Biochemistry, Genetics and Molecular Biology
Mitochondrial DNA
100%
DNA Polymerase
81%
Polymerase
77%
Exonuclease
48%
T7 RNA Polymerase
43%
DNA Synthesis
41%
RNA
33%
RNA Polymerase
28%
Active Site
28%
Transcription
27%
Transfer RNA
27%
Promoter Region
24%
DNA Template
24%
Processivity
23%
Crystal Structure
22%
Enzyme
19%
Helicase
19%
Adenosine Triphosphate
17%
Enterobacteria Phage T7
15%
DNA Repair
15%
N-Terminus
14%
Mitochondrial RNA
13%
Transcription Elongation
13%
Poly ADP Ribose Polymerase
13%
Transcription Factors
13%
Drug Toxicity
13%
Programmed Cell Death
13%
Binding Site
12%
Conformational Change
12%
Conformation
11%
Base Excision Repair
11%
Heteroduplex
11%
Tryptophan
10%
Mitochondrion
10%
Adenosine Monophosphate
10%
Enzyme Active Site
9%
RNA Transcription
9%
Pyrophosphate
9%
Single-Stranded DNA
7%
RNA Synthesis
7%
Reverse Transcriptase
7%
POLG
6%
Enzymatic Hydrolysis
6%
Escherichia coli
6%
Mitochondrial DNA Replication
6%
Deoxyribose
6%
DNA Transcription
6%
Cyclic Adenosine Monophosphate
6%
Zalcitabine
6%
Inhibitor of Apoptosis
6%
Keyphrases
Polymerase
75%
Human Mitochondrial DNA
55%
Mitochondrial DNA Polymerase
53%
T7 RNA Polymerase
50%
DNA Polymerase
44%
Mitochondrial DNA
37%
Exonuclease
36%
DNA Synthesis
32%
Tryptophanyl-tRNA Synthetase
30%
Active Sites
29%
Processivity
29%
Antiviral Drugs
23%
Drug Toxicity
21%
Structural Insights
20%
Elongation Complex
20%
Holoenzyme
19%
RNA-dependent RNA Polymerase (RdRP)
19%
Exonuclease Activity
19%
Replicase
18%
Mitochondrial RNA Polymerase
17%
Nucleoside Reverse Transcriptase Inhibitors
17%
Structural Mechanism
16%
Polymerase mutants
15%
Helix
15%
HIV-1 Reverse Transcriptase
14%
Strand Displacement
14%
Strand Separation
13%
RNA Transcripts
13%
Helicase Activity
13%
RNA Transcription
13%
Selective Inhibition
13%
PARP Inhibitor (PARPi)
13%
Tryptophanyl
13%
MTF-1
12%
Binding Site
11%
Mg2+
11%
DNA Template
11%
Phosphate
10%
Mitochondrial DNA Repair
10%
Mitochondrial Function
10%
Single-stranded DNA (ssDNA)
10%
Mitochondrial Transcription Factor A
10%
Single nucleotide
10%
Bacteriophage T7
10%
Human Disease
10%
Human DNA
9%
Pre-transition State
9%
Oxidative Damage
9%
Nucleotide Addition
9%
Duplex DNA
9%