Showing 61 - 80 results of 645 for search '"DNA replication"', query time: 0.07s Refine Results
  1. 61

    Rapid high-resolution measurement of DNA replication timing by droplet digital PCR by Batrakou, D, Heron, E, Nieduszynski, C

    Published 2018
    “…Here, we use droplet digital PCR to study DNA replication timing at multiple loci in budding yeast and human cells. …”
    Journal article
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    Understanding the role of C16orf72 in the DNA replication stress response by Kosmin, J

    Published 2022
    Subjects: “…DNA replication…”
    Thesis
  4. 64

    Cohesin-Mediated Genome Architecture Does Not Define DNA Replication Timing Domains by Oldach, P, Nieduszynski, C

    Published 2019
    “…3D genome organization is strongly predictive of DNA replication timing in mammalian cells. This work tested the extent to which loop-based genome architecture acts as a regulatory unit of replication timing by using an auxin-inducible system for acute cohesin ablation. …”
    Journal article
  5. 65

    Mitogenic growth signalling, DNA replication licensing, and survival are linked in prostate cancer. by Dudderidge, T, McCracken, SR, Loddo, M, Fanshawe, T, Kelly, J, Neal, D, Leung, H, Williams, G, Stoeber, K

    Published 2007
    “…In this study we have investigated linkages between the MEK5/ERK5 pathway and DNA replication licensing during prostate carcinogenesis. …”
    Journal article
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    Modularity of the Bacterial Cell Cycle Enables Independent Spatial and Temporal Control of DNA Replication by Jonas, Kristina, Chen, Y. Erin, Chen, Y. Erin, Laub, Michael T., Laub, Michael T

    Published 2014
    “…DNA replication control involves DnaA, which promotes initiation, and CtrA, which silences initiation. …”
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    Article
  11. 71

    Nutritional Control of DNA Replication Initiation through the Proteolysis and Regulated Translation of DnaA by Leslie, David J., Heinen, Christian, Schramm, Frederic D., Aakre, Christopher David, Murray, Sean M., Laub, Michael T., Jonas, Kristina, Thuring, Marietta

    Published 2015
    “…Instead, we demonstrate that decreased nutrient availability downregulates dnaA translation by a mechanism involving the 5' untranslated leader region of the dnaA transcript; Lon-dependent proteolysis of DnaA then outpaces synthesis, leading to the elimination of DnaA and the arrest of DNA replication. Our results demonstrate how regulated translation and constitutive degradation provide cells a means of precisely and rapidly modulating the concentration of key regulatory proteins in response to environmental inputs.…”
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    Article
  12. 72

    Adefovir dipivoxil induces DNA replication stress and augments ATR inhibitor-related cytotoxicity by Patel, A, Seraia, E, Ebner, D, Ryan, AJ

    Published 2020
    “…ATR delays cell cycle progression and prevents DNA replication fork collapse, which prohibits cell death and promotes proliferation. …”
    Journal article
  13. 73

    Replication stress and chromatin context link ATM activation to a role in DNA replication. by Olcina, M, Foskolou, I, Anbalagan, S, Senra, J, Pires, I, Jiang, Y, Ryan, A, Hammond, E

    Published 2013
    “…Most significantly, we describe a stress-specific role for ATM in maintaining DNA replication rates in a background of increased H3K9me3. …”
    Journal article
  14. 74

    PCNA directs type 2 RNase H activity on DNA replication and repair substrates. by Bubeck, D, Reijns, M, Graham, S, Astell, K, Jones, E, Jackson, A

    Published 2011
    “…Mutation in RNASEH2 causes Aicardi-Goutières syndrome, an auto-inflammatory disorder that may arise from nucleic acid byproducts generated during DNA replication. Here, we report the crystal structures of Archaeoglobus fulgidus RNase HII in complex with PCNA, and human PCNA bound to a C-terminal peptide of RNASEH2B. …”
    Journal article
  15. 75

    Inter-Fork Strand Annealing causes genomic deletions during the termination of DNA replication by Morrow, C, Nguyen, M, Fower, A, Wong, I, Osman, F, Bryer, C, Whitby, M

    Published 2017
    “…Problems that arise during DNA replication can drive genomic alterations that are instrumental in the development of cancers and many human genetic disorders. …”
    Journal article
  16. 76

    SPRTN protease and checkpoint kinase 1 cross-activation loop safeguards DNA replication by Halder, S, Torrecilla, I, Burkhalter, MD, Popović, M, Fielden, J, Vaz, B, Oehler, J, Pilger, D, Lessel, D, Wiseman, K, Singh, AN, Vendrell, I, Fischer, R, Philipp, M, Ramadan, K

    Published 2019
    “…Simultaneously, CHK1 full length and its N-terminal fragments phosphorylate SPRTN at the C-terminal regulatory domain, which stimulates SPRTN recruitment to chromatin to promote unperturbed DNA replication fork progression and DPC repair. Our data suggest that a SPRTN-CHK1 cross-activation loop plays a part in DNA replication and protection from DNA replication stress. …”
    Journal article
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