ADE2/YOR128C Literature Guide Help

Other names published for ADE2: YOR128C

ADE2 - Genetic Interactions (39)

ReferenceOther Genes Addressed
Bar C, et al.  (2008) A versatile partner of eukaryotic protein complexes that is involved in multiple biological processes: Kti11/Dph3. Mol Microbiol 69(5):1221-33
Young MJ and Court DA  (2008) Effects of the S288c genetic background and common auxotrophic markers on mitochondrial DNA function in Saccharomyces cerevisiae. Yeast 25(12):903-12
Zabel R, et al.  (2008) Yeast alpha-tubulin suppressor Ats1/Kti13 relates to the Elongator complex and interacts with Elongator partner protein Kti11. Mol Microbiol 69(1):175-87
Freeman KM and Hoffmann GR  (2007) Frequencies of mutagen-induced coincident mitotic recombination at unlinked loci in Saccharomyces cerevisiae. Mutat Res 616(1-2):119-32
Paumi CM, et al.  (2007) Mapping protein-protein interactions for the yeast ABC transporter Ycf1p by integrated split-ubiquitin membrane yeast two-hybrid analysis. Mol Cell 26(1):15-25
Kofuji S, et al.  (2006) The decapping enzyme Dcp1 participates in translation termination through its interaction with the release factor eRF3 in budding yeast. Biochem Biophys Res Commun 344(2):547-53
Kucej M, et al.  (2002) Isolation of genes coding for Ade2 and Ura3 homologues from the multinuclear yeast Dipodascus magnusii. Curr Genet 41(1):20-4
Zekhnov AM and Domkin VD  (2000) [The phenomenon of predetermination of the cytoplasm upon interaction between alleles of the ADE2 and ADE13 in the yeast Saccharomyces cerevisiae] Genetika 36(4):470-81
Sychrova H, et al.  (1999) Molecular cloning and sequence analysis of Zygosaccharomyces rouxii ADE2 gene encoding a phosphoribosyl-aminoimidazole carboxylase. Yeast 15(13):1399-402
Zekhnov AM, et al.  (1998) [New phenotypic manifestation of the ad2 mutation in Saccharomyces cerevisiae yeast--the inability to grow on a synthetic medium with glycerol and hypoxanthine] Genetika 34(2):190-7
Fiorentini P, et al.  (1997) Exonuclease I of Saccharomyces cerevisiae functions in mitotic recombination in vivo and in vitro. Mol Cell Biol 17(5):2764-73
Koz'min SG, et al.  (1997) [Genetic control of metabolism of a mutagenic analog of 6-N-hydroxylaminopurine bases in Saccharomyces cerevisiae yeasts] Genetika 33(5):591-8
Lustig AJ, et al.  (1996) Tethered Sir3p nucleates silencing at telomeres and internal loci in Saccharomyces cerevisiae. Mol Cell Biol 16(5):2483-95
Ugolini S and Bruschi CV  (1996) The red/white colony color assay in the yeast Saccharomyces cerevisiae: epistatic growth advantage of white ade8-18, ade2 cells over red ade2 cells. Curr Genet 30(6):485-92
Zecherle GN, et al.  (1996) Purines are required at the 5' ends of newly initiated RNAs for optimal RNA polymerase III gene expression. Mol Cell Biol 16(10):5801-10
Kinsey PT and Sandmeyer SB  (1995) Ty3 transposes in mating populations of yeast: a novel transposition assay for Ty3. Genetics 139(1):81-94
Zekhnov AM, et al.  (1995) [Mutation of ade13-1 of the yeast Saccharomyces cerevisiae leads to the absence of growth on a complete medium with glucose and epistatically interacts with mutations in other genes for purine biosynthesis] Genetika 31(1):15-23
Murawski M, et al.  (1994) maf1 mutation alters the subcellular localization of the Mod5 protein in yeast. Acta Biochim Pol 41(4):441-8
Fedorova IV, et al.  (1992) [Effect of hms mutations increasing spontaneous mutability on induced mutagenesis and mitotic recombination in the yeast Saccharomyces cerevisiae] Genetika 28(7):54-65
Gracheva LM, et al.  (1992) [Participation of the HIM1 gene from Saccharomyces cerevisiae in correction of heteroduplex DNA. Molecular cloning of the gene] Genetika 28(5):56-65
Foury F  (1990) The 31-kDa polypeptide is an essential subunit of the vacuolar ATPase in Saccharomyces cerevisiae. J Biol Chem 265(30):18554-60
Ivanov EL, et al.  (1989) Saccharomyces cerevisiae mutants with enhanced induced mutation and altered mitotic gene conversion. Mutat Res 213(2):105-115
Koval'tsova SV and Korolev VG  (1989) [The effect of him mutations characterized by enhanced induced mutagenesis on the spontaneous mitotic recombination in the ADE2 gene in Saccharomyces cerevisiae] Genetika 25(12):2111-20
Louis EJ and Haber JE  (1989) Nonrecombinant meiosis I nondisjunction in Saccharomyces cerevisiae induced by tRNA ochre suppressors. Genetics 123(1):81-95
Ivanov EL, et al.  (1987) [Mutants of Saccharomyces cerevisiae characterized by increased level of induced mutagenesis. I. Isolation and preliminary characterization of mutants] Genetika 23(5):784-92
Ivanov EL, et al.  (1987) [Mutants of the yeast Saccharomyces cerevisiae characterized by enhanced induced mutagenesis. III. Effect of the him mutation on the effectiveness and specificity of UF-induced mutagenesis] Genetika 23(9):1555-63
Mikhailova NP and Soidla TR  (1987) [Induction and genetic analysis of mutations modifying phenotypic suppression at increased levels of carbon dioxide in yeasts] Genetika 23(9):1574-80
Ivanov EL, et al.  (1986) The rad2 mutation affects the molecular nature of UV and acridine-mustard-induced mutations in the ADE2 gene of Saccharomyces cerevisiae. Mutat Res 160(3):207-14
Hieter P, et al.  (1985) Mitotic stability of yeast chromosomes: a colony color assay that measures nondisjunction and chromosome loss. Cell 40(2):381-92
Il'ina VL, et al.  (1985) [Effect of the adenine level of a culture medium on the frequency of revertants in haploid yeasts] Genetika 21(10):1643-9