2019
DOI: 10.1089/mdr.2018.0300
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Novel Point Mutations in cyp51A and cyp51B Genes Associated with Itraconazole and Posaconazole Resistance in Aspergillus clavatus Isolates

Abstract: Aspergillus clavatus is a common environmental species known to cause occupational allergic disease in grain handlers. We have recently observed azole-resistant isolates of this fungus as a cause of onychomycosis. To further characterize the cause of resistance, the genes encoding 14 a-sterol demethylase enzyme (cyp51A and cyp51B) were characterized and analyzed in 9 ITC-susceptible isolates and 6 isolates with high minimum inhibitory concentrations (MICs) of clinical (nail and sputum) and environmental A. cla… Show more

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Cited by 22 publications
(20 citation statements)
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“…Several mechanisms have been shown to be involved in nondermatophyte pathogenic fungi. These include the overexpression of the gene encoding lanosterol-14α-demethylase ( erg11 in Candida , cyp51A in Aspergillus ), or its variant (23, 3133), and the overexpression of several multidrug efflux transporters (31, 3338). We found in T.…”
Section: Discussionmentioning
confidence: 99%
“…Several mechanisms have been shown to be involved in nondermatophyte pathogenic fungi. These include the overexpression of the gene encoding lanosterol-14α-demethylase ( erg11 in Candida , cyp51A in Aspergillus ), or its variant (23, 3133), and the overexpression of several multidrug efflux transporters (31, 3338). We found in T.…”
Section: Discussionmentioning
confidence: 99%
“…Although VRC induced CYP51A mRNA expression in both Nk994 (group I) and Nk2781 (group II) to a similar extent, the CYP51A expression levels were consistently higher throughout the 4 h induction period (1.6-to 2.2-fold) in Nk2781 (Figure 6A). The ∼6,500-fold increased CYP51A mRNA expression levels suggest that, like in A. fumigatus (Abastabar et al, 2019) and the plant fungal pathogen F. graminearum (Liu et al, 2011;Fan et al, 2013), CYP51A of N. keratoplastica is also a key player in the observed azole resistance phenotype of FSSC species. Sterol biosynthesis of Saccharomycotina species like S. cerevisiae or C. albicans is regulated by the sterol regulatory zinccluster TF Upc2 (Yang et al, 2015;Popp et al, 2017).…”
Section: Cyp51a Cyp51b Cyp51cmentioning
confidence: 99%
“…This is despite the fact that most FSSC isolates show relatively low VRC susceptibilities with the majority (369 of 555; 66%) exhibiting a minimum growth inhibitory concentration for VRC (MIC VRC ) of ≥8 mg/l (Espinel-Ingroff et al, 2016). Unlike most other Ascomycetes that have only one CYP51 gene, moulds of the Pezizomycotina clade have two CYP51 paralogues (CYP51A and CYP51B) (Brillowska-Dabrowska et al, 2015;Ruan et al, 2017;Abastabar et al, 2019), and Fusarium and Neocosmospora species also have a third CYP51 paralogue, CYP51C (Liu et al, 2011;Fan et al, 2013). In A. fumigatus, modifications of CYP51A are major contributors to azole resistance (Chowdhary et al, 2017).…”
Section: Introductionmentioning
confidence: 99%
“…Four mutations of A. flavus CYP51C (S196F, A324P, N423D and V465M) are correlated with voriconazole resistance (Sharma et al, 2018). For A. clavatus CYP51A, E483K and P486S mutations may narrow the azole transport and therefore confer lower susceptibility (Abastabar et al, 2019). As for A. terreus and related species, M217T and M217V mutations of CYP51Ap was found correlating with posaconazole resistance (Zoran et al, 2018).…”
Section: Cyp51-related Drug Resistancementioning
confidence: 99%