It is proposed to develop methodology which will permit synthesis of natural hemes regioselectively labeled in predetermined positions with deuterium, carbon-13, tritium, nitrogen-15, and fluorine, and this methodology will subsequently be used by others for synthesis of NMR and resonance Raman probes to gain an understanding of heme apoprotein interactions and structure/function relationships in a variety of biologically important heme proteins such as hemoglobins, myoglobins, cytochromes, and peroxidases. It is also proposed to synthesize a variety of unlabeled heme analogues, heme dimers, sulfhemes, and hydrohemes. The structure of heme-dl will be re-examined and biosynthetic studies will be performed to establish the pathway to this unusual isobacteriochlorin system. Investigations into novel rearrangement processes in porphyrin systems, and a synthesis of an optically active N-methyporphyrin known to be a ferrochelatase inhibitor will also be carried out. The proposed work will provide a basis for understanding heme protein function, and of structural and electronic factors which cause several debilitating diseases such as anemias. Two fundamental approaches for synthesis of novel compounds will be developed;. carbon-13, nitrogen-15, fluorine labeled, and unlabeled porphyrins will be obtained by total synthesis from acyclic precursors. Some methods for such approaches have already been worked out, but improvements and discovery of new methodology is planned and anticipated. Some deuterium labeled, carbon-13 labeled porphyrins, protoporphyrin IX analogues, and sulfhemes, N-methylporphyrins and other chlorin hemes will be approached by manipulation of substituents on existing commercially available porphyrins or from chlorophyll alpha which will be extracted from a commercially available alga.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL022252-16
Application #
3336795
Study Section
Metallobiochemistry Study Section (BMT)
Project Start
1978-04-01
Project End
1995-03-31
Budget Start
1993-04-01
Budget End
1994-03-31
Support Year
16
Fiscal Year
1993
Total Cost
Indirect Cost
Name
University of California Davis
Department
Type
Schools of Arts and Sciences
DUNS #
094878337
City
Davis
State
CA
Country
United States
Zip Code
95618
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Lavi, Adina; Weitman, Hana; Holmes, Robert T et al. (2002) The depth of porphyrin in a membrane and the membrane's physical properties affect the photosensitizing efficiency. Biophys J 82:2101-10
Vicente, M Graca H; Edwards, Benjamin F; Shetty, Shankar J et al. (2002) Syntheses and preliminary biological studies of four meso-Tetra[(nido-carboranylmethyl)phenyl]porphyrins. Bioorg Med Chem 10:481-92
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