Other names published for COX2: OXI1, OXII, cytochrome c oxidase subunit 2, Q0250
COX2 LITERATURE TOPICS
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| Reference | Other Genes Addressed |
|---|---|
| Geier BM, et al. (1995) Kinetic properties and ligand binding of the eleven-subunit cytochrome-c oxidase from Saccharomyces cerevisiae isolated with a novel large-scale purification method. Eur J Biochem 227(1-2):296-302 | |
| Glerum DM, et al. (1995) Cloning and characterization of COX14, whose product is required for assembly of yeast cytochrome oxidase. J Biol Chem 270(26):15585-90 | |
| Meunier B, et al. (1995) The topology of CuA in relation to the other metal centres in cytochrome-c oxidase of Saccharomyces cerevisiae as determined by analysis of second-site reversions. Biochim Biophys Acta 1253(1):13-5 | |
| Pearce DA and Sherman F (1995) Degradation of cytochrome oxidase subunits in mutants of yeast lacking cytochrome c and suppression of the degradation by mutation of yme1. J Biol Chem 270(36):20879-82 | |
| Simon M, et al. (1995) The nuclear-encoded MSS2 gene is involved in the expression of the mitochondrial cytochrome-c oxidase subunit 2 (Cox2). Biochim Biophys Acta 1228(1):95-8 | |
| Speno H, et al. (1995) Identification of essential amino acids within the proposed CuA binding site in subunit II of Cytochrome c oxidase. J Biol Chem 270(43):25363-9 | |
| Bauer M, et al. (1994) PET1402, a nuclear gene required for proteolytic processing of cytochrome oxidase subunit 2 in yeast. Mol Gen Genet 245(3):272-8 | |
| Clark-Walker GD and Weiller GF (1994) The structure of the small mitochondrial DNA of Kluyveromyces thermotolerans is likely to reflect the ancestral gene order in fungi. J Mol Evol 38(6):593-601 | |
| Drissi R, et al. (1994) Genes of the linear mitochondrial DNA of Williopsis mrakii: coding sequences for a maturase-like protein, a ribosomal protein VAR1 homologue, cytochrome oxidase subunit 2 and methionyl tRNA. Yeast 10(3):391-8 | |
| Mulero JJ and Fox TD (1994) Reduced but accurate translation from a mutant AUA initiation codon in the mitochondrial COX2 mRNA of Saccharomyces cerevisiae. Mol Gen Genet 242(4):383-90 | |
| Mulero JJ, et al. (1994) PET112, a Saccharomyces cerevisiae nuclear gene required to maintain rho+ mitochondrial DNA. Curr Genet 25(4):299-304 | |
| Pinkham JL, et al. (1994) T7 RNA polymerase-dependent expression of COXII in yeast mitochondria. Mol Cell Biol 14(7):4643-52 | |
| Groudinsky O, et al. (1993) The NAM1/MTF2 nuclear gene product is selectively required for the stability and/or processing of mitochondrial transcripts of the atp6 and of the mosaic, cox1 and cytb genes in Saccharomyces cerevisiae. Mol Gen Genet 240(3):419-27 | |
| McEwen JE, et al. (1993) Sequence and chromosomal localization of two PET genes required for cytochrome c oxidase assembly in Saccharomyces cerevisiae. Curr Genet 23(1):9-14 | |
| Meunier B, et al. (1993) Genetic screening in Saccharomyces cerevisiae for large numbers of mitochondrial point mutations which affect structure and function of catalytic subunits of cytochrome-c oxidase. Eur J Biochem 213(1):129-35 | |
| Mulero JJ and Fox TD (1993) Alteration of the Saccharomyces cerevisiae COX2 mRNA 5'-untranslated leader by mitochondrial gene replacement and functional interaction with the translational activator protein PET111. Mol Biol Cell 4(12):1327-35 | |
| Mulero JJ and Fox TD (1993) PET111 acts in the 5'-leader of the Saccharomyces cerevisiae mitochondrial COX2 mRNA to promote its translation. Genetics 133(3):509-16 | |
| Boguta M, et al. (1992) NAM9 nuclear suppressor of mitochondrial ochre mutations in Saccharomyces cerevisiae codes for a protein homologous to S4 ribosomal proteins from chloroplasts, bacteria, and eucaryotes. Mol Cell Biol 12(1):402-12 | |
| Dekker PJ, et al. (1992) Determinants for binding of a 40 kDa protein to the leaders of yeast mitochondrial mRNAs. Nucleic Acids Res 20(11):2647-55 | |
| Moulinier T, et al. (1992) The mitochondrial genome of the basidiomycete Agrocybe aegerita: molecular cloning, physical mapping and gene location. Curr Genet 21(6):499-505 | |
| Pel HJ, et al. (1992) The yeast nuclear gene MRF1 encodes a mitochondrial peptide chain release factor and cures several mitochondrial RNA splicing defects. Nucleic Acids Res 20(23):6339-46 | |
| Pich U and Kunze G (1992) Genome organization of mitochondrial DNA from the non-saccharomycete yeast Arxula adeninivorans LS3. Curr Genet 22(6):505-6 | |
| Taanman JW and Capaldi RA (1992) Purification of yeast cytochrome c oxidase with a subunit composition resembling the mammalian enzyme. J Biol Chem 267(31):22481-5 | |
| Clark-Walker GD (1991) Contrasting mutation rates in mitochondrial and nuclear genes of yeasts versus mammals. Curr Genet 20(3):195-8 | |
| Cooper CE, et al. (1991) Cytochrome c oxidase: structure, function, and membrane topology of the polypeptide subunits. Biochem Cell Biol 69(9):586-607 | |
| Dekker PJ, et al. (1991) Properties of an abundant RNA-binding protein in yeast mitochondria. Biochimie 73(12):1487-92 | |
| Pixley FJ, et al. (1991) Mitochondrial gene sequences show fungal homology for Pneumocystis carinii. Mol Microbiol 5(6):1347-51 | |
| Sakai H, et al. (1991) Mitochondrial mutations restricting spontaneous translational frameshift suppression in the yeast Saccharomyces cerevisiae. Mol Gen Genet 227(2):306-17 | |
| Hardy CM and Clark-Walker GD (1990) Nucleotide sequence of the cytochrome oxidase subunit 2 and val-tRNA genes and surrounding sequences from Kluyveromyces lactis K8 mitochondrial DNA. Yeast 6(5):403-10 | |
| Huttenhofer A, et al. (1990) A novel type of + 1 frameshift suppressor: a base substitution in the anticodon stem of a yeast mitochondrial serine-tRNA causes frameshift suppression. EMBO J 9(2):551-8 | |



