INIS
yeasts
100%
codons
85%
fission
78%
proteins
71%
rna polymerases
64%
synthesis
57%
control
50%
modifications
50%
levels
42%
chlorides
42%
transfer rna
42%
tools
42%
cell division
42%
phosphorylation
42%
serine
42%
regulations
42%
genes
35%
purification
35%
mutants
35%
defects
28%
mitosis
28%
phenotype
28%
genetics
28%
polymerases
21%
hypothesis
21%
transcription
21%
substrates
21%
increasing
21%
range
21%
elongation
21%
growth
14%
ploidy
14%
glutamine
14%
nematodes
14%
ribosomes
14%
inactivation
14%
lysine
14%
kinases
14%
cleavage
7%
messenger-rna
7%
membranes
7%
hatching
7%
splicing
7%
biology
7%
processing
7%
length
7%
nitrocellulose
7%
food
7%
extraction
7%
detection
7%
Keyphrases
Genome Integrity
42%
Proteome-wide
42%
Transfer RNA Modification
42%
Reciprocal Regulation
42%
Mercuric Chloride
42%
RNA Polymerase II CTD
42%
Translational Control
42%
Complex Signal
42%
Nutrient-dependent
42%
Diapause
42%
Elongator
42%
Thiolase
42%
TORC2
25%
TRNA Thiolation
21%
Biochemical Tools
21%
Synthetic Procedures
21%
CDR2
14%
Anticodon
14%
Thiolation
14%
Quantitative Dot Blot
10%
Yeast Protein
10%
Yeast mutant
10%
Genetic Background
10%
Large-scale Extraction
10%
Two-stage Protocol
10%
Protein Expression Profiling
10%
Global Protein Expression
10%
Growth Conditions
10%
Round Shape
8%
Misreading
7%
Ploidy
7%
Codon
7%
Trans-splicing
7%
3′ End Processing
7%
Cytokinesis Defect
7%
Codon Usage
7%
Nutritional Control
7%
Central Regulator
7%
Codon Usage Bias
7%
Yeast Proteome
7%
Codon-anticodon Interaction
7%
Frameshift
7%
Glutamine
7%
Nematodes
7%
Modified nucleosides
7%
Genomic Instability
7%
Biochemistry, Genetics and Molecular Biology
Copurification
64%
Codon
64%
Transfer RNA
64%
Diapause
42%
Polyacrylamide Gel Electrophoresis
42%
Anticodon
42%
Mammalian Target of Rapamycin Complex 1
28%
Proteome
21%
Biological Phenomena and Functions Concerning the Entire Organism
21%
Genetics
21%
RNA Polymerase II
21%
Fission Yeast
21%
Polymerase
21%
Budding Yeast
21%
Codon Usage
21%
Eukaryote
21%
Transcription
21%
Nematode
14%
Nitrocellulose
10%
Genetic Background
10%