| Ontology | CARD's Antibiotic Resistance Ontology |
| Accession | ARO:3009393 |
| Synonym(s) | Candidozyma auris |
| Definition | The fungal Erg11 enzyme is lanosterol demethylase belongs to the broader P450 family. The enzyme contributes directly to ergosterol synthesis pathway. Azoles target lanosterol demethylase thereby halting ergosterol production and ultimately compromises fungal cell membrane integrity. Mutations to Erg11 genes have been shown to inhibit azole activity. |
| AMR Gene Family | azole resistant fungal 14 alpha demethylase |
| Drug Class | azole antibiotic, imidazole antibiotic, triazole antifungal |
| Resistance Mechanism | antibiotic target alteration |
| Classification | 14 ontology terms | Show + process or component of antibiotic biology or chemistry + mechanism of antibiotic resistance + antibiotic target alteration [Resistance Mechanism] + mutation conferring antibiotic resistance + determinant of antibiotic resistance + antibiotic molecule + antibiotic resistance gene variant or mutant + antifungal-resistant cytochrome P450 enzyme + azole antibiotic [Drug Class] + antibiotic target + antifungal resistant fungal 14 alpha demethylase + fungal ergosterol synthesis pathway enzyme + imidazole antibiotic [Drug Class] + triazole antifungal [Drug Class] |
| Parent Term(s) | 3 ontology terms | Show + confers_resistance_to_antibiotic itraconazole [Antibiotic] + derives_from antifungal susceptible ERG11 lanosterol-14-alpha-demethylase + azole resistant fungal 14 alpha demethylase [AMR Gene Family] |
| Publications | Williamson B, et al. 2022. Antimicrob Agents Chemother 66(1):e0162421 Impact of Erg11 Amino Acid Substitutions Identified in Candida auris Clade III Isolates on Triazole Drug Susceptibility. (PMID 34633842) Rhodes J, et al. 2018. Emerg Microbes Infect 7(1):43 Genomic epidemiology of the UK outbreak of the emerging human fungal pathogen Candida auris. (PMID 29593275) |
| Curator | Description | Most Recent Edit |
|---|