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1.
Кондратьева В.И. Конверсия типов спаривания у дрожжей Schizosaccharomyces pombe // Молекул. генет. микроорганизмов. -М., 1988.-С.15-24

2.
Fission yeast Ags1 confers the essential septum strength needed for safe gradual cell abscission // J. Cell Biol., 2012. Vol. 198, N 4.-С.637-656

3.
Fission yeast Ags1 confers the essential septum strength needed for safe gradual cell abscission // J. Cell Biol., 2012. Vol. 198, N 4.-С.637-656

4.
RPA facilitates telomerase activity at chromosome ends in budding and fission yeasts // EMBO Journal, 2012. Vol. 31, N 8.-С.2034-2046

5.
Greenwood J. Non-coding telomeric and subtelomeric transcripts are differentially regulated by telomeric and heterochromatin assembly factors in fission yeast // Nucl. Acids Res., 2012. Vol. 40, N 7.-С.2956-2963

6.
Sexual co-flocculation and asexual self-flocculation in budding and fission yeasts: experimental establishment of a fundamental difference // Can. J. Microbiol., 1988. Vol. 34, N 9.-С.1105-1107

7.
Ishiguro An abnormal cell division cycle in an AIR carcoxylase-dificient mutant of the f>sion ission Schizosaccharomyces pombe // Curr. Genet., 1989. Vol. 15, N 1.-С.71-74

8.
Potashkin Judith A. Multiple phosphorylated forms of the product of the fission yeast cell division cycle gene cdc2+ // Curr. Genet., 1988. Vol. 14, N 3.-С.235-240

9.
Construction of an expression vector for the fission yeast Schizosaccharomyces pombe // Nucl. Acids Res., 1988. Vol. 16, N 17.-С.8603-8617

10.
Holoch RNAi in fission yeast finds new targets and new ways of targeting at the nuclear periphery // Genes and Dev., 2012. Vol. 26, N 8.-С.741-745

11.
hsf1{+} extends chronological lifespan through Ec11 family genes in fission yeast // Mol. Genet. and Genom., 2011. Vol. 285, N 1.-С.67-77

12.
Expression of the atf1{+} gene is upregulated in fission yeast under nitrosative and nutritional stresses // Can. J. Microbiol., 2009. Vol. 55, N 11.-С.1323-1327

13.
Aspuria The Tsc/Rheb signaling pathway controls basic amino acid uptake via the Cat1 permease in fission yeast // Mol. Genet. and Genom., 2008. Vol. 279, N 5.-С.441-450

14.
RNAi and heterochromatin repress centromeric meiotic recombination // Proc. Nat. Acad. Sci. USA, 2010. Vol. 107, N 19.-С.8701-8705

15.
Fission yeast Ubr1 ubiquitin ligase influences the oxidative stress response via degradation of active Pap1 bZIP transcription factor in the nucleus // Mol. Microbiol., 2011. Vol. 80, N 3.-С.739-755

16.
Pap 1p-dependent upregulation of thioredoxin 3 and thioredoxin reductase genes from the fission yeast under nitrosative stress // Can. J. Microbiol., 2012. Vol. 58, N 2.-С.206-211

17.
Mitochondrial localization of fission yeast manganese superoxide dismutase is required for its lysine acetylation and for cellular stress resistance and respiratory growth // Biochem. and Biophys. Res. Commun., 2011. Vol. 406, N 1.-С.42-46

18.
Systematic localization study on novel proteins encoded by meiotically up-regulated ORFs in fission yeast // Biosci., Biotechnol. and Biochem., 2011. Vol. 75, N 12.-С.2364-2370

19.
Regulatioon of cell cycle-specific gene expression in fission yeast by the Cdc14p-like phosphatase Clp1p // J. Cell Sci., 2010. Vol. 123, N 24.-С.4374-4381

20.
Nurse On fission // J. Gen. Microbiol., 1990. Vol. 136, N 10.-С.1921-1923

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