ALERT: This system is being upgraded on Tuesday December 12. It will not be available
for use for several hours that day while the upgrade is in progress. Deposits to DukeSpace
will be disabled on Monday December 11, so no new items are to be added to the repository
while the upgrade is in progress. Everything should be back to normal by the end of
day, December 12.
Quantification of the Binding Properties of Cu2+ to the Amyloid Beta Peptide: Coordination Spheres for Human and Rat Peptides and Implication on Cu2+-Induced Aggregation
Abstract
There is no consensus on the coordinating ligands for Cu2+ by A beta. However, the
differences in peptide sequence between human and rat have been hypothesized to alter
metal ion binding in a manner that alters Cu2+-induced aggregation of A beta. Herein,
we employ isothermal titration calorimetry (ITC), circular dichroism (CD), and electron
paramagnetic resonance (EPR) spectroscopy to examine the Cu2+ coordination spheres
to human and rat A beta and an extensive set of A beta(16) mutants. EPR of the mutant
peptides is consistent with a 3N1O binding geometry, like the native human peptide
at pH 7.4. The thermodynamic data reveal an equilibrium between three coordination
spheres, {NH2, O, NIm(His6), N-}, {NH2, O, N-Im(His6), N-Im(His13)}, and {NH2, O,
N-Im(His6), N-Im(His14)}, for human A beta(16) but one dominant coordination for rat
A beta(16), {NH2, O, N-Im(His6), N-}, at pH 7.4-6.5. ITC and CD data establish that
the mutation R5G is sufficient for reproducing this difference in Cu2+ binding properties
at pH 7.4. The substitution of bulky and positively charged Arg by Gly is proposed
to stabilize the coordination {NH2, O-, NIm(His6), N-} that then results in one dominating
coordination sphere for the case of the rat peptide. The differences in the coordination
geometries for Cu2+ by the human and rat A beta are proposed to contribute to the
variation in the ability of Cu2+ to induce aggregation of A beta peptides.
Type
Other articleSubject
alzheimer a-betacopper-binding
octarepeat domain
zinc-binding
disease
cu(ii)
protein
affinity
site
stoichiometry
chemistry, physical
Permalink
https://hdl.handle.net/10161/4071Published Version (Please cite this version)
10.1021/jp103272vCitation
Hong,Lian;Carducci,Tessa M.;Bush,William D.;Dudzik,Christopher G.;Millhauser,Glenn
L.;Simon,John D.. 2010. Quantification of the Binding Properties of Cu2+ to the Amyloid
Beta Peptide: Coordination Spheres for Human and Rat Peptides and Implication on Cu2+-Induced
Aggregation. Journal of Physical Chemistry B 114(34): 11261-11271.
Collections
More Info
Show full item record
Articles written by Duke faculty are made available through the campus open access policy. For more information see: Duke Open Access Policy
Rights for Collection: Scholarly Articles
Works are deposited here by their authors, and represent their research and opinions, not that of Duke University. Some materials and descriptions may include offensive content. More info