The accuracy of B factors in protein crystal structures has been determined by comparing the same atoms in numerous, independent crystal structures of Gallus gallus lysozyme. Both B-factor absolute differences and normal probability plots indicate that the estimated B-factor errors are quite large, close to 9 Å2 in ambient-temperature structures and to 6 Å2 in low-temperature structures, and surprisingly are comparable to values estimated two decades ago. It is well known that B factors are not due to local movements only but reflect several, additional factors from crystal defects, large-scale disorder, diffraction data quality etc. It therefore remains essential to normalize B factors when comparing different crystal structures, although ...
The temperature factors obtained from X-ray refinement of proteins at high resolution show large var...
Biomolecular X-ray structures typically provide a static, time- and ensemble-averaged view of molecu...
A detailed understanding of protein dynamics remains elusive. Recent comparisons of computer simulat...
BACKGROUND:Protein crystal structures are potentially over-interpreted since they are routinely refi...
Molecular biologists have traditionally interpreted the B-factor data of a protein crystal structure...
Since the contribution of proteins atoms with exceptionally large B-factors, much larger than those ...
Protein molecules exhibit varying degrees of flexibility throughout their three-dimensional structur...
The term B-factor, sometimes called the Debye–Waller factor, temperature factor, or atomic displacem...
The dynamics of protein and nucleic acid structures is as important as their average static picture....
Unite ́ de Conformation de Standard ranges of atomic and residue volumes are computed in 64 highly r...
Correlation coefficients (CCs) between the mean atomic displacement parameters (B values) of the mai...
The factors contributing to the thermal stability of proteins from thermophilic origins are matters ...
Predicting crystallographic B-factors of a protein from a conventional molecular dynamics simulation...
AbstractPredicting crystallographic B-factors of a protein from a conventional molecular dynamics si...
Conformational entropies are of great interest when studying the binding of small ligands to protein...
The temperature factors obtained from X-ray refinement of proteins at high resolution show large var...
Biomolecular X-ray structures typically provide a static, time- and ensemble-averaged view of molecu...
A detailed understanding of protein dynamics remains elusive. Recent comparisons of computer simulat...
BACKGROUND:Protein crystal structures are potentially over-interpreted since they are routinely refi...
Molecular biologists have traditionally interpreted the B-factor data of a protein crystal structure...
Since the contribution of proteins atoms with exceptionally large B-factors, much larger than those ...
Protein molecules exhibit varying degrees of flexibility throughout their three-dimensional structur...
The term B-factor, sometimes called the Debye–Waller factor, temperature factor, or atomic displacem...
The dynamics of protein and nucleic acid structures is as important as their average static picture....
Unite ́ de Conformation de Standard ranges of atomic and residue volumes are computed in 64 highly r...
Correlation coefficients (CCs) between the mean atomic displacement parameters (B values) of the mai...
The factors contributing to the thermal stability of proteins from thermophilic origins are matters ...
Predicting crystallographic B-factors of a protein from a conventional molecular dynamics simulation...
AbstractPredicting crystallographic B-factors of a protein from a conventional molecular dynamics si...
Conformational entropies are of great interest when studying the binding of small ligands to protein...
The temperature factors obtained from X-ray refinement of proteins at high resolution show large var...
Biomolecular X-ray structures typically provide a static, time- and ensemble-averaged view of molecu...
A detailed understanding of protein dynamics remains elusive. Recent comparisons of computer simulat...