The long term objective of this project is to study the stereochemistry and mechanism of biological reactions and interactions involving biophosphates. In the previous two periods 31p NMR Methods have been developed to study the stereochemistry of phosphoryl transfer reactions. Phospholipids labeled with 17O, 18O, or sulfur at the phosphate group have been synthesized and applied to various biochemical problems. This proposal will continue the stereochemical study of phospholipid-related enzymes, and extend the work to biophysical properties of chiral thiophospholipids and their interaction with some enzymes.
Specific aim 1 involves elucidation of the steric courses of the reactions catalyzed by four enzymes: (i) phospholipase C; (ii) choline kinase; (iii) phosphatidylserine synthase; and (iv) phosphatidyl glycerol phosphate synthase.
Specific aim 2 involves synthesis and configuration analysis of chiral thiophosphatidylcholine and chiral thiophosphatidylethanolamine with varying acyl groups, as well as chiral dipalmitoylthiophosphatidylserine and chiral dipalmitoylthiophosphatidylglycerol.
Specific aim 3 involves biophysical properties of chiral thiophospholipids in the liquid crystalline phase, by differential scanning calorimeter, Fourier-transform infrared spectroscopy, 31p NMR, 14N NMR, and 2H NMR.
Specific aim 4 involves stereospecificity of six membrane-related enzymes toward diastereomers of thiophospholipids.
Specific aim 5 is to initiate study on """"""""coenzymes chiral at phosphorus,"""""""" including (i) synthesis of NADHAlphaS and stereospecificity of two dehydrogenases; (ii) synthesis of FADAlphaS and stereospecificity of two oxidases. The information to be obtained may enhance our understanding in the stereochemical mechanism of enzyme catalysis, the interaction between the phosphate group of phospholipids and some membrane-related enzymes.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
3R01GM030327-07S1
Application #
3278007
Study Section
Physical Biochemistry Study Section (PB)
Project Start
1981-07-01
Project End
1988-11-30
Budget Start
1988-09-23
Budget End
1988-11-30
Support Year
7
Fiscal Year
1988
Total Cost
Indirect Cost
Name
Ohio State University
Department
Type
Schools of Arts and Sciences
DUNS #
098987217
City
Columbus
State
OH
Country
United States
Zip Code
43210
Kubiak, R J; Yue, X; Hondal, R J et al. (2001) Involvement of the Arg-Asp-His catalytic triad in enzymatic cleavage of the phosphodiester bond. Biochemistry 40:5422-32
Kravchuk, A V; Zhao, L; Kubiak, R J et al. (2001) Mechanism of phosphatidylinositol-specific phospholipase C: origin of unusually high nonbridging thio effects. Biochemistry 40:5433-9
Hondal, R J; Zhao, Z; Kravchuk, A V et al. (1998) Mechanism of phosphatidylinositol-specific phospholipase C: a unified view of the mechanism of catalysis. Biochemistry 37:4568-80
Bruzik, K S; Nyholm, P G (1997) NMR study of the conformation of galactocerebroside in bilayers and solution: galactose reorientation during the metastable-stable gel transition. Biochemistry 36:566-75
Hondal, R J; Riddle, S R; Kravchuk, A V et al. (1997) Phosphatidylinositol-specific phospholipase C: kinetic and stereochemical evidence for an interaction between arginine-69 and the phosphate group of phosphatidylinositol. Biochemistry 36:6633-42
Huang, B; Schaeffer, C J; Li, Q et al. (1996) Splase: a new class IIS zinc-finger restriction endonuclease with specificity for Sp1 binding sites. J Protein Chem 15:481-9
Bruzik, K S; Hakeem, A A; Tsai, M D (1994) Are D- and L-chiro-phosphoinositides substrates of phosphatidylinositol-specific phospholipase C? Biochemistry 33:8367-74
Bruzik, K S; Morocho, A M; Jhon, D Y et al. (1992) Phospholipids chiral at phosphorus. Stereochemical mechanism for the formation of inositol 1-phosphate catalyzed by phosphatidylinositol-specific phospholipase C. Biochemistry 31:5183-93
Bruzik, K S; Tsai, M D (1991) Phospholipase stereospecificity at phosphorus. Methods Enzymol 197:258-69
Loffredo, W M; Jiang, R T; Tsai, M D (1990) Phospholipids chiral at phosphorus. Dramatic effects of phosphorus chirality on the deuterium NMR properties of the choline head group of phospholipids in the liquid crystalline phase. Biochemistry 29:10912-8

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