Other names published for CCC2: Cu(2+)-transporting P-type ATPase CCC2, YDR270W
CCC2 LITERATURE TOPICS
- Curated Literature
- Genetics/Cell Biology
- Nucleic Acid Information
- Gene Product Information
- Related Genes/Proteins
- Research Aids
- Genome-wide Analysis
- Proteome-wide Analysis
- Other Topics
- Additional Information
CCC2 - Reviews (22)
| Reference | Other Genes Addressed |
|---|---|
| Nevitt T, et al. (2012) Charting the travels of copper in eukaryotes from yeast to mammals. Biochim Biophys Acta 1823(9):1580-93 | |
| Palm-Espling ME, et al. (2012) Role of metal in folding and stability of copper proteins in vitro. Biochim Biophys Acta 1823(9):1594-603 | |
| Bleackley MR and MacGillivray RT (2011) Transition metal homeostasis: from yeast to human disease. Biometals 24(5):785-809 | |
| Zhang N and Bilsland E (2011) Contributions of Saccharomyces cerevisiae to Understanding Mammalian Gene Function and Therapy. Methods Mol Biol 759():501-23 | |
| Banci L, et al. (2010) Molecular recognition in copper trafficking. Nat Prod Rep 27(5):695-710 | |
| Kovalchuk A and Driessen AJ (2010) Phylogenetic analysis of fungal ABC transporters. BMC Genomics 11():177 | |
| Bleackley MR, et al. (2009) Blood iron homeostasis: newly discovered proteins and iron imbalance. Transfus Med Rev 23(2):103-23 | |
| Macreadie IG (2008) Copper transport and Alzheimer's disease. Eur Biophys J 37(3):295-300 | |
| Philpott CC and Protchenko O (2008) Response to Iron Deprivation in Saccharomyces cerevisiae. Eukaryot Cell 7(1):20-7 | |
| Kaplan J, et al. (2006) Iron-dependent metabolic remodeling in S. cerevisiae. Biochim Biophys Acta 1763(7):646-51 | |
| Rees EM and Thiele DJ (2004) From aging to virulence: forging connections through the study of copper homeostasis in eukaryotic microorganisms. Curr Opin Microbiol 7(2):175-84 | |
| Rutherford JC and Bird AJ (2004) Metal-responsive transcription factors that regulate iron, zinc, and copper homeostasis in eukaryotic cells. Eukaryot Cell 3(1):1-13 | |
| Finney LA and O'Halloran TV (2003) Transition metal speciation in the cell: insights from the chemistry of metal ion receptors. Science 300(5621):931-6 | |
| Okorokova-Facanha AL, et al. (2003) An inventory of the P-type ATPases in the fission yeast Schizosaccharomyces pombe. Curr Genet 43(4):273-80 | |
| Funato K, et al. (2002) Biosynthesis and trafficking of sphingolipids in the yeast Saccharomyces cerevisiae. Biochemistry 41(51):15105-14 | |
| Gaxiola RA, et al. (2002) Genetic manipulation of vacuolar proton pumps and transporters. Plant Physiol 129(3):967-73 | |
| Nelson N (1999) Metal ion transporters and homeostasis. EMBO J 18(16):4361-71 | |
| Pena MM, et al. (1999) A delicate balance: homeostatic control of copper uptake and distribution. J Nutr 129(7):1251-60 | |
| Eide DJ (1998) The molecular biology of metal ion transport in Saccharomyces cerevisiae. Annu Rev Nutr 18:441-69 | |
| Askwith CC, et al. (1996) Molecular biology of iron acquisition in Saccharomyces cerevisiae. Mol Microbiol 20(1):27-34 | |
| De Silva DM, et al. (1996) Molecular mechanisms of iron uptake in eukaryotes. Physiol Rev 76(1):31-47 | |
| Andre B (1995) An overview of membrane transport proteins in Saccharomyces cerevisiae. Yeast 11(16):1575-611 |



