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Okazaki fragments

  • Teacher Notes Science Nspired

    Teacher Notes Science Nspired

  • DNA Structure and Replication Three Key Features Needed for Any Model

    DNA Structure and Replication Three Key Features Needed for Any Model

  • Processivity of DNA Polymerases: Two Mechanisms, One Goal Zvi Kelman1*, Jerard Hurwitz1 and Mike O’Donnell2

    Processivity of DNA Polymerases: Two Mechanisms, One Goal Zvi Kelman1*, Jerard Hurwitz1 and Mike O’Donnell2

  • Primer Release Is the Rate-Limiting Event in Lagging-Strand Synthesis

    Primer Release Is the Rate-Limiting Event in Lagging-Strand Synthesis

  • Junction Ribonuclease: an Activity in Okazaki Fragment Processing

    Junction Ribonuclease: an Activity in Okazaki Fragment Processing

  • DNA Polymerases at the Eukaryotic Replication Fork Thirty Years After: Connection to Cancer

    DNA Polymerases at the Eukaryotic Replication Fork Thirty Years After: Connection to Cancer

  • Plasmid Replication-Associated Single-Strand-Specific

    Plasmid Replication-Associated Single-Strand-Specific

  • Review Questions DNA Replication

    Review Questions DNA Replication

  • Bt6504 – Molecular Biology Question Bank

    Bt6504 – Molecular Biology Question Bank

  • DNA Replication

    DNA Replication

  • Single-Molecule Analysis Reveals That the Lagging Strand Increases Replisome Processivity but Slows Replication Fork Progression

    Single-Molecule Analysis Reveals That the Lagging Strand Increases Replisome Processivity but Slows Replication Fork Progression

  • DNA Replication in Prokaryotes

    DNA Replication in Prokaryotes

  • Ribonuclease H Function in Bacillus Subtilis

    Ribonuclease H Function in Bacillus Subtilis

  • Anti-POLD1 Antibody (ARG56297)

    Anti-POLD1 Antibody (ARG56297)

  • Snapshot: the Replisome Nina Y

    Snapshot: the Replisome Nina Y

  • Differential Processing of Leading- and Lagging-Strand Ends at Saccharomyces Cerevisiae Telomeres Revealed by the Absence of Rad27p Nuclease

    Differential Processing of Leading- and Lagging-Strand Ends at Saccharomyces Cerevisiae Telomeres Revealed by the Absence of Rad27p Nuclease

  • Chapter 9: DNA Replication 9.1 DNA Replication Is Semiconservative

    Chapter 9: DNA Replication 9.1 DNA Replication Is Semiconservative

  • Cycling of the Lagging Strand Replicase During Okazaki Fragment Synthesis

    Cycling of the Lagging Strand Replicase During Okazaki Fragment Synthesis

Top View
  • Distinct Mutational Signatures Characterize Concurrent Loss of Polymerase Proofreading and Mismatch Repair
  • Fine-Tuning the Chromosome Ends the Last Base of Human Telomeres
  • Folded DNA in Action: Hairpin Formation and Biological Functions in Prokaryotes David Bikard, Céline Loot, Zeynep Baharoglu, Didier Mazel
  • Altered Formation of DNA in Human Cells Treated with Inhibitors of DNA Topoisomerase II (Etoposide and Teniposide)1
  • POLE and POLD1 Pathogenic Variants in the Proofreading Domain in Papillary Thyroid Cancer
  • IGA 8/E Chapter 7
  • Solution to the 50-Year-Old Okazaki-Fragment Problem
  • Structure and Function of Primase Repb Encoded by Broad-Host
  • Enzymatic Completion of Mammalian Lagging-Strand DNA Replication JOHN J
  • • Prokaryotic DNA Replication
  • DNA Replication Through Strand Displacement During Lagging Strand DNA Synthesis in Saccharomyces Cerevisiae
  • Solution to the 50-Year-Old Okazaki-Fragment Problem
  • DNA Replication
  • Telomeres and Telomerase in Oncogenesis (Review)
  • Bio 102 Practice Problems Chromosomes and DNA Replication Multiple Choice: Unless Otherwise Directed, Circle the One Best Answer: 1
  • Stability of the Human Polymerase Δ Holoenzyme and Its Implications In
  • In Vitro Reconstitution of Thermococcus Species 9°N Okazaki Fragment Maturation 2 1 Lucia Greenough,1 Kelly M
  • Telomere End Processing: Unexpected Complexity at the End Game


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