CO2 sensing in fungi: at the heart of metabolic signaling
Adaptation to the changing environmental CO 2 levels is essential for all living cells. In particular, microorganisms colonizing and infecting the human body are exposed to highly variable concentrations, ranging from atmospheric 0.04 to 5% and more in blood and specific host niches. Carbonic anhydr...
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Veröffentlicht in: | Current genetics 2017-12, Vol.63 (6), p.965-972 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Adaptation to the changing environmental CO
2
levels is essential for all living cells. In particular, microorganisms colonizing and infecting the human body are exposed to highly variable concentrations, ranging from atmospheric 0.04 to 5% and more in blood and specific host niches. Carbonic anhydrases are highly conserved metalloenzymes that enable fixation of CO
2
by its conversion into bicarbonate. This process is not only crucial to ensure the supply of adequate carbon amounts for cellular metabolism, but also contributes to several signaling processes in fungi, including morphology and communication. The fungal specific carbonic anhydrase gene
NCE103
is transcribed in response to CO
2
availability. As recently shown, this regulation relies on the ATF/CREB transcription factor Cst6 and the AGC family protein kinase Sch9. Here, we review the regulatory mechanisms which control
NCE103
expression in the model organism
Saccharomyces cerevisiae
and the pathogenic yeasts
Candida albicans
and
Candida glabrata
and discuss which additional factors might contribute in this novel CO
2
sensing cascade. |
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ISSN: | 0172-8083 1432-0983 |
DOI: | 10.1007/s00294-017-0700-0 |