Soluble Diamagnetic Model for Malaria Pigment: Coordination Chemistry of Gallium(III)protoporphyrin-IX

The facile axial ligand exchange properties of gallium­(III) protoporphyrin IX in methanol solution were utilized to explore self-association interactions by NMR techniques. Structural changes were observed, as well as competitive behavior with the ligands acetate and fluoride, which differed from t...

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Published inInorganic chemistry Vol. 51; no. 20; pp. 10747 - 10761
Main Authors Bohle, D. Scott, Dodd, Erin L, Pinter, Tyler B. J, Stillman, Martin J
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 15.10.2012
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Summary:The facile axial ligand exchange properties of gallium­(III) protoporphyrin IX in methanol solution were utilized to explore self-association interactions by NMR techniques. Structural changes were observed, as well as competitive behavior with the ligands acetate and fluoride, which differed from that seen with the synthetic analogue gallium­(III) octaethylporphyrin which lacks acid groups in its side-chains and has less solution heterogeneity as indicated by absorption and MCD spectroscopies. The propionic acid side chains of protoporphyrin IX are implicated in all such interactions of PPIX, and both dynamic metal-propionic interactions and the formation of propionate-bridged dimers are observed. Fluoride coordination provides an unusual example of slow ligand exchange, and this allows for the identification of a fluoride bridged dimer in solution. An improved synthesis of the chloride and hydroxide complexes of gallium­(III) protoporphyrin IX is reported. An insoluble gallium analogue of hematin anhydride is described. In general, the interactions between solvent and the metal are found to confer very high solubility, making [Ga­(PPIX)]+ a useful model for ferric heme species.
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ISSN:0020-1669
1520-510X
DOI:10.1021/ic301106g