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Keyword [DNA glycosylase]
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1. Construction Of Hypoxia Enhanced Mitochondria-targeting MPG Expression System And Its Effects On Adenocarcinoma Multidrug Resistant Cell Line
2. The Role Of Oxidative Damage And Repair Mechanisms In The Occurrence Of Aflatoxin With Primary Liver Cancer With Chemotherapy Reactivity
3. N-methylpurine DNA Glycosylase (MPG) Inhibits P53-mediated Cell Cycle Arrest And Coordinates With P53to Determine Sensitivity To Alkylating Agents
4. Exploring Of Down-regulated Expression Of HOGG1 Gene In Pathogenesis And Therapeutic Mechanism Of Lung Cancer
5. Experimental Study On Oxidative Stress Induced By Extracts Of Gasoline Engine Exhaust In Vivo And In Vitro
6. In Vitro Studys Of Oxidative Damage Induced By Sodium Arsenite
7. The Expression And Characterization Of Mycobacterium Tuberculosis DNA Repair Gene Fpg
8. Function And Regulation Of 3-Methyladenine DNA Glycosylase In Mycobacterium Tuberculosis
9. The Relationship Between Acetylated 8-Oxoguanine DNA Glycosylase 1 And Age-related Cataract
10. Altered DNA Methylation Profile Of 8-Oxoguanine DNA Glycosylase 1 In Lens Tissue From Age-Related Cataract Patients
11. The 8-Oxoguanine DNA Glycosylase 1(OGG1 ) Decreases The Vulnerability Of The Developing Brain And Heart To DNA Damage
12. The Effects Of PC-B2 On DNA Oxidative Damage And Ralated Gene Expression In AFB1- Exposured L-02 Cells
13. Expression And Function Of Thymine-DNA Glycosylase In Pancreatic Cancer
14. Studies On Inhibitor Design And Molecular Mechanism Of Metabolic Enzymes(PHGDH And PGAM1)and Thymine DNA Glycosylase
15. Polymorphisms Of UNG2 And Hepatitis B Virus In The Development Of HBV-related Liver Disease
16. Characterization Of The Regulatory Mechanism Of Cell Growth In Mycobacterium Tuberculosis
17. Characterization Of A Novel Dna Glycosylase Involved In The Repair Of Azinomycin B Induced Dna Damage
18. Thymine DNA Glycosylase Regulates Wnt Signaling In Colorectal Cancer
19. Molecular Mechanism Of APOBEC3A On The Regulation Of HIV-1 Promoter Demethylation
20. The Detection Of Human Alkyladenine DNA Glycosylase Based On The Isothermal Amplification Of Nucleic Acids
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