CopA from Bacillus subtilis is a Cu(I)-transporting P-type ATPase involved in resistance to high levels of environmental copper. At its N-terminus are two soluble domains, a and b, that, when generated in isolation from the membrane part, have previously been shown to exhibit unusual Cu(I)-binding behaviour: at >1 Cu(I) per CopAab the protein dimerises, resulting in the formation of a species with luminescence properties characteristic of a solvent-shielded Cu(I) cluster. Further insight into the Cu(I)-binding properties of CopAab are now reported. We demonstrate that the initial binding of Cu(I) occurs with very high affinity (K = ~ 4 × 1017 M-1) and that CopAab can accommodate up to 4 Cu(I) per protein and remains dimeric at higher Cu(I)-...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
CopA, a P‐type ATPase transporter involved in copper detoxification in Bacillus subtilis, contains t...
CopA is a Cu(I)-exporting transmembrane P1B-type ATPase from Bacillus subtilis. It contains two N-te...
Copper-transporting P-type ATPases, which play important roles in trafficking Cu(I) across membranes...
The solution structure of the N-terminal region (151 amino acids) of a copper ATPase, CopA, from Bac...
Multinuclear Cu(I) clusters are common in nature, but little is known about their formation or trans...
CopZ, an Atx1-like copper chaperone from the bacterium Bacillus subtilis, functions as part of a com...
Cells regulate copper levels tightly to balance the biogenesis and integrity of copper centers in vi...
Cells regulate copper levels tightly to balance the biogenesis and integrity of copper centers in vi...
Copper resistance has emerged as an important virulence determinant of microbial pathogens. In Strep...
A putative partner of the already characterized CopZ from Bacillus subtilis was found, both proteins...
Regulation of intracellular copper activity is crucially important for cell life. Copper is very tox...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
CopA, a P‐type ATPase transporter involved in copper detoxification in Bacillus subtilis, contains t...
CopA is a Cu(I)-exporting transmembrane P1B-type ATPase from Bacillus subtilis. It contains two N-te...
Copper-transporting P-type ATPases, which play important roles in trafficking Cu(I) across membranes...
The solution structure of the N-terminal region (151 amino acids) of a copper ATPase, CopA, from Bac...
Multinuclear Cu(I) clusters are common in nature, but little is known about their formation or trans...
CopZ, an Atx1-like copper chaperone from the bacterium Bacillus subtilis, functions as part of a com...
Cells regulate copper levels tightly to balance the biogenesis and integrity of copper centers in vi...
Cells regulate copper levels tightly to balance the biogenesis and integrity of copper centers in vi...
Copper resistance has emerged as an important virulence determinant of microbial pathogens. In Strep...
A putative partner of the already characterized CopZ from Bacillus subtilis was found, both proteins...
Regulation of intracellular copper activity is crucially important for cell life. Copper is very tox...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...