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  • Author: Seeber A
  • References

Author: Seeber A


References 19 references


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  • Hurst V, et al. (2024) Loss of cytoplasmic actin filaments raises nuclear actin levels to drive INO80C-dependent chromosome fragmentation. Nat Commun 15(1):9910 PMID:39548059
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  • Challa K, et al. (2021) Damage-induced chromatome dynamics link Ubiquitin ligase and proteasome recruitment to histone loss and efficient DNA repair. Mol Cell 81(4):811-829.e6 PMID:33529595
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  • Forey R, et al. (2021) A Role for the Mre11-Rad50-Xrs2 Complex in Gene Expression and Chromosome Organization. Mol Cell 81(1):183-197.e6 PMID:33278361
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  • Cheblal A, et al. (2020) DNA Damage-Induced Nucleosome Depletion Enhances Homology Search Independently of Local Break Movement. Mol Cell 80(2):311-326.e4 PMID:32970994
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  • Shaban HA and Seeber A (2020) Monitoring global chromatin dynamics in response to DNA damage. Mutat Res 821:111707 PMID:32505939
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  • Marcomini I, et al. (2018) Asymmetric Processing of DNA Ends at a Double-Strand Break Leads to Unconstrained Dynamics and Ectopic Translocation. Cell Rep 24(10):2614-2628.e4 PMID:30184497
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  • Seeber A, et al. (2018) Chromosome Dynamics in Response to DNA Damage. Annu Rev Genet 52:295-319 PMID:30208290
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  • Deshpande I, et al. (2017) Structural Basis of Mec1-Ddc2-RPA Assembly and Activation on Single-Stranded DNA at Sites of Damage. Mol Cell 68(2):431-445.e5 PMID:29033322
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  • Hauer MH, et al. (2017) Histone degradation in response to DNA damage enhances chromatin dynamics and recombination rates. Nat Struct Mol Biol 24(2):99-107 PMID:28067915
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  • Poli J, et al. (2016) Mec1, INO80, and the PAF1 complex cooperate to limit transcription replication conflicts through RNAPII removal during replication stress. Genes Dev 30(3):337-54 PMID:26798134
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  • Seeber A, et al. (2016) RPA Mediates Recruitment of MRX to Forks and Double-Strand Breaks to Hold Sister Chromatids Together. Mol Cell 64(5):951-966 PMID:27889450
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  • Horigome C, et al. (2015) Visualizing the spatiotemporal dynamics of DNA damage in budding yeast. Methods Mol Biol 1292:77-96 PMID:25804749
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  • Hustedt N, et al. (2015) Yeast PP4 interacts with ATR homolog Ddc2-Mec1 and regulates checkpoint signaling. Mol Cell 57(2):273-89 PMID:25533186
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  • Seeber A, et al. (2014) Remodelers move chromatin in response to DNA damage. Cell Cycle 13(6):877-8 PMID:24552812
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  • Dion V, et al. (2013) Cohesin and the nucleolus constrain the mobility of spontaneous repair foci. EMBO Rep 14(11):984-91 PMID:24018421
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  • Seeber A, et al. (2013) Nucleosome remodelers in double-strand break repair. Curr Opin Genet Dev 23(2):174-84 PMID:23352131
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  • Seeber A, et al. (2013) Checkpoint kinases and the INO80 nucleosome remodeling complex enhance global chromatin mobility in response to DNA damage. Genes Dev 27(18):1999-2008 PMID:24029917
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  • Shimada K, et al. (2013) TORC2 signaling pathway guarantees genome stability in the face of DNA strand breaks. Mol Cell 51(6):829-39 PMID:24035500
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  • Chen J, et al. (2012) Identification of a small molecule yeast TORC1 inhibitor with a multiplex screen based on flow cytometry. ACS Chem Biol 7(4):715-22 PMID:22260433
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