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Targeting a critical step in fungal hexosamine biosynthesis

The Journal of biological chemistry(2020)

Cited 15|Views56
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Abstract
Aspergillus fumigatusis a human opportunistic fungal pathogen whose cell wall protects it from the extracellular environment including host defenses. Chitin, an essential component of the fungal cell wall, is synthesized from UDP-GlcNAc produced in the hexosamine biosynthetic pathway. As this pathway is critical for fungal cell wall integrity, the hexosamine biosynthesis enzymes represent potential targets of antifungal drugs. Here, we provide genetic and chemical evidence that glucosamine 6-phosphateN-acetyltransferase (Gna1), a key enzyme in this pathway, is an exploitable antifungal drug target.GNA1deletion resulted in loss of fungal viability and disruption of the cell wall, phenotypes that could be rescued by exogenous GlcNAc, the product of the Gna1 enzyme. In a murine model of aspergillosis, the ?gna1mutant strain exhibited attenuated virulence. Using a fragment-based approach, we discovered a small heterocyclic scaffold that binds proximal to the Gna1 active site and can be optimized to a selective submicromolar binder. Taken together, we have provided genetic, structural, and chemical evidence that Gna1 is an antifungal target inA. fumigatus.
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Key words
fungi,cell wall,protein-protein interaction,X-ray crystallography,virulence factor,chitin,antifungal drug development,fragment,glucosamine 6-phosphate N-acetyltransferase (Gna1),resistance,Aspergillus fumigatus
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