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The RAD6 DNA Damage Tolerance Pathway Operates Uncoupled from the  Replication Fork and Is Functional Beyond S Phase: Cell
The RAD6 DNA Damage Tolerance Pathway Operates Uncoupled from the Replication Fork and Is Functional Beyond S Phase: Cell

Inhibition of Human DNA Polymerases Eta and Kappa by Indole-Derived  Molecules Occurs through Distinct Mechanisms | ACS Chemical Biology
Inhibition of Human DNA Polymerases Eta and Kappa by Indole-Derived Molecules Occurs through Distinct Mechanisms | ACS Chemical Biology

Cryo-EM structure of human Pol κ bound to DNA and mono-ubiquitylated PCNA |  Nature Communications
Cryo-EM structure of human Pol κ bound to DNA and mono-ubiquitylated PCNA | Nature Communications

2.0 Å resolution crystal structure of human polκ reveals a new catalytic  function of N-clasp in DNA replication | Scientific Reports
2.0 Å resolution crystal structure of human polκ reveals a new catalytic function of N-clasp in DNA replication | Scientific Reports

An Overview of Y-Family DNA Polymerases and a Case Study of Human DNA  Polymerase η | Biochemistry
An Overview of Y-Family DNA Polymerases and a Case Study of Human DNA Polymerase η | Biochemistry

DNA polymerase - Wikipedia
DNA polymerase - Wikipedia

Structure of human Pol κ. (A) Human DNA Pol κ contains 870 amino acids... |  Download Scientific Diagram
Structure of human Pol κ. (A) Human DNA Pol κ contains 870 amino acids... | Download Scientific Diagram

Molecules | Free Full-Text | Mammalian DNA Polymerase Kappa Activity and  Specificity
Molecules | Free Full-Text | Mammalian DNA Polymerase Kappa Activity and Specificity

The fidelity of DNA synthesis by eukaryotic replicative and translesion  synthesis polymerases | Cell Research
The fidelity of DNA synthesis by eukaryotic replicative and translesion synthesis polymerases | Cell Research

Structural basis of accurate replication beyond a bulky major  benzo[a]pyrene adduct by human DNA polymerase kappa - ScienceDirect
Structural basis of accurate replication beyond a bulky major benzo[a]pyrene adduct by human DNA polymerase kappa - ScienceDirect

IJMS | Free Full-Text | Plant DNA Polymerases
IJMS | Free Full-Text | Plant DNA Polymerases

Translesion polymerase kappa-dependent DNA synthesis underlies replication  fork recovery | eLife
Translesion polymerase kappa-dependent DNA synthesis underlies replication fork recovery | eLife

In vivo evidence that DNA polymerase kappa is responsible for error-free  bypass across DNA cross-links induced by mitomycin C - ScienceDirect
In vivo evidence that DNA polymerase kappa is responsible for error-free bypass across DNA cross-links induced by mitomycin C - ScienceDirect

Structural Basis for Human DNA Polymerase Kappa to Bypass Cisplatin  Intrastrand Cross-Link (Pt-GG) Lesion as an Efficient and Accurate Extender  - ScienceDirect
Structural Basis for Human DNA Polymerase Kappa to Bypass Cisplatin Intrastrand Cross-Link (Pt-GG) Lesion as an Efficient and Accurate Extender - ScienceDirect

Steric gate residues of Y-family DNA polymerases DinB and pol kappa are  crucial for dNTP-induced conformational change - ScienceDirect
Steric gate residues of Y-family DNA polymerases DinB and pol kappa are crucial for dNTP-induced conformational change - ScienceDirect

Molecules | Free Full-Text | Mammalian DNA Polymerase Kappa Activity and  Specificity
Molecules | Free Full-Text | Mammalian DNA Polymerase Kappa Activity and Specificity

Kinetic Mechanism of DNA Polymerases: Contributions of Conformational  Dynamics and a Third Divalent Metal Ion | Chemical Reviews
Kinetic Mechanism of DNA Polymerases: Contributions of Conformational Dynamics and a Third Divalent Metal Ion | Chemical Reviews

Frontiers | Within and Beyond the Nucleotide Addition Cycle of Viral RNA-dependent  RNA Polymerases
Frontiers | Within and Beyond the Nucleotide Addition Cycle of Viral RNA-dependent RNA Polymerases

Global landscape of replicative DNA polymerase usage in the human genome |  Nature Communications
Global landscape of replicative DNA polymerase usage in the human genome | Nature Communications

Human DNA Polymerase κ Encircles DNA: Implications for Mismatch Extension  and Lesion Bypass: Molecular Cell
Human DNA Polymerase κ Encircles DNA: Implications for Mismatch Extension and Lesion Bypass: Molecular Cell

Figures and data in Translesion polymerase kappa-dependent DNA synthesis  underlies replication fork recovery | eLife
Figures and data in Translesion polymerase kappa-dependent DNA synthesis underlies replication fork recovery | eLife

DNA polymerase lambda - Wikipedia
DNA polymerase lambda - Wikipedia

DNA polymerase - Wikipedia
DNA polymerase - Wikipedia

Translesion polymerase kappa-dependent DNA synthesis underlies replication  fork recovery | eLife
Translesion polymerase kappa-dependent DNA synthesis underlies replication fork recovery | eLife

Rad18-dependent SUMOylation of human specialized DNA polymerase eta is  required to prevent under-replicated DNA | Nature Communications
Rad18-dependent SUMOylation of human specialized DNA polymerase eta is required to prevent under-replicated DNA | Nature Communications

A role for DNA polymerase θ in the timing of DNA replication | Nature  Communications
A role for DNA polymerase θ in the timing of DNA replication | Nature Communications

DNA polymerases and human disease | Nature Reviews Genetics
DNA polymerases and human disease | Nature Reviews Genetics