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  • Author: Agmon N
  • References

Author: Agmon N


References 15 references


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  • Luo J, et al. (2023) Synthetic chromosome fusion: Effects on mitotic and meiotic genome structure and function. Cell Genom 3(11):100439 PMID:38020967
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  • Zhao Y, et al. (2023) Debugging and consolidating multiple synthetic chromosomes reveals combinatorial genetic interactions. Cell 186(24):5220-5236.e16 PMID:37944511
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  • Goldberg GW, et al. (2021) Engineered dual selection for directed evolution of SpCas9 PAM specificity. Nat Commun 12(1):349 PMID:33441553
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  • Agmon N, et al. (2020) Phylogenetic debugging of a complete human biosynthetic pathway transplanted into yeast. Nucleic Acids Res 48(1):486-499 PMID:31745563
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  • Billerbeck S, et al. (2018) A scalable peptide-GPCR language for engineering multicellular communication. Nat Commun 9(1):5057 PMID:30498215
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  • Xie ZX, et al. (2018) Rapid and Efficient CRISPR/Cas9-Based Mating-Type Switching of Saccharomyces cerevisiae. G3 (Bethesda) 8(1):173-183 PMID:29150593
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  • Agmon N, et al. (2017) Low escape-rate genome safeguards with minimal molecular perturbation of Saccharomyces cerevisiae. Proc Natl Acad Sci U S A 114(8):E1470-E1479 PMID:28174266
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  • Agmon N, et al. (2015) Yeast Golden Gate (yGG) for the Efficient Assembly of S. cerevisiae Transcription Units. ACS Synth Biol 4(7):853-9 PMID:25756291
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  • Cai Y, et al. (2015) Intrinsic biocontainment: multiplex genome safeguards combine transcriptional and recombinational control of essential yeast genes. Proc Natl Acad Sci U S A 112(6):1803-8 PMID:25624482
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  • Mitchell LA, et al. (2015) Versatile genetic assembly system (VEGAS) to assemble pathways for expression in S. cerevisiae. Nucleic Acids Res 43(13):6620-30 PMID:25956652
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  • Annaluru N, et al. (2014) Total synthesis of a functional designer eukaryotic chromosome. Science 344(6179):55-8 PMID:24674868
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  • Agmon N, et al. (2013) Effect of nuclear architecture on the efficiency of double-strand break repair. Nat Cell Biol 15(6):694-9 PMID:23644470
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  • Agmon N, et al. (2011) The role of Holliday junction resolvases in the repair of spontaneous and induced DNA damage. Nucleic Acids Res 39(16):7009-19 PMID:21609961
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  • Ben-Aroya S, et al. (2010) Proteasome nuclear activity affects chromosome stability by controlling the turnover of Mms22, a protein important for DNA repair. PLoS Genet 6(2):e1000852 PMID:20174551
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  • Agmon N, et al. (2009) Analysis of repair mechanism choice during homologous recombination. Nucleic Acids Res 37(15):5081-92 PMID:19553188
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