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  • Author: He H
  • References

Author: He H


References 24 references


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  • Tang Y, et al. (2025) The influencing mechanisms of different characteristics of polystyrene microplastics on Saccharomyces cerevisiae: functional group, particle size and dosage. Environ Technol 1-14 PMID:40324336
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  • Fan X, et al. (2024) Characterizing interactions of endoplasmic reticulum resident proteins in situ through the YST-PPI method. Biotechnol J 19(8):e2400346 PMID:39212204
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  • Hong J, et al. (2024) An integrative temperature-controlled microfluidic system for budding yeast heat shock response analysis at the single-cell level. Lab Chip 24(15):3658-3667 PMID:38915274
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  • Yan Y, et al. (2023) Water extract from Ligusticum chuanxiong delays the aging of Saccharomyces cerevisiae via improving antioxidant activity. Heliyon 9(8):e19027 PMID:37600358
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  • Zhao Y, et al. (2022) Artificial intelligence-assisted cryoEM structure of Bfr2-Lcp5 complex observed in the yeast small subunit processome. Commun Biol 5(1):523 PMID:35650250
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  • Chen XF, et al. (2021) Antifungal Susceptibility Profiles and Resistance Mechanisms of Clinical Diutina catenulata Isolates With High MIC Values. Front Cell Infect Microbiol 11:739496 PMID:34778103
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  • He H, et al. (2021) Effect of Issatchenkia terricola WJL-G4 on Deacidification Characteristics and Antioxidant Activities of Red Raspberry Wine Processing. J Fungi (Basel) 8(1) PMID:35049959
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  • Yu G, et al. (2019) Yeast R2TP Interacts with Extended Termini of Client Protein Nop58p. Sci Rep 9(1):20228 PMID:31882871
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  • Wu X, et al. (2018) Efficient removal of atrazine from aqueous solutions using magnetic Saccharomyces cerevisiae bionanomaterial. Appl Microbiol Biotechnol 102(17):7597-7610 PMID:29909573
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  • Zhu C, et al. (2018) Preparation, performances and mechanisms of magnetic Saccharomyces cerevisiae bionanocomposites for atrazine removal. Chemosphere 200:380-387 PMID:29499518
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  • Tian S, et al. (2017) Pih1p-Tah1p Puts a Lid on Hexameric AAA+ ATPases Rvb1/2p. Structure 25(10):1519-1529.e4 PMID:28919439
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  • Zhang Y, et al. (2017) Crystal structure of the WD40 domain of human PRPF19. Biochem Biophys Res Commun 493(3):1250-1253 PMID:28962858
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  • He H, et al. (2014) Crystal structures of GCN2 protein kinase C-terminal domains suggest regulatory differences in yeast and mammals. J Biol Chem 289(21):15023-34 PMID:24719324
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  • He H and Lu YH (2013) Comparison of inhibitory activities and mechanisms of five mulberry plant bioactive components against α-glucosidase. J Agric Food Chem 61(34):8110-9 PMID:23909841
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  • Gu T, et al. (2012) Trmt112 gene expression in mouse embryonic development. Acta Histochem Cytochem 45(2):113-9 PMID:22685353
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  • Lavy T, et al. (2012) The Gal3p transducer of the GAL regulon interacts with the Gal80p repressor in its ligand-induced closed conformation. Genes Dev 26(3):294-303 PMID:22302941
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  • Singh CR, et al. (2007) Change in nutritional status modulates the abundance of critical pre-initiation intermediate complexes during translation initiation in vivo. J Mol Biol 370(2):315-30 PMID:17512538
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  • Singh CR, et al. (2005) Eukaryotic translation initiation factor 5 is critical for integrity of the scanning preinitiation complex and accurate control of GCN4 translation. Mol Cell Biol 25(13):5480-91 PMID:15964804
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  • Wang J, et al. (2005) Theoretical study toward understanding the catalytic mechanism of pyruvate decarboxylase. J Phys Chem B 109(39):18664-72 PMID:16853401
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  • Singh CR, et al. (2004) Efficient incorporation of eukaryotic initiation factor 1 into the multifactor complex is critical for formation of functional ribosomal preinitiation complexes in vivo. J Biol Chem 279(30):31910-20 PMID:15145951
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  • He H, et al. (2003) Post-translational modifications of three members of the human MAP1LC3 family and detection of a novel type of modification for MAP1LC3B. J Biol Chem 278(31):29278-87 PMID:12740394
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  • He H, et al. (2003) The yeast eukaryotic initiation factor 4G (eIF4G) HEAT domain interacts with eIF1 and eIF5 and is involved in stringent AUG selection. Mol Cell Biol 23(15):5431-45 PMID:12861028
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  • He H, et al. (2003) Crystal structure of tabtoxin resistance protein complexed with acetyl coenzyme A reveals the mechanism for beta-lactam acetylation. J Mol Biol 325(5):1019-30 PMID:12527305
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  • Shalev A, et al. (2001) Saccharomyces cerevisiae protein Pci8p and human protein eIF3e/Int-6 interact with the eIF3 core complex by binding to cognate eIF3b subunits. J Biol Chem 276(37):34948-57 PMID:11457827
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