Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
lipid A acyltransferase;polymyxin resistance operon
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| almG | Card Database | 1 | - | Vibrio cholerae O1 biovar El Tor str. N16961 | - | - | AE003852.1 | AAF94731.1 |
| AlmG | Card DatabaseReference Gene CatalogReslit | 6 | polymyxins, COLISTIN +1 | Vibrio cholerae +2 | Spain | 2017, 2022, 2024 | AE003852.1 | AAF94731.1 |
AlmG, responsible for polymyxin resistance in pandemic Vibrio cholerae, is a glycyltransferase distantly related to lipid A late acyltransferases.
The study identifies AlmG as a glycyltransferase involved in polymyxin resistance in pandemic Vibrio cholerae, demonstrating its role in modifying lipid A to reduce susceptibility to polymyxins.
AlmG, responsible for polymyxin resistance in pandemic Vibrio cholerae, is a glycyltransferase distantly related to lipid A late acyltransferases.
AlmG, responsible for polymyxin resistance in pandemic Vibrio cholerae, is a glycyltransferase distantly related to lipid A late acyltransferases.
Prediction of Antibiotic Susceptibility Profiles of Vibrio cholerae Isolates From Whole Genome Illumina and Nanopore Sequencing Data: CholerAegon.
The study presents CholerAegon, a bioinformatics pipeline for predicting antimicrobial resistance profiles from whole genome sequencing data of Vibrio cholerae. It identifies AMR genes such as dfrA1, sul2, catB9, and floR, and detects mutations like D476N in parE that contribute to fluoroquinolone resistance.
Non-toxigenic cases of Vibrio cholerae in Spain from 2012 to 2022.
The study identified several antimicrobial resistance genes in non-toxigenic non-O1/non-O139 Vibrio cholerae isolates from Spain, including blaCARB-9, varG, almE, almF, almG, and CRP. Additionally, a mutation in the parE gene (D476N) was found to be associated with resistance.
Loop-mediated isothermal amplification assays for the detection of antimicrobial resistance elements in Vibrio cholera.
The study presents LAMP assays targeting AMR genes in Vibrio cholerae, including aph(6), varG, floR, qnrVC5, and almG, which confer resistance to aminoglycosides, penicillins/carbapenems, phenicol antibiotics, fluoroquinolones, and polymyxins, respectively.
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