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Novel role of serine racemase in anti-apoptosis and metabolism
Gourango Talukdar
, Ran Inoue
, Tomoyuki Yoshida
, Tetsuya Ishimoto
, Keisuke Yaku
, Takashi Nakagawa
, Hisashi Mori
Research output
:
Contribution to journal
›
Article
›
peer-review
9
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Scopus citations
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Keyphrases
Metabolism
100%
Anti-apoptosis
100%
Serine Racemase
100%
N-methyl-D-aspartate Receptor (NMDAR)
13%
Racemization
13%
Apoptosis Induction
9%
Cell Survival
9%
Cell Death Pathways
9%
Staurosporine
9%
Acetyl Coenzyme A (acetyl-CoA)
9%
Human Embryonic Kidney 293 (HEK293)
9%
Elevated Levels
9%
Threonine
4%
B-cell Lymphoma 2 (Bcl-2)
4%
Enzymatic Activity
4%
Apoptosis
4%
Protective Behavior
4%
Receptor-mediated
4%
Elimination Reactions
4%
Phosphorylation State
4%
Receptor-independent
4%
Neuronal Cell Death
4%
Intrinsic Roles
4%
Co-agonist
4%
Metabolomic Analysis
4%
High Viability
4%
Biochemistry, Genetics and Molecular Biology
Metabolic Pathway
100%
Serine Racemase
100%
Programmed Cell Death
100%
Racemization
13%
Serine
13%
Aspartic Acid
13%
Cell Survival
9%
Staurosporine
9%
Cell Death
9%
Adenosine Triphosphate
9%
Acetyl-CoA
9%
Metabolite
4%
Wild Type
4%
Agonist
4%
Enzyme Activity
4%
Bcl-2
4%
Elimination Reaction
4%
Protein Kinase B
4%
Threonine
4%
phosphorylation
4%
Immunology and Microbiology
Programmed Cell Death
100%
Serine
100%
Racemization
12%
Cell Line
8%
Cell Survival
8%
Cell Death
8%
Acetic Acid Derivative
8%
Agonist
4%
Enzyme Activity
4%
Bcl-2
4%
Elimination Reaction
4%
Metabolite
4%
Wild Type
4%
Threonine
4%
phosphorylation
4%
Pharmacology, Toxicology and Pharmaceutical Science
Racemase
100%
Serine
100%
Elimination
12%
Receptor
12%
Aspartic Acid
12%
Staurosporine
8%
Acetyl-CoA
8%
Adenosine Triphosphate
8%
Protein Kinase B
4%
Threonine
4%