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PDB-101: Molecule of the Month: Cisplatin and DNA
PDB-101: Molecule of the Month: Cisplatin and DNA

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

Phosphorylation Alters the Properties of Pol η: Implications for  Translesion Synthesis - ScienceDirect
Phosphorylation Alters the Properties of Pol η: Implications for Translesion Synthesis - ScienceDirect

DNA polymerase eta: A potential pharmacological target for cancer therapy -  Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library
DNA polymerase eta: A potential pharmacological target for cancer therapy - Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library

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

Expression of the cancer-associated DNA polymerase ε P286R in fission yeast  leads to translesion synthesis polymerase dependent hypermutation and  defective DNA replication | PLOS Genetics
Expression of the cancer-associated DNA polymerase ε P286R in fission yeast leads to translesion synthesis polymerase dependent hypermutation and defective DNA replication | PLOS Genetics

Regulation of the error-prone DNA polymerase Polκ by oncogenic signaling  and its contribution to drug resistance | Science Signaling
Regulation of the error-prone DNA polymerase Polκ by oncogenic signaling and its contribution to drug resistance | Science Signaling

DNA polymerases and cancer | Nature Reviews Cancer
DNA polymerases and cancer | Nature Reviews Cancer

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

Translesion DNA synthesis in the context of cancer research | Cancer Cell  International | Full Text
Translesion DNA synthesis in the context of cancer research | Cancer Cell International | Full Text

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

Regulation of the error-prone DNA polymerase polκ by oncogenic signaling  and its contribution to drug resistance | bioRxiv
Regulation of the error-prone DNA polymerase polκ by oncogenic signaling and its contribution to drug resistance | bioRxiv

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

Frontiers | Inhibiting DNA Polymerases as a Therapeutic Intervention  against Cancer
Frontiers | Inhibiting DNA Polymerases as a Therapeutic Intervention against Cancer

DNA polymerase eta: A potential pharmacological target for cancer therapy -  Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library
DNA polymerase eta: A potential pharmacological target for cancer therapy - Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library

Unravelling roles of error-prone DNA polymerases in shaping cancer genomes  | Oncogene
Unravelling roles of error-prone DNA polymerases in shaping cancer genomes | Oncogene

DNA Polymerase Kappa Research Products: Novus Biologicals
DNA Polymerase Kappa Research Products: Novus Biologicals

Inhibition of mutagenic translesion synthesis: A possible strategy for  improving chemotherapy? | PLOS Genetics
Inhibition of mutagenic translesion synthesis: A possible strategy for improving chemotherapy? | PLOS Genetics

RCSB PDB - 6CST: Structure of human DNA polymerase kappa with DNA
RCSB PDB - 6CST: Structure of human DNA polymerase kappa with DNA

DNA polymerase beta modulates cancer progression via enhancing CDH13  expression by promoter demethylation | Oncogene
DNA polymerase beta modulates cancer progression via enhancing CDH13 expression by promoter demethylation | Oncogene

Inhibition of mutagenic translesion synthesis: A possible strategy for  improving chemotherapy? | PLOS Genetics
Inhibition of mutagenic translesion synthesis: A possible strategy for improving chemotherapy? | PLOS Genetics

DNA polymerase eta: A potential pharmacological target for cancer therapy -  Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library
DNA polymerase eta: A potential pharmacological target for cancer therapy - Saha - 2021 - Journal of Cellular Physiology - Wiley Online Library

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

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

Translesion polymerase eta both facilitates DNA replication and promotes  increased human genetic variation at common fragile sites | PNAS
Translesion polymerase eta both facilitates DNA replication and promotes increased human genetic variation at common fragile sites | PNAS

A Small-Molecule Inhibitor of Human DNA Polymerase η Potentiates the  Effects of Cisplatin in Tumor Cells | Biochemistry
A Small-Molecule Inhibitor of Human DNA Polymerase η Potentiates the Effects of Cisplatin in Tumor Cells | Biochemistry

Frontiers | Inhibiting DNA Polymerases as a Therapeutic Intervention  against Cancer
Frontiers | Inhibiting DNA Polymerases as a Therapeutic Intervention against Cancer

IJMS | Free Full-Text | Detours to Replication: Functions of Specialized  DNA Polymerases during Oncogene-induced Replication Stress
IJMS | Free Full-Text | Detours to Replication: Functions of Specialized DNA Polymerases during Oncogene-induced Replication Stress