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Trends in Cell Biology|June 15, 2005
Complex cellular responses to reactive oxygen speciesMark D Temple, Gabriel G Perrone, Ian W DawesMolecular Biology of the Cell|October 29, 2004
Genetic and environmental factors influencing glutathione homeostasis in Saccharomyces cerevisiaeGabriel G Perrone, Chris M Grant, Ian W DawesBiochimica Et Biophysica Acta|February 27, 2008
Reactive oxygen species and yeast apoptosisGabriel G Perrone, Shi-Xiong Tan, Ian W DawesMolecular Biology of the Cell|January 9, 2009
Cu, Zn superoxide dismutase and NADP(H) homeostasis are required for tolerance of endoplasmic reticulum stress in Saccharomyces cerevisiaeShi-Xiong Tan, Mariati Teo, Yuen T Lam, et al.Frontiers in Bioscience (Landmark Edition)|June 11, 2013
Oxidative stress and neurodegeneration: the yeast model systemMichael Breitenbach, Markus Ralser, Gabriel G Perrone, et al.FEMS Yeast Research|July 29, 2008
Plasma membrane electron transport in Saccharomyces cerevisiae depends on the presence of mitochondrial respiratory subunitsPatries M Herst, Gabriel G Perrone, Ian W Dawes, et al.BMC Biochemistry|January 16, 2010
Thioredoxins function as deglutathionylase enzymes in the yeast Saccharomyces cerevisiaeDarren Greetham, Jill Vickerstaff, Daniel Shenton, et al.Plos One|June 14, 2013
Distinct redox regulation in sub-cellular compartments in response to various stress conditions in Saccharomyces cerevisiaeAnita Ayer, Julia Sanwald, Bethany A Pillay, et al.The Journal of Biological Chemistry|December 3, 2009
The thioredoxin-thioredoxin reductase system can function in vivo as an alternative system to reduce oxidized glutathione in Saccharomyces cerevisiaeShi-Xiong Tan, Darren Greetham, Sebastian Raeth, et al.Pageof 9