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  • Author: Fabre E
  • References

Author: Fabre E


References 31 references


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  • Zimmer C and Fabre E (2019) Chromatin mobility upon DNA damage: state of the art and remaining questions. Curr Genet 65(1):1-9 PMID:29947969
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  • Fabre E and Zimmer C (2018) From dynamic chromatin architecture to DNA damage repair and back. Nucleus 9(1):161-170 PMID:29271297
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  • Fabre E, et al. (2014) Mannosylation of fungal glycoconjugates in the Golgi apparatus. Curr Opin Microbiol 20:103-10 PMID:24934559
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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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  • Brickner DG, et al. (2012) Transcription factor binding to a DNA zip code controls interchromosomal clustering at the nuclear periphery. Dev Cell 22(6):1234-46 PMID:22579222
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  • Zimmer C and Fabre E (2011) Principles of chromosomal organization: lessons from yeast. J Cell Biol 192(5):723-33 PMID:21383075
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  • Therizols P, et al. (2010) Chromosome arm length and nuclear constraints determine the dynamic relationship of yeast subtelomeres. Proc Natl Acad Sci U S A 107(5):2025-30 PMID:20080699
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  • Berger AB, et al. (2008) High-resolution statistical mapping reveals gene territories in live yeast. Nat Methods 5(12):1031-7 PMID:18978785
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  • Fabre E (2006) [Nuclear pore and functional organization of chromatin]. Med Sci (Paris) 22(5):483-4 PMID:16687114
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  • Fabre E, et al. (2005) Comparative genomics in hemiascomycete yeasts: evolution of sex, silencing, and subtelomeres. Mol Biol Evol 22(4):856-73 PMID:15616141
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  • Dujon B, et al. (2004) Genome evolution in yeasts. Nature 430(6995):35-44 PMID:15229592
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  • Fabre E, et al. (2002) Transcription and nuclear transport of CAG/CTG trinucleotide repeats in yeast. Nucleic Acids Res 30(16):3540-7 PMID:12177295
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