Identification and Mode of Action of a Plant Natural Product Targeting Human Fungal Pathogens

Author:

Dorsaz Stéphane1,Snäkä Tiia1,Favre-Godal Quentin2,Maudens Pierre2,Boulens Nathalie2,Furrer Pascal2,Ebrahimi Samad Nejad3,Hamburger Matthias3,Allémann Eric2,Gindro Katia4,Queiroz Emerson Ferreira2,Riezman Howard5,Wolfender Jean-Luc2,Sanglard Dominique1ORCID

Affiliation:

1. Institute of Microbiology, University of Lausanne, and Lausanne University Hospital, Lausanne, Switzerland

2. School of Pharmaceutical Sciences, EPGL, University of Geneva-University of Lausanne, Geneva, Switzerland

3. Division of Pharmaceutical Biology, Department of Pharmaceutical Sciences, University of Basel, Basel, Switzerland

4. Agroscope, Strategic Research Division Plant Protection, Mycology, and Biotechnology, Nyon, Switzerland

5. Department of Biochemistry, NCCR Chemical Biology, University of Geneva, Geneva, Switzerland

Abstract

ABSTRACT Candida albicans is a major cause of fungal diseases in humans, and its resistance to available drugs is of concern. In an attempt to identify novel antifungal agents, we initiated a small-scale screening of a library of 199 natural plant compounds (i.e., natural products [NPs]). In vitro susceptibility profiling experiments identified 33 NPs with activity against C. albicans (MIC 50 s ≤ 32 μg/ml). Among the selected NPs, the sterol alkaloid tomatidine was further investigated. Tomatidine originates from the tomato ( Solanum lycopersicum ) and exhibited high levels of fungistatic activity against Candida species (MIC 50 s ≤ 1 μg/ml) but no cytotoxicity against mammalian cells. Genome-wide transcriptional analysis of tomatidine-treated C. albicans cells revealed a major alteration (upregulation) in the expression of ergosterol genes, suggesting that the ergosterol pathway is targeted by this NP. Consistent with this transcriptional response, analysis of the sterol content of tomatidine-treated cells showed not only inhibition of Erg6 (C-24 sterol methyltransferase) activity but also of Erg4 (C-24 sterol reductase) activity. A forward genetic approach in Saccharomyces cerevisiae coupled with whole-genome sequencing identified 2 nonsynonymous mutations in ERG6 (amino acids D249G and G132D) responsible for tomatidine resistance. Our results therefore unambiguously identified Erg6, a C-24 sterol methyltransferase absent in mammals, to be the main direct target of tomatidine. We tested the in vivo efficacy of tomatidine in a mouse model of C. albicans systemic infection. Treatment with a nanocrystal pharmacological formulation successfully decreased the fungal burden in infected kidneys compared to the fungal burden achieved by the use of placebo and thus confirmed the potential of tomatidine as a therapeutic agent.

Funder

Swiss National Research Foundation

Publisher

American Society for Microbiology

Subject

Infectious Diseases,Pharmacology (medical),Pharmacology

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