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Chromosome segregation

  • Prospects & Overviews Meiotic Versus Mitotic Recombination: Two Different

    Prospects & Overviews Meiotic Versus Mitotic Recombination: Two Different

  • 000466 SIMR REPRT Fall2k3

    000466 SIMR REPRT Fall2k3

  • Mechanisms and Regulation of Mitotic Recombination in Saccharomyces Cerevisiae

    Mechanisms and Regulation of Mitotic Recombination in Saccharomyces Cerevisiae

  • Chromosome Segregation: Learning Only When Chromosomes Are Correctly Bi-Oriented and Microtubules Exert to Let Go Tension Across Sister Kinetochores [6]

    Chromosome Segregation: Learning Only When Chromosomes Are Correctly Bi-Oriented and Microtubules Exert to Let Go Tension Across Sister Kinetochores [6]

  • Accurate Chromosome Segregation by Probabilistic Self-Organisation Yasushi Saka1*, Claudiu V

    Accurate Chromosome Segregation by Probabilistic Self-Organisation Yasushi Saka1*, Claudiu V

  • Branching Out: Meiotic Recombination and Its Regulation

    Branching Out: Meiotic Recombination and Its Regulation

  • Anaphase Bridges: Not All Natural Fibers Are Healthy

    Anaphase Bridges: Not All Natural Fibers Are Healthy

  • Sources of DNA Double-Strand Breaks and Models of Recombinational DNA Repair

    Sources of DNA Double-Strand Breaks and Models of Recombinational DNA Repair

  • ATRX and RECQ5 Define Distinct Homologous Recombination Subpathways

    ATRX and RECQ5 Define Distinct Homologous Recombination Subpathways

  • Repression of Harmful Meiotic Recombination in Centromeric Regions

    Repression of Harmful Meiotic Recombination in Centromeric Regions

  • Meiotic Recombination and Chromosome Segregation in Schizosaccharomyces Pombe

    Meiotic Recombination and Chromosome Segregation in Schizosaccharomyces Pombe

  • Chromosome Segregation in Budding Yeast: Sister Chromatid Cohesion and Related Mechanisms

    Chromosome Segregation in Budding Yeast: Sister Chromatid Cohesion and Related Mechanisms

  • Centromere Repositioning Causes Inversion of Meiosis and Generates a Reproductive Barrier

    Centromere Repositioning Causes Inversion of Meiosis and Generates a Reproductive Barrier

  • Persistent DNA Repair Signaling and DNA Polymerase Theta Promote Broken Chromosome Segregation

    Persistent DNA Repair Signaling and DNA Polymerase Theta Promote Broken Chromosome Segregation

  • Perspectives

    Perspectives

  • Synthesis-Dependent Strand Annealing in Meiosis

    Synthesis-Dependent Strand Annealing in Meiosis

  • DNA Replication Stress and Chromosomal Instability: Dangerous Liaisons

    DNA Replication Stress and Chromosomal Instability: Dangerous Liaisons

  • Synthesis-Dependent Strand Annealing in Meiosis

    Synthesis-Dependent Strand Annealing in Meiosis

Top View
  • Kinetochore-Independent Chromosome Segregation Driven by Lateral Microtubule Bundles
  • Regulation of Mitotic Exit by Cell Cycle Checkpoints: Lessons from Saccharomyces Cerevisiae
  • High-Throughput Mapping of Meiotic Crossover and Chromosome Mis- Segregation Events in Interspecific Hybrid Mice Authors: Y
  • The Genetic Analysis of Distributive Segregation Indrosophila Melanogaster
  • Centromeres Under Pressure: Evolutionary Innovation in Conflict with Conserved Function
  • Bacterial Chromosomes Under Changing Environmental Conditions
  • Meiotic Prophase Regulation and Achiasmate Chromosome Segregation in Caenorhabditis Elegans
  • Identification of Novel Drosophila Meiotic Genes Recovered in a P
  • Resolvases, Dissolvases, and Helicases in Homologous Recombination: Clearing the Road for Chromosome Segregation
  • Functional Specificity of Mutl Homologs in Yeast: Evidence For
  • Mechanical Mechanisms of Chromosome Segregation
  • Meiotic Crossing Over Between Nonhomologous Chromosomes Affects Chromosome Segregation in Yeast
  • MLH1/3 Variants Causing Aneuploidy, Pregnancy Loss, and Premature Reproductive Aging
  • Better Safe Than Sorry—Preventing Mitotic Segregation of Meiotic Chromosomes
  • Worksheet: Meiosis and Mendel's Law of Segregation
  • Centromere Clustering Stabilizes Meiotic Homolog Pairing
  • Chromosome Cohesion – Rings, Knots, Orcs and Fellowship
  • SMC5/6 Is Required for Replication Fork Stability and Faithful Chromosome


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