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Biochemistry, Genetics and Molecular Biology
Poly ADP Ribose Polymerase
100%
Homologous Recombination
80%
Cancer Cell
60%
DNA Repair
58%
Mycobacterium Tuberculosis
57%
Telomere
57%
Enzyme
51%
DNA Damage
44%
Ligase
38%
Telomere Homeostasis
38%
Single-Stranded DNA
38%
Polyketide Synthase
38%
Genome Instability
38%
Adenosine Monophosphate
35%
Chromatin
30%
Genomics
23%
DNA Damage Response
21%
DNA Synthesis
21%
Immunofluorescence
21%
CRISPR/Cas9
19%
Gene Interaction
19%
Lipid Homeostasis
19%
Macrophage
19%
Functional Divergence
19%
RAD52
19%
Ferroptosis
19%
Cell Death
19%
Genetics
19%
Erethism
19%
Flow Cytometry
19%
Proteomics
19%
Chromatin Accessibility
19%
Alkaloids Biosynthesis
19%
Aegle Marmelos
19%
Cancer Model
19%
Chromosome
19%
Acyl-CoA
18%
Double-Strand DNA Break
16%
CRISPR
16%
Anabolism
14%
Programmed Cell Death
14%
PRC1
12%
MDC1
12%
Lipid
12%
Extract
12%
DNA Repair Protein
12%
Deficiency
11%
Genetic Screen
11%
Nucleosome
10%
Deoxyribonuclease I
9%
Keyphrases
PARP Inhibitors (PARPi)
100%
Homologous Recombination Deficiency
41%
Ovarian Cancer
40%
Homologous Recombination
39%
Cancer Cells
38%
Telomere
35%
Replication Stress
33%
In Cancer
32%
Mycobacterium Tuberculosis (M. tb)
30%
Alamar Blue Assay
28%
Anti-TB
28%
Chromatin
27%
Telomere Shortening
25%
Genomic Instability
25%
Homology-directed Repair
25%
Polyketides
24%
DNA Repair
23%
Type III Polyketide Synthase
23%
Base Damage
23%
Repair Pathway
23%
Single-stranded DNA (ssDNA)
22%
Immunofluorescence
22%
Response Predictors
21%
DNA Damage
19%
Functional Flexibility
19%
DNA Damage Response
19%
SAR Information
19%
SLX4
19%
Non-canonical
19%
ATR Inhibition
19%
Quinoline Alkaloids
19%
Aegle Marmelos
19%
Antituberculosis Agents
19%
Anti-TB Activity
19%
Absolute Configuration Assignment
19%
Mycobacterial Respiration
19%
ALC1
19%
Inhibitor Response
19%
Recent Advances
19%
Cancer Model
19%
Electron Carrier
19%
Abasic Site
19%
Cas9 Protein
19%
53BP1
19%
Fatty acyl-AMP Ligase
19%
Alkaloid Biosynthesis
19%
RPA2
19%
Biosynthetic Enzymes
19%
Genetic Interaction
19%
Natural Compounds
19%