EC Number   |
Title   |
Organism   |
|---|
 7.2.2.21 | A cadmium-transporting P1B-type ATPase in yeast Saccharomyces cerevisiae |
Saccharomyces cerevisiae |
 7.2.2.21 | A cloned prokaryotic Cd2+ P-type ATPase increases yeast sensitivity to Cd2+ |
Listeria monocytogenes |
 7.2.2.21 | A novel CPx-ATPase from the cadmium hyperaccumulator Thlaspi caerulescens |
Noccaea caerulescens |
 7.2.2.21 | An operon consisting of a P-type ATPase gene and a transcriptional regulator gene responsible for cadmium resistances in Bacillus vietamensis 151-6 and Bacillus marisflavi 151-25 |
Rossellomorea vietnamensis |
 7.2.2.21 | An operon consisting of a P-type ATPase gene and a transcriptional regulator gene responsible for cadmium resistances in Bacillus vietamensis 151-6 and Bacillus marisflavi 151-25 |
Rossellomorea marisflavi |
 7.2.2.21 | An operon consisting of a P-type ATPase gene and a transcriptional regulator gene responsible for cadmium resistances in Bacillus vietamensis 151-6 and Bacillus marisflavi 151-25 |
Rossellomorea vietnamensis 151-6 |
 7.2.2.21 | An operon consisting of a P-type ATPase gene and a transcriptional regulator gene responsible for cadmium resistances in Bacillus vietamensis 151-6 and Bacillus marisflavi 151-25 |
Rossellomorea marisflavi 151-25 |
 7.2.2.21 | AtHMA3, a plant P1B-ATPase, functions as a Cd/Pb transporter in yeast |
Arabidopsis thaliana |
 7.2.2.21 | ATP-dependent cadmium transport by the cadA cadmium resistance determinat in everted membrane vesicles of Bacillus subtilis |
Bacillus subtilis |
 7.2.2.21 | Bacillus subtilis CPx-type ATPases: Characterization of Cd, Zn, Co and Cu efflux systems |
Bacillus subtilis |