The human prion protein binds Cu2+ ions in the octarepeat domain of the N-terminal tail up to full occupancy at pH 7.4. Recent experiments have shown that the HGGG octarepeat subdomain is responsible for holding the metal bound in a square-planar configuration. By using first principle ab initio molecular dynamics simulations of the Car-Parrinello type, the coordination of copper to the binding sites of the prion protein octarepeat region is investigated. Simulations are carried out for a number of structured binding sites. Results for the complexes Cu(HGGGW)(wat), Cu(HGGG), and [Cu(HGGG)](2) are presented. While the presence of a Trp residue and a water molecule does not seem to affect the nature of the copper coordination, high stability ...
Recent evidence suggests that the prion protein (PrP) is a copper binding protein. The N-terminal re...
The cellular prion protein (PrPC) is a Cu2+ binding protein connected to the outer cell membrane. Th...
We present a hybrid QM/MM Car-Parrinello molecular dynamics study of the copper-loaded C-terminal do...
The human prion protein binds Cu2+ ions in the octarepeat domain of the N-terminal tail up to full o...
The prion protein (PrP) binds Cu2+ ions in the octarepeat domain of the N-terminal tail up to full ...
First principle ab initio molecular dynamics simulations of the Car-Parrinello type have proved to b...
In this work, we report molecular dynamics simulations on a fragment of the human prion protein span...
AbstractThe prion protein has garnered considerable interest because of its involvement in prion dis...
AbstractMolecular dynamics simulations have been conducted on a model fragment (Ac-PHGGGWGQPHGGGW-NH...
The copper-binding ability of the prion protein may be closely connected to its function. Identifyin...
The octarepeat region of the prion protein can bind Cu2+ ions up to full occupancy (one ion per octa...
ABSTRACT: Recent evidence suggests that the prion protein (PrP) is a copper binding protein. The N-t...
Recent evidence suggests that the prion protein (PrP) is a copper binding protein. The N-terminal re...
The cellular prion protein (PrPC) is a Cu2+ binding protein connected to the outer cell membrane. Th...
We present a hybrid QM/MM Car-Parrinello molecular dynamics study of the copper-loaded C-terminal do...
The human prion protein binds Cu2+ ions in the octarepeat domain of the N-terminal tail up to full o...
The prion protein (PrP) binds Cu2+ ions in the octarepeat domain of the N-terminal tail up to full ...
First principle ab initio molecular dynamics simulations of the Car-Parrinello type have proved to b...
In this work, we report molecular dynamics simulations on a fragment of the human prion protein span...
AbstractThe prion protein has garnered considerable interest because of its involvement in prion dis...
AbstractMolecular dynamics simulations have been conducted on a model fragment (Ac-PHGGGWGQPHGGGW-NH...
The copper-binding ability of the prion protein may be closely connected to its function. Identifyin...
The octarepeat region of the prion protein can bind Cu2+ ions up to full occupancy (one ion per octa...
ABSTRACT: Recent evidence suggests that the prion protein (PrP) is a copper binding protein. The N-t...
Recent evidence suggests that the prion protein (PrP) is a copper binding protein. The N-terminal re...
The cellular prion protein (PrPC) is a Cu2+ binding protein connected to the outer cell membrane. Th...
We present a hybrid QM/MM Car-Parrinello molecular dynamics study of the copper-loaded C-terminal do...