Structural effects of hydration: Studies of lysozyme by 13C solids nmr
β Scribed by Scott D. Kennedy; Robert G. Bryant
- Publisher
- Wiley (John Wiley & Sons)
- Year
- 1990
- Tongue
- English
- Weight
- 482 KB
- Volume
- 29
- Category
- Article
- ISSN
- 0006-3525
No coin nor oath required. For personal study only.
β¦ Synopsis
13C-nmr spectra of lysozyme obtained at 50.3 MHz using both static and magic-anglespinning-cross-polarization methods are reported at several water contents. The line widths and consequent resolution in the hydrated material is substantially improved over that in the lyophilized protein. The line narrowing is not commensurate with loss of a protoncarbon dipole-dipole coupling or dramatic changes in the relaxation parameters characterizing magnetization transfer from protons to carbon in the Hartmann-Hahn crosspolarization experiment. We interpret these data in terms of the water inducing a decrease in the distribution of local conformations sampled by the protein, although the magnitude of the conformational reorientations required to account for the data are not necessarily large nor do they imply a major unfolding of the protein on dehydration.
π SIMILAR VOLUMES
## Abstract ^13^CβNMR spectra of 20 cyanogenic glycosides have been measured in deuterium oxide. These compounds constitute representative examples of four groups of glycosides, namely the butyronitrile, propionitrile, mandelonitrile and cyclopentenoncyanohydrin glycosides. The well resolved signal
## Abstract The correlation between anisotropic ^9^Be NMR (quadrupolar and chemical shielding) interactions and the structure and dynamics in [Cp~2~Be], [${{\rm Cp}{{\ast \hfill \atop 2\hfill}}}$Be], and [(C~5~Me~4~H)~2~Be] is examined by solidβstate ^9^Be NMR spectroscopy, as well as by ab initio