Cryptococcus neoformans is the most common cause of fungal meningitis and the top-ranking WHO fungal priority pathogen. Only distantly related to model fungi, C. neoformans is also a powerful experimental system for exploring conserved eukaryotic mechanisms lost from specialist model yeast lineages. To decipher its biology globally, we constructed 4,328 gene deletions and measured-with exceptional precision-the fitness of each mutant under 141 diverse growth-limiting in vitro conditions and during murine infection. We defined functional modules by clustering genes based on their phenotypic signatures. In-depth studies leveraged these data in two ways. First, we defined and investigated new components of key signaling pathways, which revealed metazoan-like cellular machinery not present in model yeasts. Second, we identified environmental adaptation mechanisms repurposed to promote mammalian virulence by C. neoformans, which lacks a known animal reservoir. Our work provides an unprecedented resource for deciphering a deadly human pathogen.
Phenotypic landscape of an invasive fungal pathogen reveals its unique biology
入侵性真菌病原体的表型图谱揭示了其独特的生物学特性
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作者:Michael J Boucher ,Sanjita Banerjee ,Meenakshi B Joshi ,Angela L Wei ,Matthew J Nalley ,Manning Y Huang ,Susan Lei ,Massimiliano Ciranni ,Andrew Condon ,Andreas Langen ,Thomas D Goddard ,Ippolito Caradonna ,Alexi I Goranov ,Christina M Homer ,Yasaman Mortensen ,Sarah Petnic ,Morgann C Reilly ,Yi Xiong ,Katherine J Susa ,Vito Paolo Pastore ,Balyn W Zaro ,Hiten D Madhani
| 期刊: | Cell | 影响因子: | 45.500 |
| 时间: | 2025 | 起止号: | 2025 Jul 24;188(15):4003-4024. |
| doi: | 10.1016/j.cell.2025.05.017 | 研究方向: | 微生物学 |
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