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  • Author: Qi H
  • References

Author: Qi H


References 21 references


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  • Nešić N, et al. (2024) Automated segmentation of cell organelles in volume electron microscopy using deep learning. Microsc Res Tech 87(8):1718-1732 PMID:38501891
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  • Zhao M, et al. (2024) Engineering strategies for enhanced heterologous protein production by Saccharomyces cerevisiae. Microb Cell Fact 23(1):32 PMID:38247006
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  • Xu P, et al. (2023) Morusin and mulberrin extend the lifespans of yeast and C. elegans via suppressing nutrient-sensing pathways. Geroscience 45(2):949-964 PMID:36462128
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  • Cai M, et al. (2022) De novo biosynthesis of p-coumaric acid and caffeic acid from carboxymethyl-cellulose by microbial co-culture strategy. Microb Cell Fact 21(1):81 PMID:35538542
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  • Qi H, et al. (2022) Developing Multi-Copy Chromosomal Integration Strategies for Heterologous Biosynthesis of Caffeic Acid in Saccharomyces cerevisiae. Front Microbiol 13:851706 PMID:35300487
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  • Cai M, et al. (2021) Improving the Level of the Tyrosine Biosynthesis Pathway in Saccharomyces cerevisiae through HTZ1 Knockout and Atmospheric and Room Temperature Plasma (ARTP) Mutagenesis. ACS Synth Biol 10(1):49-62 PMID:33395268
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  • Jia B, et al. (2019) Author Correction: Precise control of SCRaMbLE in synthetic haploid and diploid yeast. Nat Commun 10(1):839 PMID:30765692
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  • Liu D, et al. (2019) Constructing Yeast Chimeric Pathways To Boost Lipophilic Terpene Synthesis. ACS Synth Biol 8(4):724-733 PMID:30779549
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  • Cheng L, et al. (2018) Cell Lysate Microarray for Mapping the Network of Genetic Regulators for Histone Marks. Mol Cell Proteomics 17(9):1720-1736 PMID:29871872
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  • Jia B, et al. (2018) Precise control of SCRaMbLE in synthetic haploid and diploid yeast. Nat Commun 9(1):1933 PMID:29789567
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  • Wu XL, et al. (2017) Genome-wide landscape of position effects on heterogeneous gene expression in Saccharomyces cerevisiae. Biotechnol Biofuels 10:189 PMID:28729884
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  • Liu D, et al. (2016) Multigene Pathway Engineering with Regulatory Linkers (M-PERL). ACS Synth Biol 5(12):1535-1545 PMID:27389125
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  • Concha NO, et al. (2015) Long-Range Inhibitor-Induced Conformational Regulation of Human IRE1α Endoribonuclease Activity. Mol Pharmacol 88(6):1011-23 PMID:26438213
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  • Lin Q, et al. (2015) Robust orthogonal recombination system for versatile genomic elements rearrangement in yeast Saccharomyces cerevisiae. Sci Rep 5:15249 PMID:26477943
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  • Wang Z, et al. (2011) Fractal kinetic analysis of polymers/nonionic surfactants to eliminate lignin inhibition in enzymatic saccharification of cellulose. Bioresour Technol 102(3):2890-6 PMID:21093257
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  • Qi H, et al. (2008) TOR regulates cell death induced by telomere dysfunction in budding yeast. PLoS One 3(10):e3520 PMID:18949037
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  • Hars ES, et al. (2007) Autophagy regulates ageing in C. elegans. Autophagy 3(2):93-5 PMID:17204841
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  • Zhang Y, et al. (2007) The role of autophagy in mitochondria maintenance: characterization of mitochondrial functions in autophagy-deficient S. cerevisiae strains. Autophagy 3(4):337-46 PMID:17404498
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  • Qi H, et al. (2003) Inactivation of Cdc13p triggers MEC1-dependent apoptotic signals in yeast. J Biol Chem 278(17):15136-41 PMID:12569108
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  • Zhou JQ, et al. (2002) Schizosaccharomyces pombe pfh1+ encodes an essential 5' to 3' DNA helicase that is a member of the PIF1 subfamily of DNA helicases. Mol Biol Cell 13(6):2180-91 PMID:12058079
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  • Qi H and Zakian VA (2000) The Saccharomyces telomere-binding protein Cdc13p interacts with both the catalytic subunit of DNA polymerase alpha and the telomerase-associated est1 protein. Genes Dev 14(14):1777-88 PMID:10898792
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