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Mouse Models as Tools to Explore Cytidine-to-Uridine RNA Editing
Soo Jin Cho
,
Valerie Blanc
,
Nicholas O. Davidson
Division of Gastroenterology
Roy and Diana Vagelos Division of Biology & Biomedical Sciences (DBBS)
Institute of Clinical and Translational Sciences (ICTS)
Siteman Cancer Center
Bursky Center for Human Immunology & Immunotherapy Programs (CHiiPs)
Department of Medicine
Center of Regenerative Medicine
Rheumatic Diseases Research Resource-Based Center
DBBS - Molecular Cell Biology
DBBS - Biomedical Informatics and Data Science
DBBS - Biochemistry, Biophysics, and Structural Biology
Research output
:
Chapter in Book/Report/Conference proceeding
›
Chapter
›
peer-review
6
Scopus citations
Overview
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Keyphrases
Mouse Model
100%
RNA Editing
100%
Uridine
100%
Cytidine
100%
Apolipoprotein B (Apo B)
42%
Lipid Metabolism
28%
Nucleotide Sequence
28%
APOBEC
28%
Gene Knockout
14%
Loss Function
14%
Cytidine Deaminase
14%
C-to-U Editing
14%
Rodent Models
14%
Holoenzyme
14%
Metabolic
14%
Gain-of-function
14%
ApoB48
14%
Epigenetic Regulation
14%
Deamination
14%
ApoB100
14%
Lipid Transport
14%
Genetic Plasticity
14%
Function Approach
14%
Alternative Protein
14%
A-to-I
14%
Transgenic Knock-out
14%
Generic Class
14%
Biochemistry, Genetics and Molecular Biology
Mouse Model
100%
RNA Editing
100%
Cytidine
100%
Uridine
100%
Apolipoprotein B
42%
RNA
28%
Nucleotide Sequence
28%
Lipid Metabolism
14%
Genetics
14%
Transgenics
14%
Gene Targeting
14%
Gene Knockout
14%
DNA Template
14%
Isoform
14%
Cytidine Deaminase
14%
Genetic Regulation
14%
Deamination
14%
Lipid Transport
14%
Genomics
14%
Lipid Metabolism
14%
Immunology and Microbiology
Mouse Model
100%
RNA Editing
100%
Apolipoprotein B
42%
Lipid Metabolism
28%
Nucleotide Sequence
28%
Ribonucleic Acid
28%
Transgenics
14%
Gene Targeting
14%
Gene Knockout
14%
DNA Template
14%
Genetic Regulation
14%
Deamination
14%
Lipid Transport
14%