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  • Author: Gnugnoli M
  • References

Author: Gnugnoli M


References 11 references


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  • Colombo CV, et al. (2024) Functional and molecular insights into the role of Sae2 C-terminus in the activation of MRX endonuclease. Nucleic Acids Res 52(22):13849-13864 PMID:39558159
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  • Pizzul P, et al. (2024) Rif2 interaction with Rad50 counteracts Tel1 functions in checkpoint signalling and DNA tethering by releasing Tel1 from MRX binding. Nucleic Acids Res 52(5):2355-2371 PMID:38180815
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  • Casari E, et al. (2023) The PP2A phosphatase counteracts the function of the 9-1-1 axis in checkpoint activation. Cell Rep 42(11):113360 PMID:38007689
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  • Casari E, et al. (2022) To Fix or Not to Fix: Maintenance of Chromosome Ends Versus Repair of DNA Double-Strand Breaks. Cells 11(20) PMID:36291091
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  • Colombo S, et al. (2022) Fast detection of PKA activity in Saccharomyces cerevisiae cell population using AKAR fluorescence resonance energy transfer probes. Cell Signal 92:110262 PMID:35093533
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  • Pizzul P, et al. (2022) The DNA damage checkpoint: A tale from budding yeast. Front Genet 13:995163 PMID:36186482
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  • Casari E, et al. (2021) Dpb4 promotes resection of DNA double-strand breaks and checkpoint activation by acting in two different protein complexes. Nat Commun 12(1):4750 PMID:34362907
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  • Gnugnoli M, et al. (2021) The chromatin remodeler Chd1 supports MRX and Exo1 functions in resection of DNA double-strand breaks. PLoS Genet 17(9):e1009807 PMID:34520455
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  • Colombo CV, et al. (2020) How do cells sense DNA lesions? Biochem Soc Trans 48(2):677-691 PMID:32219379
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  • Casari E, et al. (2019) Processing of DNA Double-Strand Breaks by the MRX Complex in a Chromatin Context. Front Mol Biosci 6:43 PMID:31231660
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  • Gobbini E, et al. (2015) Sae2 Function at DNA Double-Strand Breaks Is Bypassed by Dampening Tel1 or Rad53 Activity. PLoS Genet 11(11):e1005685 PMID:26584331
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