Wilson Disease (WD) is a hereditary genetic disorder, which coincides with a dysfunctional copper (Cu) metabolism caused by mutations in ATP7B, a membrane-bound P-1B-type ATPase responsible for Cu export from hepatic cells. The N-terminal part (similar to 600 residues) of the multi-domain 1400-residue ATP7B constitutes six metal binding domains (MBDs), each of which can bind a copper ion, interact with other ATP7B domains as well as with different proteins. Although the ATP7B\u27s MBDs have been investigated in vitro and in vivo intensively, it remains unclear how these domains modulate overall structure, dynamics, stability and function of ATP7B. The presence of six MBDs is unique to mammalian ATP7B homologs, and many WD causing missense m...
Eukaryotic cells prevent copper-induced, free radical damage to cell components by employing copper-...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...
Copper is an integral component of key metabolic enzymes. Numerous physiological processes depend o...
Copper is an integral component of key metabolic enzymes. Numerous physiological processes depend o...
AbstractWilson disease is an autosomal disorder of copper transport caused by mutations in the ATP7B...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
Copper is essential for human health and copper imbalance is a key factor in the aetiology and patho...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
Wilson disease (WD) is caused by mutations in the gene for ATP7B, a copper transport protein that re...
Wilson disease (WD) is caused by mutations in the gene for ATP7B, a copper transport protein that re...
Eukaryotic cells prevent copper-induced, free radical damage to cell components by employing copper-...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...
Copper is an integral component of key metabolic enzymes. Numerous physiological processes depend o...
Copper is an integral component of key metabolic enzymes. Numerous physiological processes depend o...
AbstractWilson disease is an autosomal disorder of copper transport caused by mutations in the ATP7B...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
Copper is essential for human health and copper imbalance is a key factor in the aetiology and patho...
ATP7B is a human copper-transporting P1B-type ATPase that is involved in copper homeostasis and resi...
Wilson disease (WD) is caused by mutations in the gene for ATP7B, a copper transport protein that re...
Wilson disease (WD) is caused by mutations in the gene for ATP7B, a copper transport protein that re...
Eukaryotic cells prevent copper-induced, free radical damage to cell components by employing copper-...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...
After cellular uptake, Copper (Cu) ions are transferred from the chaperone Atox1 to the Wilson disea...