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DNA polymerase
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Keyword
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DNA polymerase
RIS
0.001
(Research Intensity Score)
Papers
107
Top papers
Reactive oxygen species accelerate de novo acquisition of antibiotic resistance in E. coli
2023 · 54 citations
Manganese-Loaded pH-Responsive DNA Hydrogels Enable Tg-Guided Thyroid Tumor Targeted Magnetic Resonance Imaging
2025 · 13 citations
RPA exhaustion activates SLFN11 to eliminate cells with heightened replication stress
2026 · 6 citations
Comparison of Magnesium and Manganese Ions on the Structural and Catalytic Properties of Human DNA Polymerase Gamma
2025 · 7 citations
DNA polymerase beta connects tumorigenicity with the circadian clock in liver cancer through the epigenetic demethylation of Per1
2024 · 18 citations
MicroRNA-379-5p attenuates cancer stem cells and reduces cisplatin resistance in ovarian cancer by regulating RAD18/Polη axis
2025 · 7 citations
The Mathematical Model and Numerical Method for Thermoelectric DNA Sequencing
2026
Skiaviridae : a large DNA virus family that persistently infects thraustochytrid protists
2026
Magnesium Concentration Modulates Replication Slippage of Mesophilic and Thermophilic DNA Polymerases In Vitro
2026
Newest papers
RPA exhaustion activates SLFN11 to eliminate cells with heightened replication stress
2026 · 6 citations
The Mathematical Model and Numerical Method for Thermoelectric DNA Sequencing
2026
Skiaviridae : a large DNA virus family that persistently infects thraustochytrid protists
2026
Magnesium Concentration Modulates Replication Slippage of Mesophilic and Thermophilic DNA Polymerases In Vitro
2026
An "Iron-Sulfur Switch" for DNA Replication: The Hypothesis That Set Structural Biology Arguing
2026
DNA Polymerase beta Accelerates Cellular DNA Base Excision Repair by Suppressing Excessive PARP1 Engagement
2026
(12).Hamzah Quadruple Equivalence Principle (Energy-Mass-Information-Entropy). \(E=\frac{m\cdot c^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) :\(E=\frac{\mathcal{I}\cdot \Omega _{H}^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) \(\mathcal{I}=m\cdot \frac{c^{2}}{\Omega _{H}^{2}}\implies m\cdot c^{2}=\mathcal{I}\cdot \Omega _{H}^{2}\)
2026
(12).Hamzah Quadruple Equivalence Principle (Energy-Mass-Information-Entropy). \(E=\frac{m\cdot c^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) :\(E=\frac{\mathcal{I}\cdot \Omega _{H}^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) \(\mathcal{I}=m\cdot \frac{c^{2}}{\Omega _{H}^{2}}\implies m\cdot c^{2}=\mathcal{I}\cdot \Omega _{H}^{2}\)
2026
(12).Hamzah Quadruple Equivalence Principle (Energy-Mass-Information-Entropy). \(E=\frac{m\cdot c^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) :\(E=\frac{\mathcal{I}\cdot \Omega _{H}^{2}}{\mathcal{S}_{\text{mat}}+\epsilon _{\text{floor}}}\) \(\mathcal{I}=m\cdot \frac{c^{2}}{\Omega _{H}^{2}}\implies m\cdot c^{2}=\mathcal{I}\cdot \Omega _{H}^{2}\)
2026
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