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  • Author: Gao C
  • References

Author: Gao C


References 21 references


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  • Zhou P, et al. (2023) Engineered Artificial Membraneless Organelles in Saccharomyces cerevisiae To Enhance Chemical Production. Angew Chem Int Ed Engl 62(14):e202215778 PMID:36762978
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  • Li H, et al. (2022) Shedding Light on the Role of Phosphorylation in Plant Autophagy. FEBS Lett 596(17):2172-2185 PMID:35426137
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  • Qi Y, et al. (2022) Mediator Engineering of Saccharomyces cerevisiae To Improve Multidimensional Stress Tolerance. Appl Environ Microbiol 88(8):e0162721 PMID:35369708
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  • Sjölander JJ, et al. (2020) A Redox-Sensitive Thiol in Wis1 Modulates the Fission Yeast Mitogen-Activated Protein Kinase Response to H2O2 and Is the Target of a Small Molecule. Mol Cell Biol 40(7) PMID:31932483
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  • Ye C, et al. (2020) Comprehensive understanding of Saccharomyces cerevisiae phenotypes with whole-cell model WM_S288C. Biotechnol Bioeng 117(5):1562-1574 PMID:32022245
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  • Tang W, et al. (2018) Disruption of actin motor function due to MoMyo5 mutation impairs host penetration and pathogenicity in Magnaporthe oryzae. Mol Plant Pathol 19(3):689-699 PMID:28378891
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  • Lan J, et al. (2016) A Quantitative Toxicogenomics Assay for High-throughput and Mechanistic Genotoxicity Assessment and Screening of Environmental Pollutants. Environ Sci Technol 50(6):3202-14 PMID:26855253
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  • Lan J, et al. (2015) Toxicity Assessment of 4-Methyl-1-cyclohexanemethanol and Its Metabolites in Response to a Recent Chemical Spill in West Virginia, USA. Environ Sci Technol 49(10):6284-93 PMID:25961958
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  • Woo CH, et al. (2015) Conserved function of the lysine-based KXD/E motif in Golgi retention for endomembrane proteins among different organisms. Mol Biol Cell 26(23):4280-93 PMID:26378254
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  • Liang Q, et al. (2011) The effect of cyclodextrins on the ethanol tolerance of microorganisms suggests potential application. J Ind Microbiol Biotechnol 38(6):753-6 PMID:21431889
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  • Tao R, et al. (2011) Xbp1-mediated histone H4 deacetylation contributes to DNA double-strand break repair in yeast. Cell Res 21(11):1619-33 PMID:21467995
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  • Gao C, et al. (2010) Global transcription engineering of brewer's yeast enhances the fermentation performance under high-gravity conditions. Appl Microbiol Biotechnol 87(5):1821-7 PMID:20461507
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  • Souid AK, et al. (2006) ELM1 is required for multidrug resistance in Saccharomyces cerevisiae. Genetics 173(4):1919-37 PMID:16751665
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  • Milgrom E, et al. (2005) TFIID and Spt-Ada-Gcn5-acetyltransferase functions probed by genome-wide synthetic genetic array analysis using a Saccharomyces cerevisiae taf9-ts allele. Genetics 171(3):959-73 PMID:16118188
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  • Gao C, et al. (2004) On the mechanism of constitutive Pdr1 activator-mediated PDR5 transcription in Saccharomyces cerevisiae: evidence for enhanced recruitment of coactivators and altered nucleosome structures. J Biol Chem 279(41):42677-86 PMID:15294907
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