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Aneuploidy underlies brefeldin A-induced antifungal drug resistance in .
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Heteroresistance to fluconazole in Cryptococcus neoformans is intrinsic and associated with virulence.
Antimicrob Agents Chemother. 2009 Jul;53(7):2804-15. doi: 10.1128/AAC.00295-09. Epub 2009 May 4.
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Coregulation of extracellular vesicle production and fluconazole susceptibility in .
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Cryptococcus neoformans Yap1 is required for normal fluconazole and oxidative stress resistance.
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Loss of the spindle assembly checkpoint components, SldA or SldB, generates triazole heteroresistant conidial populations.
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An apoptosis-inducing factor controls programmed cell death and laccase expression during fungal interactions.
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The Microevolution of Antifungal Drug Resistance in Pathogenic Fungi.
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Importance of Clinical Isolates in Research.
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Genomic Variation across a Clinical Cryptococcus Population Linked to Disease Outcome.
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Role of the Heme Activator Protein Complex in the Sexual Development of Cryptococcus neoformans.
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Adaptation to Fluconazole via Aneuploidy Enables Cross-Adaptation to Amphotericin B and Flucytosine in Cryptococcus neoformans.
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The distribution of the numbers of mutants in bacterial populations.
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Expanding fungal pathogenesis: Cryptococcus breaks out of the opportunistic box.
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Genome variation in Cryptococcus gattii, an emerging pathogen of immunocompetent hosts.
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Aneuploidy confers quantitative proteome changes and phenotypic variation in budding yeast.
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Role of CD45 signaling pathway in galactoxylomannan-induced T cell damage.
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Metacaspase Yca1 is required for clearance of insoluble protein aggregates.
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Cryptococcal cell morphology affects host cell interactions and pathogenicity.
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Fungal cell gigantism during mammalian infection.
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