Mechanisms and functions of RNA interference in Cryptococcus genome regulation
In plain English
AI plain-English summaryFungal pathogens use a molecular system called RNA interference (RNAi) to silence jumping genes, and when that system breaks, the fungi become drug-resistant. This project investigates exactly how RNAi controls gene activity in *Cryptococcus*, a fungus that causes deadly meningitis in people with weakened immune systems. Researchers already know that losing RNAi lets transposons—DNA sequences that move around the genome—create mutations that lead to antifungal drug resistance. But RNAi also appears to regulate many other genes, and those functions remain poorly understood. The team will map how RNAi helps *Cryptococcus* respond to stresses it encounters during infection, and will explore a newly discovered, non-canonical form of RNAi that works without small RNA molecules. They will compare RNAi pathways across different *Cryptococcus* species to see how these systems evolve. This is fundamental science—it will not produce a new drug or diagnostic tomorrow. But understanding the mechanisms that drive drug resistance in a major fungal pathogen could, in the longer term, point toward strategies for disrupting that resistance, potentially preserving the effectiveness of existing antifungal treatments.
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