The increasing number of life-threatening Candida infections caused by antifungal drug-resistant strains urges the development of new therapeutic strategies. The small, cysteine-rich, and cationic Neosartorya fischeri antifungal protein 2 (NFAP2) effectively inhibits the growth of Candida spp. Limiting factors of its future application, are the low-yield production by the native producer, unavailable information about potential clinical application, and the unsolved relationship between the structure and function. In the present study we adopted a Penicillium chrysogenum-based expression system for bulk production of recombinant NFAP2. Furthermore, solid-phase peptide synthesis and native chemical ligation were applied to produce synthetic ...
Abstract Filamentous fungi encode distinct antifungal proteins (AFPs) that offer great potential to ...
OBJECTIVE: Peptide antibiotics are considered a new class of antifungal agents. Of these, an α-helic...
Small, cysteine-rich and cationic antimicrobial proteins (AMPs) from filamentous ascomycetes represe...
The increasing number of life-threatening Candida infections caused by antifungal drug-resistant str...
<p>The increasing number of life-threatening Candida infections caused by antifungal drug-resistant ...
Neosartorya fischeri NRRL 181 isolate secretes a defensin-like antifungal protein (NFAP) which has a...
Small, cysteine-rich and cationic antifungal proteins from natural sources are promising candidates ...
The increasing incidence of fungal infections and damages due to drug-resistant fungi urges the deve...
The discovery and understanding of the mode of action of new antimicrobial agents is extremely urgen...
Antifungal peptides offer promising alternative compounds for the treatment of fungal infections, fo...
Antimicrobial peptides (AMPs) have been proposed as candidates to develop new antimicrobial compound...
Antimicrobial peptides (AMPs) have been proposed as candidates to develop new antimicrobial compound...
© 2020 by the authors.Small, cysteine-rich and cationic antimicrobial proteins (AMPs) from filamento...
Small, cysteine-rich and cationic proteins with antimicrobial activity are produced by diverse organ...
Filamentous fungi are an invaluable source for biocontrol strategies and for production and developm...
Abstract Filamentous fungi encode distinct antifungal proteins (AFPs) that offer great potential to ...
OBJECTIVE: Peptide antibiotics are considered a new class of antifungal agents. Of these, an α-helic...
Small, cysteine-rich and cationic antimicrobial proteins (AMPs) from filamentous ascomycetes represe...
The increasing number of life-threatening Candida infections caused by antifungal drug-resistant str...
<p>The increasing number of life-threatening Candida infections caused by antifungal drug-resistant ...
Neosartorya fischeri NRRL 181 isolate secretes a defensin-like antifungal protein (NFAP) which has a...
Small, cysteine-rich and cationic antifungal proteins from natural sources are promising candidates ...
The increasing incidence of fungal infections and damages due to drug-resistant fungi urges the deve...
The discovery and understanding of the mode of action of new antimicrobial agents is extremely urgen...
Antifungal peptides offer promising alternative compounds for the treatment of fungal infections, fo...
Antimicrobial peptides (AMPs) have been proposed as candidates to develop new antimicrobial compound...
Antimicrobial peptides (AMPs) have been proposed as candidates to develop new antimicrobial compound...
© 2020 by the authors.Small, cysteine-rich and cationic antimicrobial proteins (AMPs) from filamento...
Small, cysteine-rich and cationic proteins with antimicrobial activity are produced by diverse organ...
Filamentous fungi are an invaluable source for biocontrol strategies and for production and developm...
Abstract Filamentous fungi encode distinct antifungal proteins (AFPs) that offer great potential to ...
OBJECTIVE: Peptide antibiotics are considered a new class of antifungal agents. Of these, an α-helic...
Small, cysteine-rich and cationic antimicrobial proteins (AMPs) from filamentous ascomycetes represe...