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Replication timing

  • How to Rule the Nucleus: Divide Et Impera

    How to Rule the Nucleus: Divide Et Impera

  • Dynamics of DNA Replication in a Eukaryotic Cell

    Dynamics of DNA Replication in a Eukaryotic Cell

  • Genome-Wide Dynamics of Replication Timing Revealed by in Vitro Models of Mouse Embryogenesis

    Genome-Wide Dynamics of Replication Timing Revealed by in Vitro Models of Mouse Embryogenesis

  • Working on Genomic Stability: from the S-Phase to Mitosis

    Working on Genomic Stability: from the S-Phase to Mitosis

  • Dimensional Space of Plant Nuclei Němečková Al

    Dimensional Space of Plant Nuclei Němečková Al

  • Replicating by the Clock

    Replicating by the Clock

  • Low Replicative Stress Triggers Cell-Type Specific Inheritable

    Low Replicative Stress Triggers Cell-Type Specific Inheritable

  • Very Late DNA Replication in the Human Cell Cycle

    Very Late DNA Replication in the Human Cell Cycle

  • Replication Timing: Evolution, Nuclear Organization and Relevance for Human Disease

    Replication Timing: Evolution, Nuclear Organization and Relevance for Human Disease

  • Replication Stress, Genomic Instability, and Replication Timing: a Complex Relationship

    Replication Stress, Genomic Instability, and Replication Timing: a Complex Relationship

  • DNA Replication Timing During Development Anticipates Transcriptional Programs and Parallels Enhancer Activation

    DNA Replication Timing During Development Anticipates Transcriptional Programs and Parallels Enhancer Activation

  • Abnormal Developmental Control of Replication-Timing Domains in Pediatric Acute Lymphoblastic Leukemia

    Abnormal Developmental Control of Replication-Timing Domains in Pediatric Acute Lymphoblastic Leukemia

  • Topologically Associating Domains and Their Long-Range Contacts Are Established During Early G1 Coincident with the Establishment of the Replication-Timing Program

    Topologically Associating Domains and Their Long-Range Contacts Are Established During Early G1 Coincident with the Establishment of the Replication-Timing Program

  • FANCD2 Binding Identifies Conserved Fragile Sites at Large Transcribed

    FANCD2 Binding Identifies Conserved Fragile Sites at Large Transcribed

  • Cyclin A2/E1 Activation Defines a Hepatocellular Carcinoma Subclass

    Cyclin A2/E1 Activation Defines a Hepatocellular Carcinoma Subclass

  • Replication Timing Regulation of Eukaryotic Replicons: Rif1 As A

    Replication Timing Regulation of Eukaryotic Replicons: Rif1 As A

  • Replication Timing and Transcriptional Control: Beyond Cause and Effect—Part III

    Replication Timing and Transcriptional Control: Beyond Cause and Effect—Part III

  • A Tool for Classifying Replication Timing Regions

    A Tool for Classifying Replication Timing Regions

Top View
  • Very Late DNA Replication in the Human Cell Cycle
  • The Heritability of Replication Problems
  • Cohesin-Mediated Genome Architecture Does Not Define DNA
  • G2 Phase Chromatin Lacks Determinants of Replication Timing
  • Spatio-Temporal Re-Organization of Replication Foci Accompanies Replication Domain Consolidation During Human Pluripotent Stem Cell Lineage Specification
  • 1 Cell-Cycle Regulated Transcription Associates with DNA Replication
  • Snapshot: Replication Timing Benjamin D
  • DNA Replication: Old Game, New Players
  • Asynchronous Replication Timing of Telomeres at Opposite Arms of Mammalian Chromosomes


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