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Biochemistry, Genetics and Molecular Biology
Induced Stem Cells
100%
Embryonic Stem Cell
100%
Human Induced Pluripotent Stem Cell
100%
Proteomics
100%
Hydroxylation
100%
Proline
71%
Mass Spectrometry
64%
RNA Polymerase II
50%
Transcription
50%
DNA Synthesis
50%
Hydrophilic Interaction Chromatography
50%
Chromatin
50%
Procollagen-Proline Dioxygenase
31%
Disease Modeling
30%
Mitochondrial Protein
30%
Peptide
30%
Prometaphase
21%
Phosphoprotein Phosphatase
21%
phosphorylation
21%
Metabolic Pathway
20%
Cell Cycle
15%
Reprogramming
15%
Proteome
15%
Protein Content
15%
Growth Factor
15%
Mitochondrial Respiration
15%
Fibroblast
15%
Glutamine
14%
Nucleosome
14%
Histone H3
14%
Chromosome
14%
Protein Expression
7%
Lipogenesis
7%
Replisome
7%
DNA Repair
7%
Adenosine Triphosphate
7%
Steady State
7%
Transcription Factors
7%
Histone Modification
7%
Histone Methyltransferase
7%
Epigenomics
7%
Epigenetics
7%
Cell Viability
7%
Centromere
7%
Chromosome Arm
7%
Hypoxia-Inducible Factors
7%
Enzyme
7%
Isoform
7%
Cell Death
7%
Protein Serine/Threonine Phosphatase
7%
Binding Site
7%
Oxygen Sensing
7%
Cell Cycle M Phase
7%
Wild Type
7%
Short Linear Motif
7%
Mitosis
7%
Expression Level
7%
Small Interfering RNA
7%
Lipid Droplet Formation
7%
Retention Time
5%
Proteasome Inhibitor
5%
Protein Phosphatase 1
5%
Liquid Chromatography-Mass Spectrometry
5%
RNA
5%
Amino Acids
5%
Cell Cycle Regulation
5%
RNA Splicing
5%
Hydrophile
5%
Keyphrases
Induced Stem Cells
100%
Induced Pluripotent Stem Cells (iPSCs)
50%
Human-induced
50%
Embryonic Stem Cells
50%
Proteomic Comparison
50%
Functional Comparison
50%
Human Embryo
50%
RepoMan
50%
CDCA2
50%
Hydroxylation
50%
PHD1
50%
Mitotic Progression
50%
Human Embryonic Stem Cells (hESCs)
37%
Mitochondrial Proteins
12%
Cytoplasmic Proteins
12%
Disease Modeling
12%
Prolyl Hydroxylase
11%
Proline Hydroxylation
11%
Protein Phosphatase 2A (PP2A)
11%
Transcription-replication Conflicts
10%
Roxadustat
8%
Hydroxylated Proline
8%
Phosphorylation
7%
Chromosome Alignment
7%
Prometaphase
7%
Mitochondrial Potential
6%
Secreted Proteins
6%
Potential Gains
6%
Mitochondrial Metabolism
6%
High Growth Rate
6%
Metabolism
6%
Growth Factors
6%
Nutrient Transporters
6%
Metabolic Proteins
6%
Regenerative Medicine
6%
Proteome
6%
Transporter Proteins
6%
Cell Cycle Profile
6%
Total Protein Content
6%
Potential Risk
6%
High-resolution Respirometry
6%
Immune System
6%
ECM Components
6%
Cell Phenotype
6%
Ethical Issues
6%
Cell nucleus
6%
Lipid Synthesis
6%
Proteomics Data
6%
Lipid Droplet Formation
6%
Phenotypic Differences
6%
Glutamine Uptake
6%
Expression Level
6%
Protein Expression
6%
Component Factor
6%
Metabolic Changes
6%
Glutamine Transporter
6%
Human Fibroblasts
6%
Therapeutic Applications
6%
Molecular Differences
6%
Disease Therapeutics
6%
Modeling Applications
6%