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  • Author: Paddon CJ
  • References

Author: Paddon CJ


References 12 references


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  • Tsegaye Y, et al. (2023) Coproduction of Phase-Separated Carotenoids and β-Farnesene as a Yeast Biomass Valorization Strategy. ACS Synth Biol 12(10):2934-2946 PMID:37721978
    • SGD Paper
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  • Paddon CJ and Keasling JD (2014) Semi-synthetic artemisinin: a model for the use of synthetic biology in pharmaceutical development. Nat Rev Microbiol 12(5):355-67 PMID:24686413
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  • Paddon CJ, et al. (2013) High-level semi-synthetic production of the potent antimalarial artemisinin. Nature 496(7446):528-32 PMID:23575629
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  • Nijkamp JF, et al. (2012) De novo sequencing, assembly and analysis of the genome of the laboratory strain Saccharomyces cerevisiae CEN.PK113-7D, a model for modern industrial biotechnology. Microb Cell Fact 11:36 PMID:22448915
    • SGD Paper
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  • Westfall PJ, et al. (2012) Production of amorphadiene in yeast, and its conversion to dihydroartemisinic acid, precursor to the antimalarial agent artemisinin. Proc Natl Acad Sci U S A 109(3):E111-8 PMID:22247290
    • SGD Paper
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  • Tsuruta H, et al. (2009) High-level production of amorpha-4,11-diene, a precursor of the antimalarial agent artemisinin, in Escherichia coli. PLoS One 4(2):e4489 PMID:19221601
    • SGD Paper
    • DOI full text
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  • Ro DK, et al. (2008) Induction of multiple pleiotropic drug resistance genes in yeast engineered to produce an increased level of anti-malarial drug precursor, artemisinic acid. BMC Biotechnol 8:83 PMID:18983675
    • SGD Paper
    • DOI full text
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  • Hughes WE, et al. (1999) Mutations in the Saccharomyces cerevisiae gene SAC1 cause multiple drug sensitivity. Yeast 15(11):1111-24 PMID:10455234
    • SGD Paper
    • DOI full text
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  • Bushman JL, et al. (1993) Guanine nucleotide exchange factor for eukaryotic translation initiation factor 2 in Saccharomyces cerevisiae: interactions between the essential subunits GCD2, GCD6, and GCD7 and the regulatory subunit GCN3. Mol Cell Biol 13(8):4618-31 PMID:8336705
    • SGD Paper
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  • Foiani M, et al. (1991) GCD2, a translational repressor of the GCN4 gene, has a general function in the initiation of protein synthesis in Saccharomyces cerevisiae. Mol Cell Biol 11(6):3203-16 PMID:2038326
    • SGD Paper
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  • Paddon CJ and Hinnebusch AG (1989) gcd12 mutations are gcn3-dependent alleles of GCD2, a negative regulator of GCN4 in the general amino acid control of Saccharomyces cerevisiae. Genetics 122(3):543-50 PMID:2668116
    • SGD Paper
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  • Paddon CJ, et al. (1989) Amino acid sequence similarity between GCN3 and GCD2, positive and negative translational regulators of GCN4: evidence for antagonism by competition. Genetics 122(3):551-9 PMID:2668117
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