In this paper we report a systematic XAS study of a set of samples in which Cu(II) was progressively added to complexes in which Zn(II) was bound to the tetra-octarepeat portion of the prion protein. This work extends previous EPR and XAS analysis in which, in contrast, the effect of adding Zn(II) to Cu(II)-tetra-octarepeat complexes was investigated. Detailed structural analysis of the XAS spectra taken at both the Cu and Zn K-edge when the two metals are present at different relative concentrations revealed that Zn(II) and Cu(II) ions compete for binding to the tetra-octarepeat peptide by cross-regulating their relative binding modes. We show that the specific metal-peptide coordination mode depends not only, as expected, on the relative ...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the α prion protein (αPrP) can be both intramolecular and intermolecular. X-ray ab...
In this paper we report a systematic XAS study of a set of samples in which Cu(II) was progressively...
In this paper we report a systematic XAS study of a set of samples in which Cu(II) was progressively...
International audienceIn this work we present and analyse XAS measurements carried out on various po...
The cellular prion protein, the precursor of the major protein component of prions, is a Cu(II) bind...
The cellular prion protein, the precursor of the major protein component of prions, is a Cu(II) bind...
The review describes the stability and the coordination modes of Cu(2+) complexes with different reg...
In this paper, we report the characterization of copper(II) complexes with two prion (PrP) protein p...
Complex formation processes between the 39-mer residue peptide fragment of human prion protein, HuPr...
International audienceIn this work we analyze at a structural level the mechanism by which Cu(II) an...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the α prion protein (αPrP) can be both intramolecular and intermolecular. X-ray ab...
In this paper we report a systematic XAS study of a set of samples in which Cu(II) was progressively...
In this paper we report a systematic XAS study of a set of samples in which Cu(II) was progressively...
International audienceIn this work we present and analyse XAS measurements carried out on various po...
The cellular prion protein, the precursor of the major protein component of prions, is a Cu(II) bind...
The cellular prion protein, the precursor of the major protein component of prions, is a Cu(II) bind...
The review describes the stability and the coordination modes of Cu(2+) complexes with different reg...
In this paper, we report the characterization of copper(II) complexes with two prion (PrP) protein p...
Complex formation processes between the 39-mer residue peptide fragment of human prion protein, HuPr...
International audienceIn this work we analyze at a structural level the mechanism by which Cu(II) an...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the alpha prion protein (alphaPrP) can be both intramolecular and intermolecular. ...
Cu(II) binding to the α prion protein (αPrP) can be both intramolecular and intermolecular. X-ray ab...