Abstract
Candida intermedia PYCC 4715 was previously shown to grow well on xylose and to transport this sugar by two different transport systems: high-capacity and low-affinity facilitated diffusion and a high-affinity xylose-proton symporter, both of which accept glucose as a substrate. Here we report the isolation of genes encoding both transporters, designated GXF1 (glucose/xylose facilitator 1) and GXS1 (glucose/xylose symporter 1) respectively. Although GXF1 was isolated by functional complementation of an HXT-null (where Hxt refers to hexose transporters) Saccharomyces cerevisiae strain, isolation of the GXS1 cDNA required partial purification and micro-sequencing of the transporter, identified by its relative abundance in cells grown on low xylose concentrations. Both genes were expressed in S. cerevisiae and the kinetic parameters of glucose and xylose transport were determined. Gxs1 is the first yeast xylose/glucose-H+ symporter to be characterized at the molecular level. Comparison of its amino acid sequence with available sequence data revealed the existence of a family of putative monosaccharide-H+ symporters encompassing proteins from several yeasts and filamentous fungi.
MeSH Terms
Amino Acid Sequence
Blotting, Northern
Candida/chemistry,genetics,metabolism
Cloning, Molecular
Culture Media
DNA, Complementary/genetics
Electrophoresis, Polyacrylamide Gel
Fungal Proteins/chemistry,classification,genetics,metabolism
Gene Expression Regulation, Fungal
Genes, Fungal/genetics
Glucose/metabolism
Hydrogen-Ion Concentration
Kinetics
Molecular Sequence Data
Symporters/chemistry,classification,genetics,metabolism
Xylose/metabolism
Chemicals
Culture Media
DNA, Complementary
Fungal Proteins
Symporters
Xylose
Glucose
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Leandro Maria José
Centro de Recursos Microbiológicos (CREM), Biotechnology Unit, Faculty of Sciences and Technology, New University of Lisbon, 2829-516 Caparica, Portugal.
Gonçalves Paula
Spencer-Martins Isabel
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