We report here the results of elastic incoherent neutron scattering experiments on three globular pr...
We present here a study of the dynamics of two monomeric proteins, trypsin and lysozyme, by means of...
International audienceThis paper presents a study of the influence of non-denaturing hydrostatic pre...
AbstractUnderstanding the intermolecular interaction potential, V(r), of proteins under the influenc...
Combining small-angle X-ray and neutron scattering measurements with inelastic neutron scattering ex...
This review article describes our neutron scattering experiments made in the past four years for the...
AbstractWe performed an elastic neutron scattering investigation of the molecular dynamics of lysozy...