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Nuclease

  • Restriction Endonucleases

    Restriction Endonucleases

  • Phosphate Steering by Flap Endonuclease 1 Promotes 50-flap Specificity and Incision to Prevent Genome Instability

    Phosphate Steering by Flap Endonuclease 1 Promotes 50-flap Specificity and Incision to Prevent Genome Instability

  • S1 Nuclease Degrades Single-Stranded Nucleic Acids, Releasing 5'-Phosphoryl Mono- Or Oligonucleotides

    S1 Nuclease Degrades Single-Stranded Nucleic Acids, Releasing 5'-Phosphoryl Mono- Or Oligonucleotides

  • FAN1 Nuclease Activity Affects CAG Expansion and Age at Onset of Huntington's Disease

    FAN1 Nuclease Activity Affects CAG Expansion and Age at Onset of Huntington's Disease

  • Structure and Function of Nucleases in DNA Repair: Shape, Grip and Blade of the DNA Scissors

    Structure and Function of Nucleases in DNA Repair: Shape, Grip and Blade of the DNA Scissors

  • Restriction Enzymes of Bac- Base Teria Combat Foreign Substances

    Restriction Enzymes of Bac- Base Teria Combat Foreign Substances

  • Restriction Endonucleases

    Restriction Endonucleases

  • Biology of DNA Restriction THOMAS A

    Biology of DNA Restriction THOMAS A

  • Genetic Insight Into the Domain Structure and Functions of Dicer-Type Ribonucleases

    Genetic Insight Into the Domain Structure and Functions of Dicer-Type Ribonucleases

  • KIAA1018/FAN1 Nuclease Protects Cells Against Genomic Instability Induced by Interstrand Cross-Linking Agents

    KIAA1018/FAN1 Nuclease Protects Cells Against Genomic Instability Induced by Interstrand Cross-Linking Agents

  • Recbcd Enzyme “Chi Recognition” Mutants Recognize Chi Recombination Hotspots in the Right DNA Context

    Recbcd Enzyme “Chi Recognition” Mutants Recognize Chi Recombination Hotspots in the Right DNA Context

  • Staphylococcal Nuclease

    Staphylococcal Nuclease

  • Dicer Is Required for Chromosome Segregation and Gene Silencing in Fission Yeast Cells

    Dicer Is Required for Chromosome Segregation and Gene Silencing in Fission Yeast Cells

  • The Purification and Characterization of a Ribonuclease from Bovine Aorta

    The Purification and Characterization of a Ribonuclease from Bovine Aorta

  • Mechanism of Action of Ribonuclease H Isolated from Avian Myeloblastosis Virus and Escherichia Coli* (RNA-Dependent DNA Polymerase/Processive Exonuclease/E

    Mechanism of Action of Ribonuclease H Isolated from Avian Myeloblastosis Virus and Escherichia Coli* (RNA-Dependent DNA Polymerase/Processive Exonuclease/E

  • Christian B. Anfinsen

    Christian B. Anfinsen

  • Exonuclease Activity and Removal of Bulky

    Exonuclease Activity and Removal of Bulky

  • FAN1, a DNA Repair Nuclease, As a Modifier of Repeat Expansion Disorders

    FAN1, a DNA Repair Nuclease, As a Modifier of Repeat Expansion Disorders

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  • Nuclease Inactivation with Proteinase K TD-P Date: 3/6/2019
  • Ribonuclease H, an Unexploited Target for Antiviral Intervention Against HIV and Hepatitis B Virus T
  • Biochemical Characterization of FAN1 Nuclease
  • Mechanism of Holliday Junction Resolution by the Human GEN1 Protein
  • Using CRISPR-Cas9 As a Restriction Enzyme
  • Interactions of Mutant and Wild-Type Flap Endonucleases with Oligonucleotide Substrates Suggest an Alternative Model of DNA Binding
  • Regulation of the Nucleic Acid-Sensing Toll-Like Receptors
  • Alteration of Χ Recognition by Recbcd Reveals a Regulated Molecular Latch and Suggests a Channel-Bypass Mechanism for Biological Control
  • Chimeric Restriction Endonuclease
  • Chi Hotspot Control of Recbcd Helicase-Nuclease by Long-Range
  • Dicer Substrate Rnai Design
  • A Comprehensive Analysis of Precursor Microrna Cleavage by Human Dicer
  • Datasheet for Exonuclease T (M0265; Lot 0031303)
  • Regulation of Homologous Recombination: Chi Inactivates Recbcd Enzyme by Disassembly of the Three Subunits
  • In Vitro Nuclease Detection
  • HS-Nuclease, Recombinant Endonuclease
  • Structural and Biochemical Characterization of Human GEN1 Holliday Junction Resolvase
  • Nuclease Resistance of DNA Nanostructures


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