This research project involves the continued development (now entering its 5th decade) of basic methods and theory for advancing the use of NMR techniques in relevant biomedical areas for detecting less receptive nuclei with special emphasis placed on 13C and 15N. Earlier work stressed the chemical shift structure correlations of liquid samples and more recently these concepts are being developed in the shielding tensor. The 3D aspects of 13C and 15N shielding tensors and their applications to biological systems are well documented in the publications of our laboratory. Further developments of spectroscopic techniques and their correlation with theory continue to be significant aspects of this proposal. Major developments have been made in experimental techniques for determining shielding tensors on either powders or single crystals and their orientation on the molecular frame. Shift tensors, with their three principal values and three angular orientations, provide information on the symmetry and three dimensional structure of molecules not obtainable from isotropic shifts in liquids. Finished tensor work on aromatic systems and sugars is now being extended to relatively large natural products, nitrogen heterocycles, nucleosides, nucleotides, peptides and their related polymeric oligomers. Capabilities now exist to index and thoroughly analyze powdered samples containing dozens of non-equivalent carbons. Furthermore, theoretical methods have improved to the point where it is possible to discuss structural effects on 13C chemical shift changes under 2.5 ppm for neutral molecules with limited charge polarization present. Recent advances in the Utah NMR laboratory on Ewald potentials reveals a very promising way to treat long range charge polarization mechanisms that can also affect chemical shift components by as much as 50 ppm. This charge polarization mechanism is strongly perturbed by electrostatic fields characterized by long range electrostatic forces that give rise to shift perturbations in highly polar molecules. Calculating fields from interactions of monopolar arrays has long been known to require lattice sums that converge very slowly over long distances. New approaches to this problem are proposed in this renewal. Hence, the work at the Utah laboratory will continue to develop experimental and theoretical methods to be employed in the study of shift tensors in peptides, protein conformational analysis, correlations between biochemical structure and shift tensor data in biological complexes, natural products, and hydrogen bonded interactions.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
5R01GM008521-44
Application #
7087658
Study Section
Biophysical Chemistry Study Section (BBCB)
Program Officer
Wehrle, Janna P
Project Start
1978-06-01
Project End
2008-03-31
Budget Start
2006-07-01
Budget End
2008-03-31
Support Year
44
Fiscal Year
2006
Total Cost
$248,800
Indirect Cost
Name
University of Utah
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
009095365
City
Salt Lake City
State
UT
Country
United States
Zip Code
84112
Halling, Merrill D; Orendt, Anita M; Strohmeier, Mark et al. (2010) Solid-state 13C NMR investigations of 4,7-dihydro-1H-tricyclopenta[def,jkl,pqr]triphenylene (sumanene) and indeno[1,2,3-cd]fluoranthene: Buckminsterfullerene moieties. Phys Chem Chem Phys 12:7934-41
Harper, James K; Doebbler, Jennifer A; Jacques, Elisabeth et al. (2010) A combined solid-state NMR and synchrotron X-ray diffraction powder study on the structure of the antioxidant (+)-catechin 4.5-hydrate. J Am Chem Soc 132:2928-37
Halling, Merrill D; Bell, Joshua D; Pugmire, Ronald J et al. (2010) Solid-State NMR spectra and long, intra-dimer bonding in the pi-[TTF](2)(2+) (TTF = tetrathiafulvalene) dication. J Phys Chem A 114:6622-9
Iuliucci, Robbie; Hoop, Cody L; Arif, Atta M et al. (2009) Redetermination of 1,4-dimethoxy-benzene. Acta Crystallogr Sect E Struct Rep Online 65:o251
Hoffman, Angela M; Mayer, Steven G; Strobel, Gary A et al. (2008) Purification, identification and activity of phomodione, a furandione from an endophytic Phoma species. Phytochemistry 69:1049-56
Heider, Elizabeth M; Harper, James K; Grant, David M (2007) Structural characterization of an anhydrous polymorph of paclitaxel by solid-state NMR. Phys Chem Chem Phys 9:6083-97
Ma, Zhiru; Halling, Merrill D; Solum, Mark S et al. (2007) Ring current effects in crystals. Evidence from 13C chemical shift tensors for intermolecular shielding in 4,7-di-t-butylacenaphthene versus 4,7-di-t-butylacenaphthylene. J Phys Chem A 111:2020-7
Harper, James K; Strohmeier, Mark; Grant, David M (2007) Pursuing structure in microcrystalline solids with independent molecules in the unit cell using 1H-13C correlation data. J Magn Reson 189:20-31
Harper, James K; Grant, David M; Zhang, Yuegang et al. (2006) Characterizing challenging microcrystalline solids with solid-state NMR shift tensor and synchrotron X-ray powder diffraction data: structural analysis of ambuic acid. J Am Chem Soc 128:1547-52
Li, D; Owen, N L; Perera, P et al. (1994) Structure elucidation of three triterpenoid saponins from Alphitonia zizyphoides using 2D NMR techniques. J Nat Prod 57:218-24

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