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  • Author: Sato N
  • References

Author: Sato N


References 19 references


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  • Sato N, et al. (2025) Crucial roles of Grr1 in splicing and translation of HAC1 mRNA upon unfolded stress response. Nat Commun 16(1):2172 PMID:40038285
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  • Gall-Duncan T, et al. (2022) Advancing genomic technologies and clinical awareness accelerates discovery of disease-associated tandem repeat sequences. Genome Res 32(1):1-27 PMID:34965938
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  • Narita M, et al. (2022) A distinct mammalian disome collision interface harbors K63-linked polyubiquitination of uS10 to trigger hRQT-mediated subunit dissociation. Nat Commun 13(1):6411 PMID:36302773
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  • Okawara Y, et al. (2021) Phos-tag diagonal electrophoresis precisely detects the mobility change of phosphoproteins in Phos-tag SDS-PAGE. J Proteomics 231:104005 PMID:33035715
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  • Murakami-Sekimata A, et al. (2020) Deletion of PIN4 Suppresses the Protein Transport Defects Caused by sec12-4 Mutation in Saccharomyces cerevisiae. Microb Physiol 30(1-6):25-35 PMID:32958726
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  • Hirashima T, et al. (2018) Evolution of the Phosphatidylcholine Biosynthesis Pathways in Green Algae: Combinatorial Diversity of Methyltransferases. J Mol Evol 86(1):68-76 PMID:29330556
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  • Takahashi S, et al. (2017) Immature Core protein of hepatitis C virus induces an unfolded protein response through inhibition of ERAD-L in a yeast model system. Genes Cells 22(2):160-173 PMID:28097745
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  • Iwasa S, et al. (2016) The Phospholipid:Diacylglycerol Acyltransferase Lro1 Is Responsible for Hepatitis C Virus Core-Induced Lipid Droplet Formation in a Yeast Model System. PLoS One 11(7):e0159324 PMID:27459103
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  • Abe H, et al. (2009) Development of valuable yeast strains using a novel mutagenesis technique for the effective production of therapeutic glycoproteins. Glycobiology 19(4):428-36 PMID:19129247
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  • Fujioka T, et al. (2007) MpkA-Dependent and -independent cell wall integrity signaling in Aspergillus nidulans. Eukaryot Cell 6(8):1497-510 PMID:17601879
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  • Sato N and Maeda T (2004) [Regulation of eukaryotic His-Asp phosphorelay system by proteasome-dependent pathway]. Seikagaku 76(12):1576-8 PMID:15675373
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  • Furukohri A, et al. (2003) Identification and characterization of a Xenopus homolog of Dbf4, a regulatory subunit of the Cdc7 protein kinase required for the initiation of DNA replication. J Biochem 134(3):447-57 PMID:14561731
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  • Sato N, et al. (2003) Phosphorelay-regulated degradation of the yeast Ssk1p response regulator by the ubiquitin-proteasome system. Mol Cell Biol 23(18):6662-71 PMID:12944490
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  • Hori O, et al. (2002) Transmission of cell stress from endoplasmic reticulum to mitochondria: enhanced expression of Lon protease. J Cell Biol 157(7):1151-60 PMID:12082077
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  • Miyamoto Y, et al. (2002) Identification of Saccharomyces cerevisiae isoleucyl-tRNA synthetase as a target of the G1-specific inhibitor Reveromycin A. J Biol Chem 277(32):28810-4 PMID:12050165
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  • Sato N, et al. (2002) Long anchor using Flo1 protein enhances reactivity of cell surface-displayed glucoamylase to polymer substrates. Appl Microbiol Biotechnol 60(4):469-74 PMID:12466889
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  • Masai H, et al. (1999) CDC7 kinase complex as a molecular switch for DNA replication. Front Biosci 4:D834-40 PMID:10577390
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  • Kim JM, et al. (1998) Growth regulation of the expression of mouse cDNA and gene encoding a serine/threonine kinase related to Saccharomyces cerevisiae CDC7 essential for G1/S transition. Structure, chromosomal localization, and expression of mouse gene for s. cerevisiae Cdc7-related kinase. J Biol Chem 273(36):23248-57 PMID:9722556
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  • Sato N, et al. (1997) Human and Xenopus cDNAs encoding budding yeast Cdc7-related kinases: in vitro phosphorylation of MCM subunits by a putative human homologue of Cdc7. EMBO J 16(14):4340-51 PMID:9250678
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