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Genome Information for Pneumocystis carinii
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8 additional projects are components of the Regional Centromere Configuration in the Fungal Pathogens of Pneumocystis Genus.
Pneumocystis is a relevant genetic system to study centromere formation in relation with host adaptation. How centromeres are formed and maintained in strongly host adapted fungal pathogens is poorly investigated. Centromeres are genomic regions that coordinate accurate chromosomal segregation during mitosis and meiosis. Yet, despite their essential function, centromeres evolve rapidly across eukaryotes. CENP-A, a variant of histone H3 is the epigenetic marker that define centromeres in most eukaryotes. Centromeres are often the sites of chromosomal breaks which contribute to genome shuffling and promote speciation by inhibiting gene flow. Genome shuffling allows genome reconfiguration suitable for survival in new environment such as pathogen adaptation to new hosts. Here, we study the evolution of centromeres in closely related species of mammalian specific pathogens of the fungal phylum of Ascomycota. Long term culture of Pneumocystis species is currently untenable. Using heterologous complementation, we show that Pneumocystis CENP-A ortholog is functionally equivalent to fission yeast Cnp1. Using a short-term in vitro culture, infected animal models and ChIP-seq, we identified centromeres in three Pneumocystis species that diverged ~100 Mya ago. Each species has 17 unique short regional centromeres (< 10kb) in 17 monocentric chromosomes. The centromeres are flanked by heterochromatin. They span active genes, lack conserved DNA sequence motifs, and repeats.These features suggest an epigenetic specification of centromere function.
Overall design: Chromatin immunoprecipitation DNA-sequencing (ChIP-seq) for centromeric histone CENP-A in Pneumocystis carinii. P. carinii organisms were collected from infected lungs of corticoids-induced immunocompromised Sprague-Dawley male rats. Organisms were cocultured with a suspension of A549 and LET1 cells for 7 days
Accession | PRJNA961820; GEO: GSE230598 |
Data Type | Epigenomics |
Scope | Multiisolate |
Organism | Pneumocystis carinii[Taxonomy ID: 4754] Eukaryota; Fungi; Dikarya; Ascomycota; Taphrinomycotina; Pneumocystomycetes; Pneumocystaceae; Pneumocystis; Pneumocystis carinii |
Publications | - Cissé OH et al., "Regional centromere configuration in the fungal pathogens of the Pneumocystis genus.", mBio, 2024 Mar 13;15(3):e0318523
- Cissé OH et al., "The Host Adapted Fungal Pathogens of Pneumocystis Genus Utilize Genic Regional Centromeres.", bioRxiv, 2023 May 12;
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Submission | Registration date: 25-Apr-2023 National Institutes of Health |
Relevance | Unknown |
Project Data:
Resource Name | Number of Links |
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Sequence data |
SRA Experiments | 4 |
Publications |
PubMed | 2 |
PMC | 2 |
Other datasets |
BioSample | 4 |
GEO DataSets | 1 |