Biochemistry, Genetics and Molecular Biology
Adaptation
50%
Carbon Metabolism
100%
Citric Acid Cycle
50%
DNA Methylation
50%
DNA Replication
50%
Energy Metabolism
50%
Epigenetics
50%
Gene Expression
50%
Heterotetramer
50%
IDH1
50%
IDH2
50%
Isocitrate Dehydrogenase
50%
Methionine
50%
Mouse Model
50%
Mutation
50%
Nucleotide
50%
Oxidative Phosphorylation
50%
Periodicity
50%
Regulatory Mechanism
50%
Reprogramming
50%
S-Adenosyl Methionine
50%
Sample
50%
Serine Hydroxymethyltransferase
100%
Upregulation
50%
INIS
availability
25%
brain
25%
cancer
25%
carbon
100%
comparative evaluations
25%
dehydrogenases
25%
deregulation
25%
dna
25%
dna replication
25%
energy
25%
genes
25%
glioblastomas
100%
gliomas
25%
interactions
25%
losses
25%
metabolism
100%
methionine
50%
methylation
25%
mice
25%
mitochondria
25%
mutations
25%
nucleotides
25%
oxidation
25%
patients
25%
phosphorylation
25%
regulations
50%
serine
50%
tissues
25%
Neuroscience
Brain
50%
DNA Methylation
50%
DNA Replication
50%
Energy Metabolism
50%
Epigenetics
50%
Gene Expression
50%
Glioma
50%
IDH2
50%
Isocitrate Dehydrogenase 1
50%
Isocitrate Dehydrogenase 2
50%
Methionine
50%
Nucleotide
50%
Oxidative Phosphorylation
50%
Reprogramming
50%
S Adenosylmethionine
50%