Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
tetracycline inactivation enzyme
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| tet(37) | Card DatabaseResFinder Database | 2 | TETRACYCLINE | uncultured bacterium | - | 2003 | AF540889.1 | AAN28721.1 |
| Tet(37) | Card DatabaseReference Gene CatalogResFinder DatabaseReslit | 5 | tetracycline, TETRACYCLINE | Escherichia coli +2 | North America | 2003, 2025 | AF540889 | AAN28721.1 |
| tet37 | Reslit | 2 | tetracycline | Bacteroides ovatus ELH-B2 +1 | - | 2018, 2023 | NZ_CP012938 | - |
Novel tetracycline resistance determinant from the oral metagenome.
A novel tetracycline resistance gene, tet(37), was identified and characterized from the oral metagenome, showing resistance in E. coli with an MIC of 30 μg/ml aerobically.
Novel tetracycline resistance determinant from the oral metagenome.
Novel tetracycline resistance determinant from the oral metagenome.
Novel tetracycline resistance determinant from the oral metagenome.
Novel tetracycline resistance determinant from the oral metagenome.
Pilot Safety Evaluation of a Novel Strain of Bacteroides ovatus.
The study identified several antibiotic resistance genes in Bacteroides ovatus ELH-B2, including those conferring resistance to tetracycline, erythromycin, aminoglycosides, macrolides, and other antibiotics. These genes were validated through minimum inhibitory concentration (MIC) tests.
Resistome Analysis in the Digestive Tract of Food-Producing Animals
The study identifies tetW and mefA as highly expressed tetracycline and macrolide resistance genes in the rumen of beef cattle, highlighting their significance in the resistome of food-producing animals.
Impact of doxycycline post-exposure prophylaxis for sexually transmitted infections on the gut microbiome and antimicrobial resistome.
The study found that doxy-PEP use over 6 months significantly increased the proportion and expression of tetracycline resistance genes in the gut microbiome, with no significant changes in other antibiotic resistance gene classes.
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