TY - JOUR
T1 - Diffusion NMR spectroscopy
T2 - Folding and aggregation of domains in p53
AU - Dehner, Alexander
AU - Kessler, Horst
PY - 2005/9
Y1 - 2005/9
N2 - Protein interactions and aggregation phenomena are probably amongst the most ubiquitous types of interactions in biological systems; they play a key role in many cellular processes. The ability to identify weak intermolecular interactions is a unique feature of NMR spectroscopy. In recent years, pulsed-field gradient NMR spectroscopy has become a convenient method to study molecular diffusion in solution. Since the diffusion coefficient of a certain molecule under given conditions correlates with its effective molecular weight, size, and shape, it is evident that diffusion can be used to map intermolecular interactions or aggregation events. Complex models can be derived from comparison of experimental diffusion data with those predicted by hydrodynamic simulations. In this review, we will give an introduction to pulsed-field gradient NMR spectroscopy and the hydrodynamic properties of proteins and peptides. Furthermore, we show examples for applying these techniques to a helical peptide and its hydrophobic oligomerization, as well as to the dimerization behavior and folding of p53.
AB - Protein interactions and aggregation phenomena are probably amongst the most ubiquitous types of interactions in biological systems; they play a key role in many cellular processes. The ability to identify weak intermolecular interactions is a unique feature of NMR spectroscopy. In recent years, pulsed-field gradient NMR spectroscopy has become a convenient method to study molecular diffusion in solution. Since the diffusion coefficient of a certain molecule under given conditions correlates with its effective molecular weight, size, and shape, it is evident that diffusion can be used to map intermolecular interactions or aggregation events. Complex models can be derived from comparison of experimental diffusion data with those predicted by hydrodynamic simulations. In this review, we will give an introduction to pulsed-field gradient NMR spectroscopy and the hydrodynamic properties of proteins and peptides. Furthermore, we show examples for applying these techniques to a helical peptide and its hydrophobic oligomerization, as well as to the dimerization behavior and folding of p53.
KW - Diffusion
KW - Molecular interactions
KW - NMR spectroscopy
KW - Peptides
KW - Proteins
UR - http://www.scopus.com/inward/record.url?scp=24744440425&partnerID=8YFLogxK
U2 - 10.1002/cbic.200500093
DO - 10.1002/cbic.200500093
M3 - Review article
C2 - 16138303
AN - SCOPUS:24744440425
SN - 1439-4227
VL - 6
SP - 1550
EP - 1565
JO - ChemBioChem
JF - ChemBioChem
IS - 9
ER -