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PMID: 2183522 Published · ppublish English Journal Article

Substrate-accelerated death of Saccharomyces cerevisiae CBS 8066 under maltose stress.

Yeast (Chichester, England) ·Vol. 6 ·No. 2 ·1990-00-00 ·Pages 149-58

Postma E, Verduyn C, Kuiper A, Scheffers WA, van Dijken JP

Abstract

When Saccharomyces cerevisiae CBS 8066 was grown under maltose limitation, two enzymes specific for maltose utilization were present: a maltose carrier, and the maltose-hydrolysing alpha-glucosidase. The role of these two enzymes in the physiology of S. cerevisiae was investigated in a comparative study in which Candida utilis CBS 621 was used as a reference organism. Maltose pulses to a maltose-limited chemostat culture of S. cerevisiae resulted in 'substrate-accelerated death'. This was evident from: (1) enhanced protein release from cells; (2) excretion of glucose into the medium; (3) decreased viability. These effects wee specific with respect to both substrate and organism: pulses of glucose to maltose-limited cultures of S. cerevisiae did not result in cell death, neither did maltose pulses to maltose-limited cultures of C. utilis. The maltose-accelerated death of s. cerevisiae is most likely explained in terms of an uncontrolled uptake of maltose into the cell, resulting in an osmotic burst. Our results also provide evidence that the aerobic alcoholic fermentation that occurs after pulsing sugars to sugar-limited cultures of s. cerevisiae (short-term Crabtree effect) cannot solely be explained in terms of the mechanism of sugar transport. Both glucose and maltose pulses to maltose-limited cultures triggered aerobic alcohol formation. However, glucose transport by S. cerevisiae occurs via facilitated diffusion, whereas maltose entry into this yeast is mediated by a maltose/proton symport system.

MeSH Terms
Carrier Proteins/metabolism Culture Media Glucose/metabolism Hydrogen-Ion Concentration Maltose/metabolism Maltose-Binding Proteins Saccharomyces cerevisiae/enzymology,growth & development,metabolism alpha-Glucosidases/metabolism
Chemicals
Carrier Proteins Culture Media Maltose-Binding Proteins Maltose alpha-Glucosidases Glucose
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Postma E
Department of Microbiology and Enzymology, Delft University of Technology, The Netherlands.
Verduyn C
Kuiper A
Scheffers W A
van Dijken J P
Article Info
Journal
Yeast (Chichester, England)
Abbr.
Yeast
ISSN
0749-503X
Published
1990-00-00
Pages
149-58
Language
English
Region
England
NLM ID
8607637
Subset
IM
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