The second domain of the human Menkes protein (MNK2), formed by 72 residues, has been expressed in Escherichia coli, and its structure has been determined by NMR in both the apo and copper-loaded forms. The structures, obtained with (13)C- and (15)N-labeled samples, are of high quality with backbone rmsd values of 0.51 and 0.41 A and CYANA target functions of 0.39 and 0.38 A(2), respectively. The loop involved in copper binding is part of a hydrophobic patch, which is maintained in both forms. Conformational mobility is observed in the apo form in the same loop. A comparison with metallochaperones and soluble domains of P-type ATPases allows us to relate the primary structure to the occurrence of structural rearrangements upon copper bindin...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
Biological utilisation of copper requires that the metal, in its ionic forms, be meticulously transp...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
The third metal-binding domain of the human Menkes protein (MNK3), a copper(I)-transporting ATPase, ...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
Biological utilisation of copper requires that the metal, in its ionic forms, be meticulously transp...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
International audience: Human copper-ATPases ATP7A and ATP7Bare essential for intracellular copper h...
The third metal-binding domain of the human Menkes protein (MNK3), a copper(I)-transporting ATPase, ...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The Menkes ATPase (MNK) has an essential role in the translocation of copper across cellular membran...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...
The inherent cellular toxicity of copper ions demands that their concentration be carefully controll...