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Present Synthetic models for the active site structure and chemical mechanism of manganese enzymes. Biological chemistry of vanadium. Development of the chemistry of metallacrowns. De Novometallopeptides design.
08/84 The use of cobalt(III) and chromium(III) nucleotides to elucidate the mechanism of phosphoryl transfer in kinases. Stability, structure, and metal ion exchange kinetics of M(II) nucleotide phosphorothioates.
08/81 Determination of the metal binding residues in transferrin. Stability of Fe(III), Ga(III), and In(III) complexes of multidentate catecholate chelating agents. Mechanism of iron transport to bacteria by siderophores.
Present Synthetic models for the active site structure and chemical mechanism of manganese enzymes. Biological chemistry of vanadium. Development of the chemistry of metallacrowns. De Novometallopeptides design.
08/84 The use of cobalt(III) and chromium(III) nucleotides to elucidate the mechanism of phosphoryl transfer in kinases. Stability, structure, and metal ion exchange kinetics of M(II) nucleotide phosphorothioates.
08/81 Determination of the metal binding residues in transferrin. Stability of Fe(III), Ga(III), and In(III) complexes of multidentate catecholate chelating agents. Mechanism of iron transport to bacteria by siderophores.
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Vincent L. Pecoraro, Zijian Guo
Elsevier eBookspp.1-2, (2023)
Matteo Melegari,Vittoria Marzaroli, Rosy Polisicchio, Davide Seletti,Luciano Marchiò,Vincent L Pecoraro,Matteo Tegoni
Inorganic chemistry (2023)
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Chemical Reviewsno. 14 (2022): 12046-12109
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EUROPEAN JOURNAL OF INORGANIC CHEMISTRYno. 32 (2022)
Advances in Metallacrown Chemistrypp.1-36, (2022)
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