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  • Author: Zhouravleva G
  • References

Author: Zhouravleva G


References 13 references


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  • Drozdova P, et al. (2018) Overproduction of Sch9 leads to its aggregation and cell elongation in Saccharomyces cerevisiae. PLoS One 13(3):e0193726 PMID:29494682
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  • Drozdova P, et al. (2016) Haploid yeast cells undergo a reversible phenotypic switch associated with chromosome II copy number. BMC Genet 17(Suppl 3):152 PMID:28105933
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  • Petrova A, et al. (2015) The translation termination factor eRF1 (Sup45p) of Saccharomyces cerevisiae is required for pseudohyphal growth and invasion. FEMS Yeast Res 15(4):fov033 PMID:26054854
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  • Kiktev D, et al. (2009) The paradox of viable sup45 STOP mutations: a necessary equilibrium between translational readthrough, activity and stability of the protein. Mol Genet Genomics 282(1):83-96 PMID:19370360
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  • Chabelskaya S, et al. (2007) Inactivation of NMD increases viability of sup45 nonsense mutants in Saccharomyces cerevisiae. BMC Mol Biol 8:71 PMID:17705828
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  • Kiktev D, et al. (2007) Prion-dependent lethality of sup45 mutants in Saccharomyces cerevisiae. Prion 1(2):136-43 PMID:19164896
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  • Chabelskaya S, et al. (2004) Nonsense mutations in the essential gene SUP35 of Saccharomyces cerevisiae are non-lethal. Mol Genet Genomics 272(3):297-307 PMID:15349771
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  • Inge-Vechtomov S, et al. (2003) Eukaryotic release factors (eRFs) history. Biol Cell 95(3-4):195-209 PMID:12867083
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  • Cosson B, et al. (2002) Characterization of the poly(A) binding proteins expressed during oogenesis and early development of Xenopus laevis. Biol Cell 94(4-5):217-31 PMID:12489691
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  • Cosson B, et al. (2002) Poly(A)-binding protein acts in translation termination via eukaryotic release factor 3 interaction and does not influence [PSI(+)] propagation. Mol Cell Biol 22(10):3301-15 PMID:11971964
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  • Le Goff C, et al. (2002) Mouse GSPT2, but not GSPT1, can substitute for yeast eRF3 in vivo. Genes Cells 7(10):1043-57 PMID:12354098
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  • Wallrapp C, et al. (1998) The product of the mammalian orthologue of the Saccharomyces cerevisiae HBS1 gene is phylogenetically related to eukaryotic release factor 3 (eRF3) but does not carry eRF3-like activity. FEBS Lett 440(3):387-92 PMID:9872408
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  • Zhouravleva G, et al. (1995) Termination of translation in eukaryotes is governed by two interacting polypeptide chain release factors, eRF1 and eRF3. EMBO J 14(16):4065-72 PMID:7664746
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