Fluconazole induces ROS in Cryptococcus neoformans and contributes to DNA damage in vitro.
Congyue Annie PengAndrea A E GaertnerSarah Ana HenriquezDiana FangRodney J Colon-ReyesJulia L BrumaghimLukasz KozubowskiPublished in: PloS one (2018)
Pathogenic basidiomycetous yeast, Cryptococcus neoformans, causes fatal meningitis in immunocompromised individuals. Fluconazole (FLC) is a fungistatic drug commonly administered to treat cryptococcosis. Unfortunately, FLC-resistant strains characterized by various degree of chromosomal instability were isolated from clinical patients. Importantly, the underlying mechanisms that lead to chromosomal instability in FLC-treated C. neoformans remain elusive. Previous studies in fungal and mammalian cells link chromosomal instability to the reactive oxygen species (ROS). This study provides the evidence that exposure of C. neoformans to FLC induces accumulation of intracellular ROS, which correlates with plasma membrane damage. FLC caused transcription changes of oxidative stress related genes encoding superoxide dismutase (SOD1), catalase (CAT3), and thioredoxin reductase (TRR1). Strikingly, FLC contributed to an increase of the DNA damage in vitro, when complexed with iron or copper in the presence of hydrogen peroxide. Strains with isogenic deletion of copper response protein metallothionein were more susceptible to FLC. Addition of ascorbic acid (AA), an anti-oxidant at 10 mM, reduced the inhibitory effects of FLC. Consistent with potential effects of FLC on DNA integrity and chromosomal segregation, FLC treatment led to elevated transcription of RAD54 and repression of cohesin-encoding gene SCC1. We propose that FLC forms complexes with metals and contributes to elevated ROS, which may lead to chromosomal instability in C. neoformans.
Keyphrases
- dna damage
- reactive oxygen species
- oxidative stress
- hydrogen peroxide
- copy number
- dna repair
- cell death
- escherichia coli
- nitric oxide
- candida albicans
- newly diagnosed
- gene expression
- ejection fraction
- genome wide
- ischemia reperfusion injury
- drinking water
- diabetic rats
- emergency department
- signaling pathway
- cell free
- cerebrospinal fluid
- nucleic acid
- protein protein
- smoking cessation
- oxide nanoparticles