CopA is a Cu(I)-exporting transmembrane P1B-type ATPase from Bacillus subtilis. It contains two N-terminal cytoplasmic domains, CopAab, which bind Cu(I) with high affinity and to form higher-order complexes with multiple Cu(I) ions. To determine the precise nature of these species, electrospray ionisation mass spectrometry (ESI-MS) under non-denaturing conditions was employed. Up to 1 Cu per CopAab resulted in Cu coordination to one or both CopAab domains. At >1 Cu/CopAab, two distinct dimeric charge state envelopes were observed, corresponding to distinct conformations, each with Cu6(CopAab)2 as its major form. The influence of the physiologically relevant low molecular weight thiol bacillithiol (BSH) on Cu(I)-binding to CopAab was assesse...
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...
All cells maintain essential metal nutrients at optimal levels by metal homeostasis. P-type ATPases,...
CopA from Bacillus subtilis is a Cu(I)-transporting P-type ATPase involved in resistance to high lev...
Copper-transporting P-type ATPases, which play important roles in trafficking Cu(I) across membranes...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
The solution structure of the N-terminal region (151 amino acids) of a copper ATPase, CopA, from Bac...
CopA, a P‐type ATPase transporter involved in copper detoxification in Bacillus subtilis, contains t...
The CopA copper ATPase of Enterococcus hirae belongs to the family of heavy metal pumping CPx-type A...
AbstractCopA, a thermophilic ATPase from Archaeoglobus fulgidus, drives the outward movement of Cu+ ...
Multinuclear Cu(I) clusters are common in nature, but little is known about their formation or trans...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Cu+-ATPases receive Cu+ from specific chaperones via ligand exchange and subsequently drive the meta...
A putative partner of the already characterized CopZ from Bacillus subtilis was found, both proteins...
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...
All cells maintain essential metal nutrients at optimal levels by metal homeostasis. P-type ATPases,...
CopA from Bacillus subtilis is a Cu(I)-transporting P-type ATPase involved in resistance to high lev...
Copper-transporting P-type ATPases, which play important roles in trafficking Cu(I) across membranes...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
Copper is essential for life, but potentially toxic due to its ability to redox cycle and displace ...
The solution structure of the N-terminal region (151 amino acids) of a copper ATPase, CopA, from Bac...
CopA, a P‐type ATPase transporter involved in copper detoxification in Bacillus subtilis, contains t...
The CopA copper ATPase of Enterococcus hirae belongs to the family of heavy metal pumping CPx-type A...
AbstractCopA, a thermophilic ATPase from Archaeoglobus fulgidus, drives the outward movement of Cu+ ...
Multinuclear Cu(I) clusters are common in nature, but little is known about their formation or trans...
Escherichia coli CopA is a copper ion-translocating P-type ATPase that confers copper resistance. Ex...
Cu+-ATPases receive Cu+ from specific chaperones via ligand exchange and subsequently drive the meta...
A putative partner of the already characterized CopZ from Bacillus subtilis was found, both proteins...
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...
All cells maintain essential metal nutrients at optimal levels by metal homeostasis. P-type ATPases,...