A phylogenetically-restricted essential cell cycle progression factor in the human pathogen Candida albicans
Chromosomal instability caused by cell division errors is associated with antifungal drug resistance in fungal pathogens. Here, we identify potential mechanisms underlying such instability by conducting an overexpression screen monitoring chromosomal stability in the human fungal pathogen Candida al...
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Veröffentlicht in: | Nature communications 2022-07, Vol.13 (1), p.4256-4256, Article 4256 |
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Zusammenfassung: | Chromosomal instability caused by cell division errors is associated with antifungal drug resistance in fungal pathogens. Here, we identify potential mechanisms underlying such instability by conducting an overexpression screen monitoring chromosomal stability in the human fungal pathogen
Candida albicans
. Analysis of ~1000 genes uncovers six
c
hromosomal
s
t
a
bility (
CSA
) genes, five of which are related to cell division genes of other organisms. The sixth gene,
CSA6
, appears to be present only in species belonging to the CUG-Ser clade, which includes
C. albicans
and other human fungal pathogens. The protein encoded by
CSA6
localizes to the spindle pole bodies, is required for exit from mitosis, and induces a checkpoint-dependent metaphase arrest upon overexpression. Thus, Csa6 is an essential cell cycle progression factor that is restricted to the CUG-Ser fungal clade, and could therefore be explored as a potential antifungal target.
Chromosomal instability caused by cell division errors is associated with antifungal drug resistance in fungal pathogens. Here, Jaitly et al. identify several genes involved in chromosomal stability in
Candida albicans
, including a phylogenetically restricted gene encoding an essential cell-cycle progression factor. |
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ISSN: | 2041-1723 2041-1723 |
DOI: | 10.1038/s41467-022-31980-3 |