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The effect of oxidative stress on Saccharomyces cerevisiae.
Redox Rep. 1995 Feb; 1(2):89-95.RR

Abstract

Reactive oxygen species (ROS) are highly reactive and damage cellular constituents such as DNA, lipids and proteins. All aerobically growing organisms are exposed to ROS. As a result most organisms have evolved mechanisms to protect their components against ROS. This review describes the oxidant defence systems of the yeast Saccharomyces cerevisiae, which is an ideal eukaryotic model system to analyse the molecular events in response to oxidative stress. Yeast posses a similar range of anti-oxidant molecules and enzymes to those found in higher eukaryotes. Exponentially growing S. cerevisiae have at least two distinct adaptive stress responses to oxidants, one of which is responsive towards H2O2 and the other is induced by exposure to compounds that generate superoxide anion. The identification of a number of transcription factors (Yap1, Mac1, Ace1) which are important in the regulation of metal metabolism and homeostasis that are also involved in mediating resistance towards oxidants suggests a link between metal metabolism and oxidative stress. Heat-shock, nutrient starvation and entry into the stationary phase of growth also lead to increased resistance toward oxidants. The available evidence suggests that the mechanism by which these stresses result in oxidant resistance may be different from those utilised by exponentially growing cells.

Authors+Show Affiliations

a Biomedical Research Centre , Ninewells Hospital and Medical School, University of Dundee , Dundee , Scotland , UK.

Pub Type(s)

Journal Article

Language

eng

PubMed ID

27405549

Citation

Jamieson, D J.. "The Effect of Oxidative Stress On Saccharomyces Cerevisiae." Redox Report : Communications in Free Radical Research, vol. 1, no. 2, 1995, pp. 89-95.
Jamieson DJ. The effect of oxidative stress on Saccharomyces cerevisiae. Redox Rep. 1995;1(2):89-95.
Jamieson, D. J. (1995). The effect of oxidative stress on Saccharomyces cerevisiae. Redox Report : Communications in Free Radical Research, 1(2), 89-95. https://doi.org/10.1080/13510002.1995.11746964
Jamieson DJ. The Effect of Oxidative Stress On Saccharomyces Cerevisiae. Redox Rep. 1995;1(2):89-95. PubMed PMID: 27405549.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - The effect of oxidative stress on Saccharomyces cerevisiae. A1 - Jamieson,D J, PY - 2016/7/14/entrez PY - 1995/2/1/pubmed PY - 1995/2/1/medline SP - 89 EP - 95 JF - Redox report : communications in free radical research JO - Redox Rep VL - 1 IS - 2 N2 - Reactive oxygen species (ROS) are highly reactive and damage cellular constituents such as DNA, lipids and proteins. All aerobically growing organisms are exposed to ROS. As a result most organisms have evolved mechanisms to protect their components against ROS. This review describes the oxidant defence systems of the yeast Saccharomyces cerevisiae, which is an ideal eukaryotic model system to analyse the molecular events in response to oxidative stress. Yeast posses a similar range of anti-oxidant molecules and enzymes to those found in higher eukaryotes. Exponentially growing S. cerevisiae have at least two distinct adaptive stress responses to oxidants, one of which is responsive towards H2O2 and the other is induced by exposure to compounds that generate superoxide anion. The identification of a number of transcription factors (Yap1, Mac1, Ace1) which are important in the regulation of metal metabolism and homeostasis that are also involved in mediating resistance towards oxidants suggests a link between metal metabolism and oxidative stress. Heat-shock, nutrient starvation and entry into the stationary phase of growth also lead to increased resistance toward oxidants. The available evidence suggests that the mechanism by which these stresses result in oxidant resistance may be different from those utilised by exponentially growing cells. SN - 1351-0002 UR - https://www.unboundmedicine.com/medline/citation/27405549/The_effect_of_oxidative_stress_on_Saccharomyces_cerevisiae_ DB - PRIME DP - Unbound Medicine ER -
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