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  • Author: Fujii M
  • References

Author: Fujii M


References 15 references


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  • En A, et al. (2023) The key role of a basic domain of histone H2B N-terminal tail in the action of 5-bromodeoxyuridine to induce cellular senescence. FEBS J 290(3):692-711 PMID:35882390
    • SGD Paper
    • DOI full text
    • PubMed
  • Ito T, et al. (2023) Plasmodium Parasite Malate-Quinone Oxidoreductase Functionally Complements a Yeast Deletion Mutant of Mitochondrial Malate Dehydrogenase. Microbiol Spectr 11(3):e0016823 PMID:37036365
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Nakahata S, et al. (2022) Mathematical model of chromosomal dynamics during DNA double strand break repair in budding yeast. Biophys Physicobiol 19:1-12 PMID:35749629
    • SGD Paper
    • DOI full text
    • PMC full text
    • PubMed
  • Matsuo R, et al. (2017) Central roles of iron in the regulation of oxidative stress in the yeast Saccharomyces cerevisiae. Curr Genet 63(5):895-907 PMID:28289833
    • SGD Paper
    • DOI full text
    • PubMed
  • Takayama S, et al. (2011) N-terminal short fragment of TUP1 confers resistance to 5-bromodeoxyuridine in the yeast Saccharomyces cerevisiae. Biochem Biophys Res Commun 411(1):25-31 PMID:21712029
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    • DOI full text
    • PubMed
  • Fujii M, et al. (2010) Identification of genes that affect sensitivity to 5-bromodeoxyuridine in the yeast Saccharomyces cerevisiae. Mol Genet Genomics 283(5):461-8 PMID:20352263
    • SGD Paper
    • DOI full text
    • PubMed
  • Miki K, et al. (2010) 5-bromodeoxyuridine induces transcription of repressed genes with disruption of nucleosome positioning. FEBS J 277(21):4539-48 PMID:21040474
    • SGD Paper
    • DOI full text
    • PubMed
  • Fujii M, et al. (2009) [FeFe]-hydrogenase-like gene is involved in the regulation of sensitivity to oxygen in yeast and nematode. Genes Cells 14(4):457-68 PMID:19335616
    • SGD Paper
    • DOI full text
    • PubMed
  • Miki K, et al. (2008) 5-Bromouracil disrupts nucleosome positioning by inducing A-form-like DNA conformation in yeast cells. Biochem Biophys Res Commun 368(3):662-9 PMID:18258180
    • SGD Paper
    • DOI full text
    • PubMed
  • Takayama S, et al. (2007) Overexpression of HAM1 gene detoxifies 5-bromodeoxyuridine in the yeast Saccharomyces cerevisiae. Curr Genet 52(5-6):203-11 PMID:17899088
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    • PubMed
  • Ye Y, et al. (2007) Geranylgeranyl diphosphate synthase in fission yeast is a heteromer of farnesyl diphosphate synthase (FPS), Fps1, and an FPS-like protein, Spo9, essential for sporulation. Mol Biol Cell 18(9):3568-81 PMID:17596513
    • SGD Paper
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  • Fujii M and York JD (2005) A role for rat inositol polyphosphate kinases rIPK2 and rIPK1 in inositol pentakisphosphate and inositol hexakisphosphate production in rat-1 cells. J Biol Chem 280(2):1156-64 PMID:15528195
    • SGD Paper
    • DOI full text
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  • Fujii M, et al. (2002) 5-Bromo-2'-deoxyuridine efficiently suppresses division potential of the yeast Saccharomyces cerevisiae. Biosci Biotechnol Biochem 66(4):906-9 PMID:12036074
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    • DOI full text
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  • Hirose N, et al. (1999) Isolation and genetic determination of a Saccharomyces cerevisiae mutant that produces an endo-polygalacturonase. J Biosci Bioeng 87(5):594-7 PMID:16232524
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  • Nozaki T, et al. (1999) Cloning and characterization of a gene encoding phosphatidyl inositol-specific phospholipase C from Trypanosoma cruzi. Mol Biochem Parasitol 102(2):283-95 PMID:10498184
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