Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. X-ray absorption spectroscopy at the copper K-edge has been used to explore the site geometry under each binding mode using both insoluble polymeric Cu(II).alphaBoPrP-(24-242) (bovine PrP) complexes and soluble Cu(II) complexes of peptides containing one, two, and four copies of the octarepeat. Analysis of the extended region of the spectra using a multiple scattering approach revealed two types of sites differing in the number of His residues in the first coordination shell of Cu(II). Peptides containing one and two-octarepeat copies in sub-stoichiometric Cu(II) complexes showed the direct binding of a single His in accord with crystallographic intra-repeat geometry. Alternatively, the polymeric Cu(II).alphaBoPrP-(24-242) complex and Cu(II) in its soluble complex with a four-octarepeat peptide at half-site-occupancy showed Cu(II) directly bound to two His residues, consistent with an inter-repeat binding mode. Increasing the Cu(II) site occupancy from 0.5 to 0.75 in the peptide containing four octarepeats resulted in spectral features that are intermediate to those of the inter-and intra-repeat modes. The transition from His-Cu-His (inter-repeat) to Cu-His (intra-repeat) on increasing Cu(II) saturation offers a structural basis for the positive cooperativity of the cation binding process and explains the capacity of alphaPrP to participate in Cu(II)-mediated intermolecular interactions.

Morante, S., Gonzalez Iglesias, R., Potrich, C., Meneghini, C., Meyer Klaucke, W., Menestrina, G., et al. (2004). Inter- and intra-octarepeat Cu(II) site geometries in the prion protein: Implications in Cu(II) binding cooperativity and Cu(II)-mediated assemblies. THE JOURNAL OF BIOLOGICAL CHEMISTRY, 279(12), 11753-11759 [10.1074/jbc.M312860200].

Inter- and intra-octarepeat Cu(II) site geometries in the prion protein: Implications in Cu(II) binding cooperativity and Cu(II)-mediated assemblies

MORANTE, SILVIA;
2004-01-01

Abstract

Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. X-ray absorption spectroscopy at the copper K-edge has been used to explore the site geometry under each binding mode using both insoluble polymeric Cu(II).alphaBoPrP-(24-242) (bovine PrP) complexes and soluble Cu(II) complexes of peptides containing one, two, and four copies of the octarepeat. Analysis of the extended region of the spectra using a multiple scattering approach revealed two types of sites differing in the number of His residues in the first coordination shell of Cu(II). Peptides containing one and two-octarepeat copies in sub-stoichiometric Cu(II) complexes showed the direct binding of a single His in accord with crystallographic intra-repeat geometry. Alternatively, the polymeric Cu(II).alphaBoPrP-(24-242) complex and Cu(II) in its soluble complex with a four-octarepeat peptide at half-site-occupancy showed Cu(II) directly bound to two His residues, consistent with an inter-repeat binding mode. Increasing the Cu(II) site occupancy from 0.5 to 0.75 in the peptide containing four octarepeats resulted in spectral features that are intermediate to those of the inter-and intra-repeat modes. The transition from His-Cu-His (inter-repeat) to Cu-His (intra-repeat) on increasing Cu(II) saturation offers a structural basis for the positive cooperativity of the cation binding process and explains the capacity of alphaPrP to participate in Cu(II)-mediated intermolecular interactions.
2004
Pubblicato
Rilevanza internazionale
Articolo
Sì, ma tipo non specificato
Settore FIS/07 - FISICA APPLICATA (A BENI CULTURALI, AMBIENTALI, BIOLOGIA E MEDICINA)
English
Copper; Crystallography; Polymers; Stoichiometry; Structure (composition); X ray spectroscopy; Binding cooperativity; Intermolecular interactions; Proteins; cation; copper ion; histidine; prion protein; article; complex formation; geometry; human; molecular interaction; nonhuman; priority journal; protein assembly; protein binding; stoichiometry; X ray crystallography; Amino Acid Sequence; Binding Sites; Copper; Molecular Sequence Data; Prions; Protein Binding; Repetitive Sequences, Amino Acid; Bovinae
Morante, S., Gonzalez Iglesias, R., Potrich, C., Meneghini, C., Meyer Klaucke, W., Menestrina, G., et al. (2004). Inter- and intra-octarepeat Cu(II) site geometries in the prion protein: Implications in Cu(II) binding cooperativity and Cu(II)-mediated assemblies. THE JOURNAL OF BIOLOGICAL CHEMISTRY, 279(12), 11753-11759 [10.1074/jbc.M312860200].
Morante, S; Gonzalez Iglesias, R; Potrich, C; Meneghini, C; Meyer Klaucke, W; Menestrina, G; Gasset, M
Articolo su rivista
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2108/39452
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