PhD ThesisIn yeast, Cu,Zn-superoxide dismutase (Sod1) is activated by the copper metallochaperone Ccs1, mainly in the cytosol. This involves the delivery of Cu1+ and the formation of a structurally important disulfide bond. Ccs1 consists of three domains, with domain 1 (D1) and domain 3 (D3) containing copper-binding CXXC and CXC motifs respectively. In human CCS1, D1 is the site of copper transfer and D3 is responsible for disulfide bond formation in SOD1. In yeast cells, D3 of Ccs1 is essential for Sod1 activation, whereas D1 is required only under copper-limiting conditions. The Cu1+-binding ability of Ccs1 has been investigated using mutants in which the Cys residues in either the D1 (C17S/C20S-Ccs1) or D3 (C229S/C231S-Ccs1) copper-bind...
<p>Copper (Cu) is a co-factor that is essential for oxidative phosphorylation, protection from oxida...
AbstractCopper delivery to Ccc2 – the Golgi Cu+-ATPase – was investigated in vivo, replacing the Cu+...
The Ctr1 family of proteins mediates high-affinity copper (Cu) acquisition in eukaryotic organisms. ...
PhD ThesisThe human copper metallochaperone CCS activates Cu,Zn-superoxide dismutase (SOD1) through ...
International audienceA mitochondrial matrix copper ligand (CuL) complex, conserved in mammalian cel...
International audienceA mitochondrial matrix copper ligand (CuL) complex, conserved in mammalian cel...
The delivery of copper by the human metallochaperone CCS is a key step in the activation of Cu,Zn-su...
SOD1 has to undergo several post-translational modifications before reaching its mature form. The pr...
PhD ThesisCopper metallochaperones help prevent mis-metallation of proteins and ensure copper incor...
Ccc2 is an intracellular copper transporter in Saccharomyces cerevisiae and is a physiological targe...
Copper-zinc superoxide dismutase (Sod1) is an abundant intracellular enzyme that catalyzes the dispr...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
AbstractBackground: Recent studies have identified the human copper chaperone CCS as the presumed fa...
<p>Copper (Cu) is a co-factor that is essential for oxidative phosphorylation, protection from oxida...
AbstractCopper delivery to Ccc2 – the Golgi Cu+-ATPase – was investigated in vivo, replacing the Cu+...
The Ctr1 family of proteins mediates high-affinity copper (Cu) acquisition in eukaryotic organisms. ...
PhD ThesisThe human copper metallochaperone CCS activates Cu,Zn-superoxide dismutase (SOD1) through ...
International audienceA mitochondrial matrix copper ligand (CuL) complex, conserved in mammalian cel...
International audienceA mitochondrial matrix copper ligand (CuL) complex, conserved in mammalian cel...
The delivery of copper by the human metallochaperone CCS is a key step in the activation of Cu,Zn-su...
SOD1 has to undergo several post-translational modifications before reaching its mature form. The pr...
PhD ThesisCopper metallochaperones help prevent mis-metallation of proteins and ensure copper incor...
Ccc2 is an intracellular copper transporter in Saccharomyces cerevisiae and is a physiological targe...
Copper-zinc superoxide dismutase (Sod1) is an abundant intracellular enzyme that catalyzes the dispr...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
Aims: Acquisition and detoxification of metal ions are vital biological processes. Given the require...
AbstractBackground: Recent studies have identified the human copper chaperone CCS as the presumed fa...
<p>Copper (Cu) is a co-factor that is essential for oxidative phosphorylation, protection from oxida...
AbstractCopper delivery to Ccc2 – the Golgi Cu+-ATPase – was investigated in vivo, replacing the Cu+...
The Ctr1 family of proteins mediates high-affinity copper (Cu) acquisition in eukaryotic organisms. ...