Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
type B chloramphenicol O-acetyltransferase CatB10
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| CatB10 | Card DatabaseReference Gene CatalogResFinder DatabaseReslit | 5 | CHLORAMPHENICOL, phenicols | Pseudomonas aeruginosa +2 | Europe | 2010, 2021 | AJ878850.1 | CAI47810.1 |
| catB10 | Card DatabaseResFinder Database | 2 | CHLORAMPHENICOL | Pseudomonas aeruginosa | - | - | FJ495083.1 | ACL13298.1 |
Metallo-β-lactamase expression confers an advantage to Pseudomonas aeruginosa isolates compared with other β-lactam resistance mechanisms, favoring the prevalence of metallo-β-lactamase producers in a clinical environment.
Metallo-β-lactamase expression confers an advantage to Pseudomonas aeruginosa isolates compared with other β-lactam resistance mechanisms, favoring the prevalence of metallo-β-lactamase producers in a clinical environment.
Achromobacter spp. genetic adaptation in cystic fibrosis.
The study identifies various beta-lactamase genes (blaOXA-258, blaOXA-114, blaOXA-243, blaOXA-455, blaOXA-457, blaOXA-458, blaOXA-459) and the catB10 gene conferring chloramphenicol resistance in Achromobacter spp. Additionally, the axyZ gene is highlighted as a key factor in multidrug resistance.
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