4.6 Article

Calcineurin Inhibitors Synergize with Manogepix to Kill Diverse Human Fungal Pathogens

期刊

JOURNAL OF FUNGI
卷 8, 期 10, 页码 -

出版社

MDPI
DOI: 10.3390/jof8101102

关键词

fosmanogepix; manogepix; FMGX; MGX; APX001; APX001A; Gwt1; FK506; antifungal; GPI anchor; glycosylphosphatidylinositol

资金

  1. NSERC Postdoctoral Fellowship
  2. Mitacs Accelerate Postdoctoral Fellowship
  3. Canadian Institutes of Health Research Foundation [FDN-154288]
  4. Canada Research Chair (Tier 1) in Microbial Genomics & Infectious Disease
  5. CIFAR Fungal Kingdom: Threats & Opportunities program

向作者/读者索取更多资源

Invasive fungal infections have high mortality rates and the emergence of drug resistance necessitates the development of new antifungal drugs. Fosmanogepix is a new type of drug that inhibits fungal growth and has synergistic fungicidal effects with calcineurin inhibitors. The use of calcineurin inhibitors as immunosuppressants increases the risk of invasive fungal infections, but their interaction with fosmanogepix can mitigate this risk.
Invasive fungal infections have mortality rates of 30-90%, depending on patient co-morbidities and the causative pathogen. The frequent emergence of drug resistance reduces the efficacy of currently approved treatment options, highlighting an urgent need for antifungals with new modes of action. Addressing this need, fosmanogepix (N-phosphonooxymethylene prodrug of manogepix; MGX) is the first in a new class of gepix drugs, and acts as a broad-spectrum, orally bioavailable inhibitor of the essential fungal glycosylphosphatidylinositol (GPI) acyltransferase Gwt1. MGX inhibits the growth of diverse fungal pathogens and causes accumulation of immature GPI-anchored proteins in the fungal endoplasmic reticulum. Relevant to the ongoing clinical development of fosmanogepix, we report a synergistic, fungicidal interaction between MGX and inhibitors of the protein phosphatase calcineurin against important human fungal pathogens. To investigate this synergy further, we evaluated a library of 124 conditional expression mutants covering 95% of the genes encoding proteins involved in GPI-anchor biosynthesis or proteins predicted to be GPI-anchored. Strong negative chemical-genetic interactions between the calcineurin inhibitor FK506 and eleven GPI-anchor biosynthesis genes were identified, indicating that calcineurin signalling is required for fungal tolerance to not only MGX, but to inhibition of the GPI-anchor biosynthesis pathway more broadly. Depletion of these GPI-anchor biosynthesis genes, like MGX treatment, also exposed fungal cell wall (1 -> 3)-beta-D-glucans. Taken together, these findings suggest the increased risk of invasive fungal infections associated with use of calcineurin inhibitors as immunosuppressants may be mitigated by their synergistic fungicidal interaction with (fos)manogepix and its ability to enhance exposure of immunostimulatory glucans.

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