Kl. Constantine et al., RELAXATION STUDY OF THE BACKBONE DYNAMICS OF HUMAN PROFILIN BY 2-DIMENSIONAL H-1-N-15 NMR, FEBS letters, 336(3), 1993, pp. 457-461
The dynamic properties of 111 backbone HN sites in uncomplexed human p
rofilin, a protein of 139 residues, have been characterized by two-dim
ensional inverse-detected H-1-N-15 NMR spectroscopy. Heteronuclear {H-
1}-N-15 nuclear Overhauser effects and N-15 longitudinal and transvers
e relaxation rates have been analyzed in terms of model-free spectral
density functions and exchange contributions to transverse relaxation
rates. Relatively high mobilities on the nanosecond timescale are obse
rved for Asp(26) and Ser(27), which form part of a loop connecting bet
a-strands A and B, and for Thr(92) through Ala(95), which are in a loo
p connecting beta-strands E and F. Significant exchange contributions,
indicative of motions on the microsecond to millisecond timescale, ha
ve been obtained for 30 residues. These include Leu(77), Asp(80) and G
ly(81) of a loop between beta-strands D and E, Ser(84) and Met(85) of
beta-strand E, Gly(121) of a loop connecting beta-strand G and the C-t
erminal helix, and Gln(138), which is next to the C-terminal residue T
yr(139). Some of the regions showing high flexibility in profilin are
known to be involved in poly-L-proline binding.