Serum albumin promotes ATP-binding cassette transporter-dependent sterol uptake in yeast
pmid: 25331273
Serum albumin promotes ATP-binding cassette transporter-dependent sterol uptake in yeast
Sterol uptake in fungi is a multistep process that involves interaction between external sterols and the cell wall, incorporation of sterol molecules into the plasma membrane, and subsequent integration into intracellular membranes for turnover. ATP-binding cassette (ABC) transporters have been implicated in sterol uptake, but key features of their activity remain to be elucidated. Here, we apply fluorescent cholesterol (NBD-cholesterol) to monitor sterol uptake under anaerobic and aerobic conditions in two fungal species, Candida glabrata (Cg) and Saccharomyces cerevisiae (Sc). We found that in both fungal species, ABC transporter-dependent uptake of cholesterol under anaerobic conditions and in mutants lacking HEM1 gene is promoted in the presence of the serum protein albumin that is able to bind the sterol molecule. Furthermore, the C. glabrata ABC transporter CgAus1p expressed in S. cerevisiae requires the presence of serum or albumin for efficient cholesterol uptake. These results suggest that albumin can serve as sterol donor in ABC transporter-dependent sterol uptake, a process potentially important for growth of C. glabrata inside infected humans.
- University of Copenhagen Denmark
- University of Copenhagen Denmark
- University of Lausanne Switzerland
- University of Gaevle Sweden
570, 610, Aerobic exclusion, Candida glabrata, Saccharomyces cerevisiae, Fluorescence, Sterol scavenging, pathogenic yeast, Biologiska vetenskaper, Anaerobiosis, Serum Albumin, Staining and Labeling, aerobic exclusion, cholesterol, heterologous expression, Biological Transport, Biological Sciences, Aerobiosis, Sterols, Cholesterol, Pathogenic yeast, sterol scavenging, functional complementation, Functional complementation, ATP-Binding Cassette Transporters, Heterologous expression
570, 610, Aerobic exclusion, Candida glabrata, Saccharomyces cerevisiae, Fluorescence, Sterol scavenging, pathogenic yeast, Biologiska vetenskaper, Anaerobiosis, Serum Albumin, Staining and Labeling, aerobic exclusion, cholesterol, heterologous expression, Biological Transport, Biological Sciences, Aerobiosis, Sterols, Cholesterol, Pathogenic yeast, sterol scavenging, functional complementation, Functional complementation, ATP-Binding Cassette Transporters, Heterologous expression
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