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  • Author: Kim B
  • References

Author: Kim B


References 20 references


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  • Kim B (2025) Disruption of SAP1 confers vanillin tolerance in Saccharomyces cerevisiae. Folia Microbiol (Praha) PMID:40624440
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  • Lee Y, et al. (2023) Atg1-dependent phosphorylation of Vps34 is required for dynamic regulation of the phagophore assembly site and autophagy in Saccharomyces cerevisiae. Autophagy 19(9):2428-2442 PMID:36803233
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  • Eid RA, et al. (2022) Integrative analysis of WDR12 as a potential prognostic and immunological biomarker in multiple human tumors. Front Genet 13:1008502 PMID:36726716
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  • Kim B, et al. (2021) The trehalose-6-phosphate phosphatase Tps2 regulates ATG8 transcription and autophagy in Saccharomyces cerevisiae. Autophagy 17(4):1013-1027 PMID:32240040
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  • Balachander S, et al. (2020) Ribonucleotide incorporation in yeast genomic DNA shows preference for cytosine and guanosine preceded by deoxyadenosine. Nat Commun 11(1):2447 PMID:32415081
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  • Han JW, et al. (2020) The Antifungal Test: An Efficient Screening Tool for the Discovery of Microbial Metabolites with Respiratory Inhibitory Activity. Mycobiology 48(4):326-329 PMID:32952416
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  • Kim B and Kim HS (2018) Identification of novel genes to assign enhanced tolerance to osmotic stress in Saccharomyces cerevisiae. FEMS Microbiol Lett 365(14) PMID:29931330
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  • Kim M, et al. (2016) Mutation in ATG5 reduces autophagy and leads to ataxia with developmental delay. Elife 5 PMID:26812546
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  • Luo J, et al. (2015) Architecture of the Human and Yeast General Transcription and DNA Repair Factor TFIIH. Mol Cell 59(5):794-806 PMID:26340423
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  • Ha CW, et al. (2014) The β-1,3-glucanosyltransferase Gas1 regulates Sir2-mediated rDNA stability in Saccharomyces cerevisiae. Nucleic Acids Res 42(13):8486-99 PMID:24981510
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  • Kim B, et al. (2014) Metabolic engineering of Saccharomyces cerevisiae for the production of 2-phenylethanol via Ehrlich pathway. Biotechnol Bioeng 111(1):115-24 PMID:23836015
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  • Lee K, et al. (2014) Proteome-wide remodeling of protein location and function by stress. Proc Natl Acad Sci U S A 111(30):E3157-66 PMID:25028499
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  • Kim B, et al. (2013) Combinatorial design of a highly efficient xylose-utilizing pathway in Saccharomyces cerevisiae for the production of cellulosic biofuels. Appl Environ Microbiol 79(3):931-41 PMID:23183982
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  • Mirzaei H, et al. (2013) Systematic measurement of transcription factor-DNA interactions by targeted mass spectrometry identifies candidate gene regulatory proteins. Proc Natl Acad Sci U S A 110(9):3645-50 PMID:23388641
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  • Peterson A, et al. (2009) Analysis of RP-HPLC loading conditions for maximizing peptide identifications in shotgun proteomics. J Proteome Res 8(8):4161-8 PMID:19601632
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  • Kim B, et al. (2007) The transcription elongation factor TFIIS is a component of RNA polymerase II preinitiation complexes. Proc Natl Acad Sci U S A 104(41):16068-73 PMID:17913884
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  • King NL, et al. (2006) Analysis of the Saccharomyces cerevisiae proteome with PeptideAtlas. Genome Biol 7(11):R106 PMID:17101051
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  • Kim B, et al. (2005) Solution structure and backbone dynamics of the XPC-binding domain of the human DNA repair protein hHR23B. FEBS J 272(10):2467-76 PMID:15885096
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  • Teng SC, et al. (1996) Retrotransposon reverse-transcriptase-mediated repair of chromosomal breaks. Nature 383(6601):641-4 PMID:8857543
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  • Blank A, et al. (1994) DNA polymerase delta is required for base excision repair of DNA methylation damage in Saccharomyces cerevisiae. Proc Natl Acad Sci U S A 91(19):9047-51 PMID:8090767
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