Recent developments, including those from the applicant laboratory, have opened new opportunities for investigation of dynamic processes on mu s-ms time scales using NMR spin relaxation measurements. Motions on these time scales reflect large-amplitude loop motions, relative motions between domains, collective """"""""breathing"""""""" of protein cores, ligand-binding or oligomerization reactions, and overall folding-unfolding events. Such processes may be closely coupled, and in some instances rate-limiting, to biological functions such as molecular recognition, transitions along the catalytic cycle of enzymes, and inhibition or activation of proteins through intra-or inter-molecular protein-protein interactions. Mutations that perturb dynamical processes and conformational equilibria can be associated with significant pathology, including loss or gain of function and misfolding. The existence of large amplitude intra-molecular conformational changes in proteins have been inferred from comparison of equilibrium structures of a given protein in different crystal forms, a given protein in free and ligand-bound states, or sets of homologous proteins. However, only solution NMR spectroscopy can confirm the occurrence and determine the kinetic rates in the solution state of dynamic processes, at equilibrium and with atomic site resolution, in the absence of influences from intermolecular interactions in the solid state, and without potential complications introduced by non-native modifications necessary for other solution-state spectroscopic techniques. The proposed research has four primary objectives: (1) elucidation of the folding mechanism and description of the unfolded-state ensemble for the villin headpiece domain HP67; (2) identification of the mechanistic basis for coupling between agonist or antagonist binding and function of the ionotropic glutamate receptor GluR2 S1S2 ligand-binding domain; (3) assessment of the role of conformational mobility in catalysis by ornithine decarboxylase; and (4) development of novel experimental and theoretical methods for characterizing protein dynamics on mu s-ms time scales. Successful completion of these goals will enable applications to a wide range of protein systems of biological interest. Time-dependent structural changes underlie the normal function of proteins, and misfunction in genetic diseases, cancer, and other pathologies. The proposed research will measure these changes for three model protein systems involved in cellular structure, nerve transmission, and basic metabolism.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM059273-10
Application #
7410120
Study Section
Special Emphasis Panel (ZRG1-BCMB-B (02))
Program Officer
Wehrle, Janna P
Project Start
1999-05-01
Project End
2010-04-30
Budget Start
2008-05-01
Budget End
2009-04-30
Support Year
10
Fiscal Year
2008
Total Cost
$319,679
Indirect Cost
Name
Columbia University (N.Y.)
Department
Biochemistry
Type
Schools of Medicine
DUNS #
621889815
City
New York
State
NY
Country
United States
Zip Code
10032
Hsu, Andrew; O'Brien, Paul A; Bhattacharya, Shibani et al. (2018) Enhanced spectral density mapping through combined multiple-field deuterium 13CH2D methyl spin relaxation NMR spectroscopy. Methods 138-139:76-84
Koss, Hans; Rance, Mark; Palmer 3rd, Arthur G (2018) General Expressions for Carr-Purcell-Meiboom-Gill Relaxation Dispersion for N-Site Chemical Exchange. Biochemistry 57:4753-4763
Koss, Hans; Rance, Mark; Palmer 3rd, Arthur G (2017) General expressions for R1? relaxation for N-site chemical exchange and the special case of linear chains. J Magn Reson 274:36-45
Palmer 3rd, Arthur G (2016) A dynamic look backward and forward. J Magn Reson 266:73-80
Gill, Michelle L; Palmer 3rd, Arthur G (2015) Correction to ""Local isotropic diffusion approximation for coupled internal and overall molecular motions in NMR spin relaxation"". J Phys Chem B 119:3333
Palmer 3rd, Arthur G (2015) Enzyme dynamics from NMR spectroscopy. Acc Chem Res 48:457-65
Li, Ying; Rance, Mark; Palmer 3rd, Arthur G (2014) Rotation operator propagators for time-varying radiofrequency pulses in NMR spectroscopy: applications to shaped pulses and pulse trains. J Magn Reson 248:105-14
Gill, Michelle L; Palmer 3rd, Arthur G (2014) Local isotropic diffusion approximation for coupled internal and overall molecular motions in NMR spin relaxation. J Phys Chem B 118:11120-8
Sher, Inbal; Chang, Shih Chieh; Li, Ying et al. (2014) Conformational flexibility in the binding surface of the potassium channel blocker ShK. Chembiochem 15:2402-10
Palmer 3rd, Arthur G (2014) Chemical exchange in biomacromolecules: past, present, and future. J Magn Reson 241:3-17

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