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Published on: February 14, 2018
Development of Antifungal Peptides against Cryptococcus neoformans; Leveraging Knowledge about the cdc50Δ Mutant
Robert J Tancer1, Yina Wang2, Siddhi Pawar2
1Department of Chemistry and Biochemistry, Seton Hall University, South Orange, New Jersey, USA.
Abstract:
Cryptococcus neoformans is a major fungal pathogen that often causes life-threatening meningitis in immunocompromised populations. This yeast pathogen is highly resistant to the echinocandin drug caspofungin. Previous studies showed that Cryptococcus lipid translocase (flippase) is required for the caspofungin resistance of that fungus. Mutants with a deleted subunit of lipid flippase, Cdc50, showed increased sensitivity to caspofungin. Here we designed an antifungal peptide targeting the P4-ATPase function. We synthesized stable peptides based on the Cdc50 loop region to identify peptides that can sensitize caspofungin by blocking flippase function and found that myristylated peptides based on the "AS15 sequence" was effective at high concentrations. A modified peptide, "AW9-Ma" showed a MIC of 64 μg/mL against H99 wild type and a fractional inhibitory concentration (FIC) index value of 0.5 when used in combination with caspofungin. Most notably, in the presence of the AW9-Ma peptide, C. neoformans wild type was highly sensitive to caspofungin with a MIC of 4 μg/mL, the same as the cdc50Δ mutant. Further assays with flow cytometry showed inhibition of the lipid flippase enzyme activity and significant accumulation of phosphatidylserine on the cell membrane surface. Using a fluorescently labeled peptide, we confirmed that the peptide co-localized with mCherry-tagged P4-ATPase protein Apt1 in C. neoformans. Structure-activity relationship studies of the AW9 sequence showed that two lysine residues on the peptide are likely responsible for the interaction with the P4-ATPase, hence critical for its antifungal activity. IMPORTANCE The authors have developed a lead compound peptide antifungal drug targeting a protein from the organism Cryptococcus neoformans. Binding of the drug to the target fungal protein causes charged lipid molecules to be retained on the surface. This peptide works in synergy with the existing antifungal drug caspofungin. Echinocandin drugs like caspofungin are one of the few classes of existing antifungals. Due to the high concentrations needed, caspofungin is rarely used to treat C. neoformans infections. The authors believe that their new compound provides a way to lower the concentration of caspofungin needed to treat such infections, thus opening the possibility for greater utility of these antifungal.
Insights
A new peptide drug sensitizes Cryptococcus neoformans to caspofungin by blocking lipid flippase. This combination therapy may enable lower caspofungin doses for treating fungal infections.
Area of Science:
- Medical Mycology
- Medicinal Chemistry
- Antimicrobial Drug Discovery
Background:
- Cryptococcus neoformans causes life-threatening meningitis in immunocompromised individuals.
- This fungus exhibits high resistance to echinocandin drugs like caspofungin.
- Lipid translocase (flippase) activity is crucial for caspofungin resistance in C. neoformans.
Purpose of the Study:
- To design and synthesize novel antifungal peptides targeting the P4-ATPase function of lipid flippase.
- To identify peptides that can sensitize C. neoformans to caspofungin by inhibiting flippase.
- To evaluate the synergistic effect of a lead peptide compound with caspofungin.
Main Methods:
- Peptide synthesis based on the Cdc50 loop region of C. neoformans.
- Antifungal activity testing using minimum inhibitory concentration (MIC) and fractional inhibitory concentration (FIC) index.
- Flow cytometry to assess lipid flippase activity and phosphatidylserine exposure.
- Fluorescent labeling to confirm peptide co-localization with P4-ATPase (Apt1).
Main Results:
- A modified peptide, AW9-Ma, demonstrated synergistic activity with caspofungin (FIC index = 0.5).
- AW9-Ma significantly increased caspofungin sensitivity, lowering the MIC to 4 μg/mL.
- Peptide treatment inhibited flippase activity, leading to phosphatidylserine accumulation on the cell surface.
- Structure-activity relationship studies identified two lysine residues critical for peptide interaction with P4-ATPase.
Conclusions:
- The developed peptide AW9-Ma effectively targets P4-ATPase, inhibiting lipid flippase in C. neoformans.
- This peptide acts synergistically with caspofungin, enhancing its antifungal efficacy.
- The findings suggest a promising strategy to overcome caspofungin resistance and improve treatment of cryptococcal infections.
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