The goals of the proposed research are focussed on questions of structure-function relationships of complex enzymes, including their kinetic and chemical mechanisms, and on investigations of protein-protein interactions in vitro and in vivo. Major projects include the determination of the 3-dimensional structure of glutamate dehydrogenase, the investigation of the mechanisms of adenylate and adenosine deaminase by NMR techniques, further studies of the interaction of adenylate deaminaae with myosin and its fragments, the investigation of the conversion of G to F action both in solution and in cells using the techniques of recovery of laser induced photobleaching and fluorescence correlation spectroscopy and finally, the development of kinetic theory for complex enzyme systems. An understanding of the behavior of regulatory enzymes is essential for development of ideas about the molecular basis of metabolic regulation in the normal and disease states. Both adenylate deaminase and adenosine deaminase deficiencies have been observed, the former deficiency related to aspects of muscular contraction while the latter deficiency gives rise to serve combined immunodeficiency disease. Actin composes a major portion of the cytoskeletal structure of cells. The polymerization-depolymerization behavior of this protein in non-muscle cells controls shape and dynamic functions such as locomotion, phagocytosis and cytokinesis, while actin in the muscle cells is, of course, essential for muscle contraction.

Agency
National Institute of Health (NIH)
Institute
National Institute of Arthritis, Diabetes, Digestive and Kidney Diseases (NIADDK)
Type
Research Project (R01)
Project #
5R01AM013332-17
Application #
3150861
Study Section
Physiological Chemistry Study Section (PC)
Project Start
1977-01-01
Project End
1986-12-31
Budget Start
1985-01-01
Budget End
1985-12-31
Support Year
17
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Washington University
Department
Type
Schools of Medicine
DUNS #
062761671
City
Saint Louis
State
MO
Country
United States
Zip Code
63130
Kurz, L C; Weitkamp, E; Frieden, C (1987) Adenosine deaminase: viscosity studies and the mechanism of binding of substrate and of ground- and transition-state analogue inhibitors. Biochemistry 26:3027-32
Zimmerle, C T; Frieden, C (1986) Effect of temperature on the mechanism of actin polymerization. Biochemistry 25:6432-8
Goddette, D W; Frieden, C (1986) The kinetics of cytochalasin D binding to monomeric actin. J Biol Chem 261:15970-3
Goddette, D W; Uberbacher, E C; Bunick, G J et al. (1986) Formation of actin dimers as studied by small angle neutron scattering. J Biol Chem 261:2605-9
Goddette, D W; Frieden, C (1986) Actin polymerization. The mechanism of action of cytochalasin D. J Biol Chem 261:15974-80
Arakawa, T; Frieden, C (1985) The use of the fluorescence photobleaching recovery technique to study the self-assembly of tubulin. Anal Biochem 146:134-42
Penner, M H; Frieden, C (1985) Substrate-induced hysteresis in the activity of Escherichia coli dihydrofolate reductase. J Biol Chem 260:5366-9
Frieden, C; Patane, K (1985) Differences in G-actin containing bound ATP or ADP: the Mg2+-induced conformational change requires ATP. Biochemistry 24:4192-6
Kurz, L C; Ackerman, J J; Drysdale, G R (1985) Evidence from 13C NMR for polarization of the carbonyl of oxaloacetate in the active site of citrate synthase. Biochemistry 24:452-7
Kurz, L C; LaZard, D; Frieden, C (1985) Protein structural changes accompanying formation of enzymatic transition states: tryptophan environment in ground-state and transition-state analogue complexes of adenosine deaminase. Biochemistry 24:1342-6

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