Cysteine uptake by Saccharomyces cerevisiae is accomplished by multiple permeases

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Uptake by Saccharomyces cerevisiae of the sulphur-containing amino acid L-cysteine was found to be non-saturable under various conditions, and uptake kinetics suggested the existence of two or more transport systems in addition to the general amino-acid permease, Gap1p. Overexpression studies identified BAP2, BAP3, AGP1 and GNP1 as genes encoding transporters of cysteine. Uptake studies with disruption mutants confirmed this. and identified two additional genes for transporters of cysteine, TAT1 and TAT2, both very homologous to BAP2, BAP3, AGP1 and GNP1. While Gap 1p and Agp 1p appear to be the main cysteine transporters on the non-repressing nitrogen source proline, Bap2p, Bap3p, Tat1p, Tat2p, Agp1p and Gnp1p are all important for cysteine uptake on ammonium-based medium. Furthermore, whereas Bap2p, Bap3p, Tat1p and Tat2p seem most important under amino acid-rich conditions, Agp 1p contributes significantly when only ammonium is present, and Gnp1p only contributes under the latter condition.

Original languageEnglish
JournalCurrent Genetics
Volume35
Issue number6
Pages (from-to)609-617
Number of pages9
ISSN0172-8083
DOIs
Publication statusPublished - 15 Aug 1999

    Research areas

  • Amino-acid permeases, Cysteine uptake, Saccharomyces cerevisiae

ID: 239906267