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Nick (DNA)

  • (NAP) and Illustration of DNA Flexure Angles at Single Molecule Resolution Debayan Purkait†A, Debolina Bandyopadhyay†A, and Padmaja P

    (NAP) and Illustration of DNA Flexure Angles at Single Molecule Resolution Debayan Purkait†A, Debolina Bandyopadhyay†A, and Padmaja P

  • Cell Cycle Regulation by the Bacterial Nucleoid

    Cell Cycle Regulation by the Bacterial Nucleoid

  • Catalytic Domain of Plasmid Pad1 Relaxase Trax Defines a Group Of

    Catalytic Domain of Plasmid Pad1 Relaxase Trax Defines a Group Of

  • Relaxation Complexes of Plasmids Colel and Cole2:Unique Site of The

    Relaxation Complexes of Plasmids Colel and Cole2:Unique Site of The

  • S Na P S H O T: D N a Mism a Tc H R E P a Ir

    S Na P S H O T: D N a Mism a Tc H R E P a Ir

  • Effects of Abasic Sites and DNA Single-Strand Breaks on Prokaryotic RNA Polymerases (Apurinic/Apyrimidinic Sites/Transcription/DNA Damage) WEI ZHOU* and PAUL W

    Effects of Abasic Sites and DNA Single-Strand Breaks on Prokaryotic RNA Polymerases (Apurinic/Apyrimidinic Sites/Transcription/DNA Damage) WEI ZHOU* and PAUL W

  • DNA Structure at the Plasmid Origin-Of-Transfer Indicates Its

    DNA Structure at the Plasmid Origin-Of-Transfer Indicates Its

  • Enzymatic Completion of Mammalian Lagging-Strand DNA Replication JOHN J

    Enzymatic Completion of Mammalian Lagging-Strand DNA Replication JOHN J

  • Can a Nick Promote Partial Genome Re-Replication?

    Can a Nick Promote Partial Genome Re-Replication?

  • Direct Observation of Topoisomerase IA Gate Dynamics Maria Mills1, Yuk-Ching Tse-Dinh2,3, & Keir C

    Direct Observation of Topoisomerase IA Gate Dynamics Maria Mills1, Yuk-Ching Tse-Dinh2,3, & Keir C

  • The Devil Is in the Details for DNA Mismatch Repair COMMENTARY

    The Devil Is in the Details for DNA Mismatch Repair COMMENTARY

  • Nickseq for Genome-Wide Strand-Specific Identification of DNA Single- Strand Break Sites with Single Nucleotide Resolution

    Nickseq for Genome-Wide Strand-Specific Identification of DNA Single- Strand Break Sites with Single Nucleotide Resolution

  • Mechanism of Type IA Topoisomerases

    Mechanism of Type IA Topoisomerases

  • Activation of the T-DNA Transfer Process in Agrobacterium Results

    Activation of the T-DNA Transfer Process in Agrobacterium Results

  • Nick-Seq for Single-Nucleotide Resolution Genomic Maps of DNA

    Nick-Seq for Single-Nucleotide Resolution Genomic Maps of DNA

  • How the Cell Deals with DNA Nicks

    How the Cell Deals with DNA Nicks

  • Architecture of the Escherichia Coli Nucleoid

    Architecture of the Escherichia Coli Nucleoid

  • Nuclease-Hypersensitive Regions in Chromosomes (Active Genes/Nuclease-Hypersensitive!Cleavage) M

    Nuclease-Hypersensitive Regions in Chromosomes (Active Genes/Nuclease-Hypersensitive!Cleavage) M

Top View
  • Anticancer DNA Intercalators Cause P53-Dependent Mitochondrial DNA Nucleoid Re-Modelling
  • Chapter 9: DNA Replication 9.1 DNA Replication Is Semiconservative
  • A Novel Mutation in DNA Topoisomerase I of Yeast Causes DNA Damage and RAD9-Dependent Cell Cycle Arrest
  • Containing Abasic Sites and Nicks M
  • Characterization of a Relaxase Belonging to The
  • ENZYMOLOGY of DNA REPLICATION - I
  • Topoisomerase 1 (Top1)-Associated Genome Instability in Yeast: Effects of Persistent
  • Efficient Repair of All Types of Single-Base Mismatches
  • Structures of DNA-Bound Human Ligase IV Catalytic Core Reveal Insights Into Substrate Binding and Catalysis
  • Enzymatic Completion of Mammalian Lagging-Strand DNA Replication JOHN J
  • • Prokaryotic DNA Replication
  • Mapping the Active-Site Tyrosine of Vaccinia Virus DNA Topoisomerase I
  • Relaxase (Tral) of Incpa Plasmid RP4 Catalyzes a Site-Specific
  • Mutsa Maintains the Mismatch Repair Capability by Inhibiting PCNA
  • DNA PACKAGING in ISOLATED BACTERIAL NUCLEOIDS (Chromosomes, DNA Tertiary Structure, Nucleoids, DNA Folding, DNA Supercoiling, Nascent RNA, Membrane-DNA)
  • Discovery of a New Family of Relaxases in Firmicutes Bacteria
  • Catenation and Knotting of Duplex DNA by Type1
  • Gene 5.5 Protein of Bacteriophage T7 in Complex with Escherichia Coli Nucleoid Protein H-NS and Transfer RNA Masks Transfer RNA Priming in T7 DNA Replication


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