
Doctor Gabriel Perrone
SENIOR LECTURER - HUMAN GENETICS,
Medical Science (SoSH)
Personal
Qualifications
- PhD University of New South Wales
UWS Organisational Unit (School / Division)
- Medical Science (SoSH)
Contact
| Email: | G.Perrone@uws.edu.au |
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| Extension: | 3286 |
| Mobile: | |
| Location: | 21.1.27 Campbelltown |
| Website: |
Publications
Journal Articles
- Ayer, A., Fellermeier, S., Fife, C., Li, S., Smits, G., Meyer, A., Dawes, I. and Perrone, G. (2012), 'A Genome-wide screen in yeast identifies specific oxidative stress genes required for the maintenance of sub-cellular redox homeostasis', PLoS ONE, .
- Ayer, A., Tan, S., Grant, C., Meyer, A., Dawes, I. and Perrone, G. (2010), 'The critical role of glutathione in maintenance of the mitochondrial genome', Free Radicals in Biology and Medicine, 13.
- Greetham, D., Vickerstaff, J., Shenton, D., Perrone, G., Dawes, I. and Grant, C. (2010), 'Thioredoxins function as deglutathionylase enzymes in the yeast Saccharomyces cerevisiae', BMC Biochemistry, .
- Tan, S., Greetham, D., Raeth, S., Grant, C., Dawes, C. and Perrone, G. (2010), 'The thioredoxin-thioredoxin reductase system can function in vivo as an alternative system to reduce oxidized glutathione in Saccharomyces cerevisiae', Journal of Biological Chemistry, 9.
- Thorsen, M., Perrone, G., Kristiansson, E., Traini, M., Dawes, I., Nerman, O. and Tamas, M. (2009), 'Genetic basis of arsenite and cadmium tolerance in Saccharomyces cerevisiae', BMC Genomics, .
- Tan, S., Mariati, M., Dawes, I. and Perrone, G. (2009), 'Cu, Zn superoxide dismutase and NADP(H) homeostasis are required for tolerance of endoplasmic reticulum stress in Saccharomyces cerevisiae', Molecular Biology of the Cell, -84.
- Ng, C., Tan, S., Perrone, G., Thorpe, G., Higgins, V. and Dawes, I. (2008), 'Adaption to hydrogen peroxide in Saccharomyces cerevisiae: The role of NADPH-generating systems and the SKN7 transcription factor.', Free Radical Biology and Medicine, 15.
- Herst, P., Perrone, G., Dawes, I., Bircham, P. and Berridge, M. (2008), 'Plasma membrane electron transport in Saccharomyces cerevisiae depends on the presence of mitochondrial respiratory subunits', FEMS Yeast Research, 9.
- Perrone, G., Tan, S. and Dawes, I. (2008), 'Reactive oxygen species and yeast apoptosis', BBA-Molecular Cell Research, 15.
- Dilda, P., Perrone, G., Philp, A., Lock, R., Dawes, I. and Hogg, P. (2008), 'Insight into the selectivity of arsenic trioxide for acute promyelocytic leukemia cells by characterizing Saccharomyces cerevisiae deletion strains that are sensitive or resistant to the metalloid', The international journal of biochemistry cell biology, 14.
- Perrone, G., Grant, C. and Dawes, I. (2005), 'Genetic and environmental factors influencing glutathione homeostasis in Saccharomyces cerevisiae.', Molecular Biology of the Cell, 13.
- Temple, M., Perrone, G. and Dawes, I. (2005), 'Complex cellular responses to reactive oxygen species', Trends in Cell Biology, 8.
- Heeren, G., Breitenbach, M., Jarolim, S., Laun, P., Rinnerthaler, M., Stolze, K., Perrone, G., Kolwein, S., Nohl, H. and Dawes, I. (2004), 'The role of respiration, reactive oxygen species and oxidative stress in mother cell-specific ageing of yeast strains defective in the RAS signalling pathway.', FEMS Yeast Research, 11.
- Shenton, D., Perrone, G., Quinn, K., Dawes, I. and Grant, C. (2002), 'Regulation of protein S-thiolation by glutaredoxin 5 in the yeast Saccharomyces cerevisiae', Journal of Biological Chemistry, 7.
- Wheeler, G., Quinn, K., Perrone, G., Dawes, I. and Grany, C. (2002), 'Glutathione regulates the expression of gamma-glutamylcysteine synthetase via the Met4 transcription factor', Molecular Microbiology, 2.
Research
Previous Projects
| Title: | Global mechanisms affecting heat stress survival and their implications for cell ageing |
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| Years: | 2012-03-02 - 2013-03-01 |
| ID: | P00020579 |
| UWS Researchers: | Gabriel Perrone |
| Funding: |
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