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Modeling WWOX loss of function in vivo: What have we learned?
Mayur Tanna
,
Rami I. Aqeilan
*
*
Corresponding author for this work
Department of Immunology and Cancer Research
Research output
:
Contribution to journal
›
Review article
›
peer-review
28
Scopus citations
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Dive into the research topics of 'Modeling WWOX loss of function in vivo: What have we learned?'. Together they form a unique fingerprint.
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Keyphrases
Rodents
100%
Loss Function
100%
Homeostasis
50%
Growth Retardation
50%
WW Domain
50%
In Cancer
50%
WW Domain-containing Oxidoreductase
50%
Common Fragile Sites
50%
FRA16D
50%
WWOX Gene
50%
Deregulation
50%
Physiological Homeostasis
50%
C-terminus
50%
Neuropathy
50%
Sequence Conservation
50%
Tumorigenesis
50%
Adaptor Protein
50%
Orthologues
50%
Catalytic Domain
50%
Metabolic Disorders
50%
Essential Proteins
50%
Perinatal Lethality
50%
Short-chain Dehydrogenase/reductase
50%
Family Proteins
50%
Biochemistry, Genetics and Molecular Biology
WWOX
100%
Homeostasis
28%
Oxidoreductase
28%
WW Domain
28%
C-Terminus
14%
N-Terminus
14%
Short-Chain Dehydrogenase
14%
Reductase
14%
Animal Model
14%
Protein Family
14%
Carcinogenesis
14%
Enzyme Active Site
14%
Metabolic Disorder
14%