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Miniaturized heme proteins: crystal structure of Co(III)-mimochrome IV

Academic Article
Publication Date:
2004
abstract:
Protein design provides an attractive approach to test the essential features required for folding and function. Previously, we described the design and structural characterization in solution of mimochromes, a series of miniaturized metalloproteins, patterned after the F-helix of the hemoglobin beta-chain. Mimochromes consist of two medium-sized helical peptides, covalently linked to the deuteroporphyrin. CD and NMR characterization of the prototype, mimochrome I, revealed that the overall structure conforms well to the design. However, formation of D and L diastereomers was observed. To overcome the problem of diastereomer formation, we re-designed mimochrome I, by engineering intramolecular, interchain interactions. The resulting model was mimochrome IV: the solution structural characterization showed the presence of the L isomer as a unique form. To examine the extent to which the stereochemical stability and uniqueness of mimochrome IV was retained in the solid state, the crystal structure of Co(III)-mimochrome IV was solved by X-ray diffraction, and compared to the solution structure of the same derivative. Co(III)-mimochrome IV structures, both in solution and in the solid state, are characterized by the following common features: a bis-His axial coordination, a L configuration around the metal ion, and a predominant helical conformation of the peptide chains. However, in the crystal structure, intrachain Glu1-Arg9 ion pairs are preferred over the designed, and experimentally found in solution, interchain interactions. This ion pairing switch may be related to strong packing interactions.
Iris type:
01.01 Articolo in rivista
Keywords:
Miniaturized hemeproteins; Model compounds; Protein design; Structure; X-ray diffraction
List of contributors:
Maglio, Ornella
Authors of the University:
MAGLIO ORNELLA
Handle:
https://iris.cnr.it/handle/20.500.14243/14150
Published in:
JBIC JOURNAL OF BIOLOGICAL INORGANIC CHEMISTRY
Journal
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