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Molecular identification of pseudouridine-metabolizing enzymes
Alice Preumont
, Karim Snoussi
, Vincent Stroobant
, Jean François Collet
, Emile Van Schaftingen
Research output
:
Contribution to journal
›
Article
›
peer-review
31
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Scopus citations
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Immunology and Microbiology
Glycoside Hydrolase
100%
Kinase
100%
Phosphotransferase
100%
Wild Type
50%
Escherichia coli
50%
Eukaryote
50%
Urinary Tract
50%
Infectious Disease
50%
Transcriptomics
50%
Operon
50%
Uropathogenic Escherichia Coli
50%
Thermotoga Maritima
50%
Infection
50%
Ribonucleic Acid
50%
Keyphrases
Metabolic Enzymes
100%
Molecular Identification
100%
Pseudouridine
100%
Phosphate
35%
C-C Bond
21%
Multifunctional Protein
14%
Glycosidase
14%
Escherichia Coli
7%
Human Urine
7%
Metabolism
7%
Degradation Products
7%
Urinary Tract Infection
7%
Nucleosides
7%
Uracil
7%
Eukaryotes
7%
Ribose-5-phosphate
7%
Divalent Cations
7%
Operon
7%
Thermotoga Maritima
7%
UTI89
7%
Principal-agent
7%
Ind-AS
7%
Uropathogenic Escherichia Coli
7%
Gene Encoding
7%
Transcriptomic Data
7%
Pharmacology, Toxicology and Pharmaceutical Science
Enzymes
100%
Pseudouridine
100%
Base
14%
Phosphotransferase
14%
Glycosidase
14%
Escherichia coli
7%
Urinary Tract Infection
7%
Nucleoside
7%
Uracil
7%
Divalent Cation
7%
Ribose 5 Phosphate
7%
Eukaryote
7%
Uropathogenic Escherichia Coli
7%
Thermotoga Maritima
7%