Dynamics of apomyoglobin in the α-to-β transition and of partially unfolded aggregated protein
pmid: 18853152
Dynamics of apomyoglobin in the α-to-β transition and of partially unfolded aggregated protein
Changes of molecular dynamics in the alpha-to-beta transition associated with amyloid fibril formation were explored on apomyoglobin (ApoMb) as a model system. Circular dichroism, neutron and X-ray scattering experiments were performed as a function of temperature on the protein, at different solvent conditions. A significant change in molecular dynamics was observed at the alpha-to-beta transition at about 55 degrees C, indicating a more resilient high temperature beta structure phase. A similar effect at approximately the same temperature was observed in holo-myoglobin, associated with partial unfolding and protein aggregation. A study in a wide temperature range between 20 and 360 K revealed that a dynamical transition at about 200 K for motions in the 50 ps time scale exists also for a hydrated powder of heat-denatured aggregated ApoMb.
- Grenoble Alpes University France
- Gunma University Japan
- Institut Laue-Langevin France
- Institut de Biologie Structurale France
- University of Wollongong Australia
Models, Molecular, Protein Folding, Cognitive Neuroscience, Biophysics, Amyloid former, Protein dynamics, Neutron, 612, Circular dichroism, Social and Behavioral Sciences, Crystallography, X-Ray, Atomic, Physical Chemistry, Structural Biology, Physical Sciences and Mathematics, Nuclear, Molecular Biology, Biological and Chemical Physics, Myoglobin, Circular Dichroism, Temperature, Life Sciences, Molecular and Optical Physics, Disease Modeling, Amyloidosis, Protein Structure, Tertiary, Neutron Diffraction, Pharmaceutical Solutions, Thermodynamics, Protein Multimerization, Apoproteins
Models, Molecular, Protein Folding, Cognitive Neuroscience, Biophysics, Amyloid former, Protein dynamics, Neutron, 612, Circular dichroism, Social and Behavioral Sciences, Crystallography, X-Ray, Atomic, Physical Chemistry, Structural Biology, Physical Sciences and Mathematics, Nuclear, Molecular Biology, Biological and Chemical Physics, Myoglobin, Circular Dichroism, Temperature, Life Sciences, Molecular and Optical Physics, Disease Modeling, Amyloidosis, Protein Structure, Tertiary, Neutron Diffraction, Pharmaceutical Solutions, Thermodynamics, Protein Multimerization, Apoproteins
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