Retinoic acid and its analogues have generated much interest because of their potential utility as cancer chemopreventive agents. Although promising compounds, a major impediment to fully exploiting these polyenes lies in the uncertainty concerning the mechanism(s) by which they modulate cellular differentiation. Currently, the most accepted hypothesis holds that the cellular retinoid acid-binding protein(s) (CRABP) mediate retinoid action by a steroid hormone-like mechanism of action. Some inconsistencies remain with this model leaving open questions about the actual mechanism of retinoic acid action.
Specific aims for this chemical program are the synthesis of probes of the nature and role of the CRABP or other retinoid receptors. Four investigations are described: 1) the synthesis of electrophilic affinity labels for the active site of the CRABP, 2) the synthesis of photo-affinity labels to be used as in 1) above, 3) the preparation of retinoic acid-containing affinity matrices to expedite chromatographic purification of the CRABP(s), and 4) the preparation of improved antigenic forms of retinoic acid.
Aims of the biological studies will be: 1) preliminary evaluation of the affinity and specificity of the CRABP affinity probes followed by determination of any specific covalent modifications of the CRABP(s), 2) study of the pharmacological activity of these agents, particularly as long-acting retinoid agonists or antagonists, 3) demonstration of the utility of an affinity chromatography purification of the CRABP, and 4) development of a retinoid-specific radioimmunoassay. Demonstration of utility of any of the above research probes should generate interest in longer-range studies in this area. These studies would investigate the physico-chemical nature of the CRABP's and the transport and localization of retinoids by the CRABP's which should lead to a much better understanding of the mechanism of retinoid action.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA040967-03
Application #
3181279
Study Section
(SSS)
Project Start
1985-09-30
Project End
1989-07-31
Budget Start
1987-08-01
Budget End
1989-07-31
Support Year
3
Fiscal Year
1987
Total Cost
Indirect Cost
Name
Ohio State University
Department
Type
Schools of Pharmacy
DUNS #
098987217
City
Columbus
State
OH
Country
United States
Zip Code
43210
Chapman, J M; Curley Jr, R W (1990) Affinity purification of retinoic acid-binding proteins using immobilized 4-(2-hydroxyethoxy)retinoic acid. Protein Expr Purif 1:63-9
Hartman, D A; Basil, J B; Robertson, L W et al. (1990) Microbial biotransformation of retinoic acid by Cunninghamella echinulata and Cunninghamella blakesleeana. Pharm Res 7:270-3
Chapman, J M; Curley Jr, R W (1989) Affinity chromatographic purification of serum retinol-binding protein using 4-substituted aminoretinoids. J Biochem Biophys Methods 19:287-300
Curley Jr, R W; Fowble, J W (1988) Photoisomerization of retinoic acid and its photoprotection in physiologic-like solutions. Photochem Photobiol 47:831-5
Curley Jr, R W; Carson, D L (1987) Synthesis of the 4-oxygenated retinoid metabolites. Drug Des Deliv 1:219-24
Curley Jr, R W; Carson, D L; Ryzewski, C N (1986) Effect of end-capping of reversed-phase high-performance liquid chromatographic matrices on the analysis of vitamin A and its metabolites. J Chromatogr 370:188-93