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Updated: Jun 4, 2026

Whole Genome Sequencing of Candida glabrata for Detection of Markers of Antifungal Drug Resistance
Published on: December 28, 2017
Comparative genomics allowed the identification of drug targets against human fungal pathogens
Ana Karina R Abadio1, Erika S Kioshima, Marcus M Teixeira
1Department of Cellular Biology, University of Brasília, Brasília, Brazil.
Background:
The prevalence of invasive fungal infections (IFIs) has increased steadily worldwide in the last few decades. Particularly, there has been a global rise in the number of infections among immunosuppressed people. These patients present severe clinical forms of the infections, which are commonly fatal, and they are more susceptible to opportunistic fungal infections than non-immunocompromised people. IFIs have historically been associated with high morbidity and mortality, partly because of the limitations of available antifungal therapies, including side effects, toxicities, drug interactions and antifungal resistance. Thus, the search for alternative therapies and/or the development of more specific drugs is a challenge that needs to be met. Genomics has created new ways of examining genes, which open new strategies for drug development and control of human diseases.
Results:
In silico analyses and manual mining selected initially 57 potential drug targets, based on 55 genes experimentally confirmed as essential for Candida albicans or Aspergillus fumigatus and other 2 genes (kre2 and erg6) relevant for fungal survival within the host. Orthologs for those 57 potential targets were also identified in eight human fungal pathogens (C. albicans, A. fumigatus, Blastomyces dermatitidis, Paracoccidioides brasiliensis, Paracoccidioides lutzii, Coccidioides immitis, Cryptococcus neoformans and Histoplasma capsulatum). Of those, 10 genes were present in all pathogenic fungi analyzed and absent in the human genome. We focused on four candidates: trr1 that encodes for thioredoxin reductase, rim8 that encodes for a protein involved in the proteolytic activation of a transcriptional factor in response to alkaline pH, kre2 that encodes for α-1,2-mannosyltransferase and erg6 that encodes for Δ(24)-sterol C-methyltransferase.
Conclusions:
Our data show that the comparative genomics analysis of eight fungal pathogens enabled the identification of four new potential drug targets. The preferred profile for fungal targets includes proteins conserved among fungi, but absent in the human genome. These characteristics potentially minimize toxic side effects exerted by pharmacological inhibition of the cellular targets. From this first step of post-genomic analysis, we obtained information relevant to future new drug development.
Insights
New antifungal drug targets were identified using comparative genomics. Researchers found four promising genes conserved in fungi but absent in humans, potentially leading to safer, more effective treatments for invasive fungal infections.
Area of Science:
- Genomics and Bioinformatics
- Mycology
- Drug Discovery
Background:
- Invasive fungal infections (IFIs) are increasing globally, particularly in immunosuppressed individuals, leading to high morbidity and mortality.
- Current antifungal therapies have limitations, including side effects, toxicity, drug interactions, and emerging antifungal resistance.
- Genomic approaches offer new strategies for developing novel antifungal drugs and disease control.
Purpose of the Study:
- To identify novel drug targets for invasive fungal infections (IFIs) through comparative genomics.
- To find potential therapeutic targets conserved across multiple fungal pathogens but absent in the human genome.
Main Methods:
- In silico analysis and manual mining of 57 potential drug targets from essential genes in Candida albicans and Aspergillus fumigatus.
- Identification of orthologs in eight human fungal pathogens: C. albicans, A. fumigatus, Blastomyces dermatitidis, Paracoccidioides brasiliensis, P. lutzii, Coccidioides immitis, Cryptococcus neoformans, and Histoplasma capsulatum.
- Focus on four candidate genes (trr1, rim8, kre2, erg6) present in all analyzed fungi and absent in the human genome.
Main Results:
- Comparative genomics analysis identified four novel potential drug targets conserved across eight fungal pathogens.
- Ten genes were found to be present in all analyzed pathogenic fungi and absent in the human genome.
- Four specific candidate genes (trr1, rim8, kre2, erg6) were selected for further investigation.
Conclusions:
- Comparative genomics successfully identified four new potential drug targets for fungal pathogens.
- Fungal-specific targets, conserved across species but absent in humans, offer a promising strategy to minimize host toxicity.
- This study provides a foundation for developing novel antifungal therapies based on post-genomic analysis.
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