Browse AMR Genes
Explore antimicrobial resistance genes from the literature
Explore antimicrobial resistance genes from the literature
beta-lactamase
Overview
| Allele | Database | Papers | Drug Classes | Organisms | Countries | Years | Sequence Accession | Protein Accession |
|---|---|---|---|---|---|---|---|---|
| blaMUS-1 | Card DatabaseReference Gene CatalogResFinder DatabaseReslit | 8 | carbapenems, cephalosporins +10 | Myroides odoratimimus +2 | China, Mexico | 2002, 2017, 2020, 2024 | AF441286|AF441287 | AAN63647.1 |
| blaMUS-2 | Card DatabaseReference Gene CatalogReslit | 3 | carbapenems, cephalosporins +2 | Myroides odoratimimus +1 | Lebanon | 2015 | KP658209 | AKN19901.1 |
| blaMUS-3 | Reslit | 1 | carbapenems | Myroides odoratimimus | China | 2020 | MT364441 | - |
Chromosome-encoded beta-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes.
The study identifies and characterizes two chromosome-encoded beta-lactamases, TUS-1 and MUS-1, from Myroides odoratus and Myroides odoratimimus, which confer resistance to various beta-lactam antibiotics including carbapenems, cephalosporins, and penicillins.
Chromosome-encoded beta-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes.
Chromosome-encoded beta-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes.
Chromosome-encoded beta-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes.
Chromosome-encoded beta-lactamases TUS-1 and MUS-1 from Myroides odoratus and Myroides odoratimimus (formerly Flavobacterium odoratum), new members of the lineage of molecular subclass B1 metalloenzymes., Characterization and Identification of a novel chromosome-encoded metallo-β-lactamase WUS-1 in Myroides albus P34.
MUS-2, a novel variant of the chromosome-encoded beta-lactamase MUS-1, from Myroides odoratimimus.
The study identifies a novel variant of the chromosome-encoded beta-lactamase MUS-1, designated MUS-2, which confers resistance to carbapenems, extended-spectrum cephalosporins, and penicillins in Myroides odoratimimus.
MUS-2, a novel variant of the chromosome-encoded β-lactamase MUS-1, from Myroides odoratimimus.
MUS-2, a novel variant of the chromosome-encoded β-lactamase MUS-1, from Myroides odoratimimus.
Myroides odoratimimus Forms Structurally Complex and Inherently Antibiotic-Resistant Biofilm in a Wound-Like in vitro Model.
The study identified the overexpression of gyrA, acrB, and MUS-1 genes in Myroides odoratimimus during the transition from planktonic to biofilm lifestyle, contributing to antibiotic resistance.
Molecular Epidemiology of Myroides odoratimimus in Nosocomial Catheter-Related Infection at a General Hospital in China.
The study identified two variants of the blaMUS gene, blaMUS-1 and blaMUS-3, in Myroides odoratimimus isolates, which confer resistance to carbapenems. The blaMUS-3 variant includes a single amino acid substitution (V60A).
Molecular Epidemiology of Myroides odoratimimus in Nosocomial Catheter-Related Infection at a General Hospital in China.
The study identified two variants of the blaMUS gene, blaMUS-1 and blaMUS-3, in Myroides odoratimimus isolates, which confer resistance to carbapenems. The blaMUS-3 variant includes a single amino acid substitution (V60A).
Myroides species, pathogenic spectrum and clinical microbiology sight in Mexican isolates.
The study identified multiple AMR genes in Myroides spp. isolates, including beta-lactamases (blaIMP-27, blaIMP-35, blaGOB-16, blaMUS-1, blaOXA-229, blaOXA-351, blaOXA-97), erythromycin esterase (ereB), and polymyxin resistance genes (mcr-3.6, mcr-3.7, mcr-3.10), indicating a high level of multidrug resistance.
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