The salt tolerant yeast Zygosaccharomyces rouxii possesses two plasma-membrane Na+/H+-antiporters (ZrNha1p and ZrSod2-22p) playing different roles in cation homeostasis and cell physiology
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
18761413
DOI
10.1016/j.fgb.2008.08.001
PII: S1087-1845(08)00158-8
Knihovny.cz E-zdroje
- MeSH
- chlorid sodný metabolismus MeSH
- exprese genu MeSH
- fungální proteiny genetika metabolismus MeSH
- homeostáza * MeSH
- kationty metabolismus MeSH
- molekulární sekvence - údaje MeSH
- Na(+)-H(+) antiport genetika metabolismus MeSH
- sekvence aminokyselin MeSH
- sekvenční delece MeSH
- sekvenční seřazení MeSH
- Zygosaccharomyces genetika fyziologie MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- chlorid sodný MeSH
- fungální proteiny MeSH
- kationty MeSH
- Na(+)-H(+) antiport MeSH
Antiporters exporting Na(+) and K(+) in exchange for protons are conserved among yeast species. The only exception so far has been Zygosaccharomyces rouxii, an osmotolerant species closely related to Saccharomyces cerevisiae. Z. rouxii was described as possessing one plasma-membrane antiporter transporting only Na(+) (ZrSod2-22p in the CBS 732(T) type strain). We report the characterization of a second gene, ZrNHA1, encoding a new K(+)(Na(+))/H(+)-antiporter capable of both K(+) and Na(+) export. Synteny analyses suggested that ZrSOD2-22 originated by single duplication of the ZrNHA1 gene. Substrate specificities and transport properties of ZrNha1p and ZrSod2-22p were compared upon heterologous expression in S. cerevisiae, and then directly in Z. rouxii. Deletion mutants and phenotype analyses revealed that ZrSod2-22 antiporter is important for Na(+) detoxification, probably together with ZrEna1 ATPase; ZrNha1p is indispensable to maintain potassium homeostasis and ZrEna1p is not, in contrast to the situation in S. cerevisiae, involved in this function.
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