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  • Author: Nakagawa Y
  • References

Author: Nakagawa Y


References 37 references


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  • Nakagawa Y, et al. (2022) Amyloid conformation-dependent disaggregation in a reconstituted yeast prion system. Nat Chem Biol 18(3):321-331 PMID:35177839
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  • Nakagawa Y, et al. (2021) Are droplets really suitable for single-cell analysis? A case study on yeast in droplets. Lab Chip 21(19):3793-3803 PMID:34581379
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  • Nakagawa Y, et al. (2017) Development of intra-strain self-cloning procedure for breeding baker's yeast strains. J Biosci Bioeng 123(3):319-326 PMID:27829542
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  • Nakagawa Y, et al. (2014) Forced expression of FLO11 confers pellicle-forming ability and furfural tolerance on Saccharomyces cerevisiae in ethanol production. Biosci Biotechnol Biochem 78(4):714-7 PMID:25036972
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  • Nakagawa Y, et al. (2013) A new simple method for isolating multistress-tolerant semidominant mutants of Saccharomyces cerevisiae by one-step selection under lethal hydrogen peroxide stress condition. Biosci Biotechnol Biochem 77(2):224-8 PMID:23391901
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  • 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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  • Nakagawa Y, et al. (2010) Identification and characterization of CcCTR1, a copper uptake transporter-like gene, in Coprinopsis cinerea. Microbiol Res 165(4):276-87 PMID:19716688
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  • Yamanaka T, et al. (2010) MCA1 and MCA2 that mediate Ca2+ uptake have distinct and overlapping roles in Arabidopsis. Plant Physiol 152(3):1284-96 PMID:20097794
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  • Nakagawa Y, et al. (2007) Arabidopsis plasma membrane protein crucial for Ca2+ influx and touch sensing in roots. Proc Natl Acad Sci U S A 104(9):3639-44 PMID:17360695
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  • Ishigami M, et al. (2006) FLO11 is the primary factor in flor formation caused by cell surface hydrophobicity in wild-type flor yeast. Biosci Biotechnol Biochem 70(3):660-6 PMID:16556982
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  • Nozawa A, et al. (2005) Cloning of cDNAs encoding isopropylmalate dehydrogenase from Arabidopsis thaliana and accumulation patterns of their transcripts. Biosci Biotechnol Biochem 69(4):806-10 PMID:15849421
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  • Yuasa N, et al. (2005) Two alleles of the sulfite resistance genes are differentially regulated in Saccharomyces cerevisiae. Biosci Biotechnol Biochem 69(8):1584-8 PMID:16116289
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  • Koiwa H, et al. (2003) The STT3a subunit isoform of the Arabidopsis oligosaccharyltransferase controls adaptive responses to salt/osmotic stress. Plant Cell 15(10):2273-84 PMID:12972670
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  • Nakagawa Y, et al. (2002) Mga2p is a putative sensor for low temperature and oxygen to induce OLE1 transcription in Saccharomyces cerevisiae. Biochem Biophys Res Commun 291(3):707-13 PMID:11855848
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  • Kuwahara K, et al. (2001) The neuron-restrictive silencer element-neuron-restrictive silencer factor system regulates basal and endothelin 1-inducible atrial natriuretic peptide gene expression in ventricular myocytes. Mol Cell Biol 21(6):2085-97 PMID:11238943
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  • Nakagawa Y and Yanagishima N (1982) Changes in production of the mating-type-specific glycoproteins, agglutination substances in association with mating type interconversion in homothallic strains of the yeast, Saccharomyces cerevisiae. Mol Gen Genet 185(2):207-10 PMID:7045581
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