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1.
Cell Rep ; 13(7): 1481-1492, 2015 Nov 17.
Article in English | MEDLINE | ID: mdl-26549450

ABSTRACT

There is an urgent need to identify new treatments for fungal infections. By combining sub-lethal concentrations of the known antifungals fluconazole, caspofungin, amphotericin B, terbinafine, benomyl, and cyprodinil with ∼3,600 compounds in diverse fungal species, we generated a deep reservoir of chemical-chemical interactions termed the Antifungal Combinations Matrix (ACM). Follow-up susceptibility testing against a fluconazole-resistant isolate of C. albicans unveiled ACM combinations capable of potentiating fluconazole in this clinical strain. We used chemical genetics to elucidate the mode of action of the antimycobacterial drug clofazimine, a compound with unreported antifungal activity that synergized with several antifungals. Clofazimine induces a cell membrane stress for which the Pkc1 signaling pathway is required for tolerance. Additional tests against additional fungal pathogens, including Aspergillus fumigatus, highlighted that clofazimine exhibits efficacy as a combination agent against multiple fungi. Thus, the ACM is a rich reservoir of chemical combinations with therapeutic potential against diverse fungal pathogens.


Subject(s)
Antifungal Agents/pharmacology , Clofazimine/pharmacology , Candida albicans/drug effects , Cryptococcus neoformans/drug effects , Drug Combinations , Drug Synergism , Microbial Sensitivity Tests , Saccharomyces cerevisiae/drug effects , Schizosaccharomyces/drug effects
2.
Nat Commun ; 6: 6757, 2015 Apr 07.
Article in English | MEDLINE | ID: mdl-25849373

ABSTRACT

Cryptococcus neoformans causes life-threatening meningoencephalitis in humans, but its overall biological and pathogenic regulatory circuits remain elusive, particularly due to the presence of an evolutionarily divergent set of transcription factors (TFs). Here, we report the construction of a high-quality library of 322 signature-tagged gene-deletion strains for 155 putative TF genes previously predicted using the DNA-binding domain TF database, and examine their in vitro and in vivo phenotypic traits under 32 distinct growth conditions. At least one phenotypic trait is exhibited by 145 out of 155 TF mutants (93%) and ∼85% of them (132/155) are functionally characterized for the first time in this study. The genotypic and phenotypic data for each TF are available in the C. neoformans TF phenome database (http://tf.cryptococcus.org). In conclusion, our phenome-based functional analysis of the C. neoformans TF mutant library provides key insights into transcriptional networks of basidiomycetous fungi and human fungal pathogens.


Subject(s)
Cryptococcosis , Cryptococcus neoformans/genetics , Fungal Proteins/genetics , Transcription Factors/genetics , Animals , Cryptococcus neoformans/physiology , Databases, Chemical , Fungal Proteins/physiology , Gene Expression Profiling , Mice , Moths/microbiology , Transcription Factors/physiology , Virulence Factors/genetics , Virulence Factors/physiology
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