Related Experiment Video
Updated: Aug 15, 2025

Inducing Meningococcal Meningitis Serogroup C in Mice via Intracisternal Delivery
Published on: November 5, 2019
Similar evolutionary trajectories in an environmental Cryptococcus neoformans isolate after human and murine
Poppy Sephton-Clark1, Scott A McConnell2, Nina Grossman2
1Broad Institute of MIT and Harvard, Cambridge, MA 02142.
Abstract:
A pet cockatoo was the suspected source of Cryptococcus neoformans recovered from an immunocompromised patient with cryptococcosis based on molecular analyses available in 2000. Here, we report whole genome sequence analysis of the clinical and cockatoo strains. Both are closely related MATα strains belonging to the VNII lineage, confirming that the human infection likely originated from pet bird exposure. The two strains differ by 61 single nucleotide polymorphisms, including eight nonsynonymous changes involving seven genes. To ascertain whether changes in these genes are selected for during mammalian infection, we passaged the cockatoo strain in mice. Remarkably, isolates obtained from mouse tissue possess a frameshift mutation in one of the seven genes altered in the human sample (LQVO5_000317), a gene predicted to encode an SWI-SNF chromatin-remodeling complex protein. In addition, both cockatoo and patient strains as well as mouse-passaged isolates obtained from brain tissue had a premature stop codon in a homologue of ZFC3 (LQVO5_004463), a predicted single-zinc finger containing protein, which is associated with larger capsules when deleted and reverted to a full-length protein in the mouse-passaged isolates obtained from lung tissue. The patient strain and mouse-passaged isolates show variability in virulence factors, with differences in capsule size, melanization, rates of nonlytic expulsion from macrophages, and amoeba predation resistance. Our results establish that environmental strains undergo genomic and phenotypic changes during mammalian passage, suggesting that animal virulence can be a mechanism for genetic change and that the genomes of clinical isolates may provide a readout of mutations acquired during infection.
Insights
A pet cockatoo infected a patient with Cryptococcus neoformans, confirmed by whole genome sequencing. During mouse passage, the fungus acquired mutations, showing genomic changes during mammalian infection.
Area of Science:
- Mycology
- Genomics
- Infectious Diseases
Background:
- Cryptococcus neoformans is an opportunistic fungal pathogen.
- Pet birds, like cockatoos, can be reservoirs for C. neoformans.
- Understanding fungal adaptation during infection is crucial for public health.
Purpose of the Study:
- To perform whole genome sequencing on clinical and cockatoo strains of C. neoformans.
- To investigate genomic and phenotypic changes of C. neoformans during mammalian passage.
- To confirm the suspected transmission of C. neoformans from a pet cockatoo to an immunocompromised patient.
Main Methods:
- Whole genome sequencing of clinical and cockatoo C. neoformans strains.
- In vivo mouse model to passage the cockatoo strain.
- Analysis of single nucleotide polymorphisms (SNPs) and gene mutations.
- Phenotypic characterization of virulence factors (capsule size, melanization, etc.).
Main Results:
- The clinical and cockatoo strains were closely related VNII lineage MATα strains, confirming bird-to-human transmission.
- The cockatoo strain acquired a frameshift mutation in an SWI/SNF chromatin-remodeling gene (LQVO5_000317) during mouse passage.
- Both strains and mouse-passaged isolates showed a premature stop codon in a ZFC3 homologue (LQVO5_004463), affecting capsule size.
- Variability in virulence factors was observed in patient and mouse-passaged isolates.
Conclusions:
- Environmental C. neoformans strains undergo significant genomic and phenotypic adaptation during mammalian infection.
- Animal virulence can act as a driver for genetic diversification in fungal pathogens.
- Clinical isolate genomes can reveal mutations acquired during host passage, offering insights into pathogenesis.
More Related Videos
10:02Visualizing Non-lytic Exocytosis of Cryptococcus neoformans from Macrophages Using Digital Light Microscopy
Published on: October 21, 2014
09:24Use of In Vivo Imaging to Screen for Morphogenesis Phenotypes in Candida albicans Mutant Strains During Active Infection in a Mammalian Host
Published on: October 12, 2022