4.7 Article

Probing copper2+ binding to the prion protein-using diamagnetic nicke2+ and 1H NMR:: The unstructured N terminus facilitates the coordination of six copper2+ ions at physiological concentrations

Journal

JOURNAL OF MOLECULAR BIOLOGY
Volume 346, Issue 5, Pages 1393-1407

Publisher

ACADEMIC PRESS LTD- ELSEVIER SCIENCE LTD
DOI: 10.1016/j.jmb.2004.12.043

Keywords

prion protein; copper; nickel; structure; NMR

Funding

  1. MRC [MC_U117533887] Funding Source: UKRI
  2. Medical Research Council [MC_U117533887] Funding Source: Medline
  3. Medical Research Council [MC_U117533887] Funding Source: researchfish

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The prion protein (PrP) is a Cu2+ binding cell surface glyco-protein. Misfolding of PrP into a P-sheet rich conformation is associated with transmissible spongiform encephalopathies. Here we use Ni2+ as a diamagnetic probe to further understand Cu2+ binding to PrP. Like Cu2+, Ni2+ preferentially binds to an unstructured region between residues 90 and 126 of PrP, which is a key region for amyloidogenicity and prion propagation. Using both H-1 NMR and visible-circular dichroism (CD) spectroscopy, we show that two Ni2+ ions bind to His96 and His111 independently of each other. H-1 NMR indicates that both Ni2+ binding sites form square-planar diamagnetic complexes. We have previously shown that Cu2+ forms a paramagnetic square-planar complex in this region, suggesting that Ni2+ could be used as a probe for Cu2+ binding. In addition, competition studies show that two Cu2+ ions can displace Ni2+ from these sites. Upon Ni2+ addition H-1 NMR changes in chemical shifts indicate the imidazole ring and amide nitrogen atoms to the N terminus of both His96 and His111 act as coordinating ligands. Use of peptide fragments confirm that PrP(92-96) and PrP(107-111) represent the minimal binding motif for the two Ni2+ binding sites. Analysis Of Cu2+ loaded visible-CD spectra show that as with Ni2+, PrP(90-115) binds two Cu2+ ions at His96 and His111 independently of each other. Visible CD studies with PrP(23-231Delta51-90), a construct of PrP(23-231) with the octarepeat region deleted to improve solubility, confirm binding of Ni2+ to His96 and His111 in octarepeat deleted PrP(23-231). The structure of the Cu/Ni complexes is discussed in terms of the implications for prion protein function and disease. (C) 2004 Elsevier Ltd. All rights reserved.

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