J. Engelke et H. Ruterjans, DYNAMICS OF BETA-CH AND BETA-CH2 GROUPS OF AMINO-ACID SIDE-CHAINS IN PROTEINS, Journal of biomolecular NMR, 11(2), 1998, pp. 165-183
The dynamics of amino acid side chains of uniformly C-13/N-15-enriched
ribonuclease T1 (RNase T1) have been investigated. Heteronuclear long
itudinal relaxation rates, H-1/C-13 NOEs, and transverse cross-correla
ted cross-relaxation rates between the S-x and the (SxIzIz2)-I-1 opera
tors (SIIS cross relaxation) [Ernst and Ernst (1993) J. Magn. Reson.,
A110, 202-213] have been determined in this study. New pulse sequences
for measuring the longitudinal relaxation time and the heteronuclear
NOE of aliphatic side chain carbon nuclei were developed using the CCO
NH type of magnetization transfer and H-1(N) detection. In addition, a
n improved pulse sequence for the determination of the SIIS cross rela
xation is presented. For the analysis of the relaxation rates, the mod
el of restricted rotational diffusion around the chi(1) dihedral angle
has been applied [London and Avitabile (1978) J. Am. Chern. Sec., 100
, 7159-7165]. These techniques were used in order to describe the side
chain dynamics of the small globular protein RNase T1 (104 amino acid
s, MW about 11 kDa). Qualitative values of microdynamical parameters w
ere obtained for 73 out of 85 amino acid side chains (glycine and alan
ine residues excepted) whereas more quantitative values were derived f
or 67 beta-CH and beta-CH2 groups.