Publication Cover
Redox Report
Communications in Free Radical Research
Volume 5, 2000 - Issue 5
2,353
Views
81
CrossRef citations to date
0
Altmetric
Research Articles

Adaptive response of the yeast Saccharomyces cerevisiae to reactive oxygen species: defences, damage and death

&
Pages 277-285 | Published online: 19 Jul 2013

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Diana Mariani, Cristiane J. Mathias, Carmelita G. da Silva, Ricardo da Silva Herdeiro, Ricardo Pereira, Anita D. Panek, Elis C.A. Eleutherio & Marcos Dias Pereira. (2008) Involvement of glutathione transferases, Gtt1and Gtt2, with oxidative stress response generated by H2O2 during growth of Saccharomyces cerevisiae . Redox Report 13:6, pages 246-254.
Read now
Patricia N. Fernandes, Sergio C. Mannarino, Carmelita G. Silva, Marcos D. Pereira, Anita D. Panek & Elis C.A. Eleutherio. (2007) Oxidative stress response in eukaryotes: effect of glutathione, superoxide dismutase and catalase on adaptation to peroxide and menadione stresses in Saccharomyces cerevisiae . Redox Report 12:5, pages 236-244.
Read now

Articles from other publishers (79)

Pramod Kumar Sahu, K. Jayalakshmi, Jyotsana Tilgam, Amrita Gupta, Yalavarthi Nagaraju, Adarsh Kumar, Saima Hamid, Harsh Vardhan Singh, Tatiana Minkina, Vishnu D. Rajput & Mahendra Vikram Singh Rajawat. (2022) ROS generated from biotic stress: Effects on plants and alleviation by endophytic microbes. Frontiers in Plant Science 13.
Crossref
Ricardo A. Ribeiro, Nuno Bourbon-Melo & Isabel Sá-Correia. (2022) The cell wall and the response and tolerance to stresses of biotechnological relevance in yeasts. Frontiers in Microbiology 13.
Crossref
Giuseppe Pezzotti, Miyuki Kobara, Tamaki Nakaya, Hayata Imamura, Tenma Asai, Nao Miyamoto, Tetsuya Adachi, Toshiro Yamamoto, Narisato Kanamura, Eriko Ohgitani, Elia Marin, Wenliang Zhu, Ichiro Nishimura, Osam Mazda, Tetsuo Nakata & Koichi Makimura. (2022) Raman Study of Pathogenic Candida auris: Imaging Metabolic Machineries in Reaction to Antifungal Drugs. Frontiers in Microbiology 13.
Crossref
Xin Kang, Jiaxuan Zhang, Yali Xu, Xiaoru Zhang, Fengxia Cui & Hao Li. (2022) Knocking-out ARO80 promotes the intracellular ROS accumulation through weakening MAPK pathway of Saccharomyces cerevisiae. Chemical Engineering Science 252, pages 117507.
Crossref
Daniela Catrileo, Sandra Moreira, María Angélica Ganga & Liliana Godoy. (2021) Effect of Light and p-Coumaric Acid on the Growth and Expression of Genes Related to Oxidative Stress in Brettanomyces bruxellensis LAMAP2480. Frontiers in Microbiology 12.
Crossref
Mercè Sunyer-Figueres, Albert Mas, Gemma Beltran & María-Jesús Torija. (2021) Protective Effects of Melatonin on Saccharomyces cerevisiae under Ethanol Stress. Antioxidants 10:11, pages 1735.
Crossref
Cullen Horstmann & Kyoungtae Kim. (2021) Comparing Transcriptome Profiles of Saccharomyces Cerevisiae Cells Exposed to Cadmium Selenide/Zinc Sulfide and Indium Phosphide/Zinc Sulfide. Genes 12:3, pages 428.
Crossref
Qiang Wang, Ambika Pokhrel & Jeffrey J. Coleman. (2021) The Extracellular Superoxide Dismutase Sod5 From Fusarium oxysporum Is Localized in Response to External Stimuli and Contributes to Fungal Pathogenicity. Frontiers in Plant Science 12.
Crossref
Prajita Pandey, Khadiza Zaman, Laszlo Prokai & Vladimir Shulaev. (2020) Comparative Proteomics Analysis Reveals Unique Early Signaling Response of Saccharomyces cerevisiae to Oxidants with Different Mechanism of Action. International Journal of Molecular Sciences 22:1, pages 167.
Crossref
Mercè Sunyer-Figueres, Jennifer Vázquez, Albert Mas, María-Jesús Torija & Gemma Beltran. (2020) Transcriptomic Insights into the Effect of Melatonin in Saccharomyces cerevisiae in the Presence and Absence of Oxidative Stress. Antioxidants 9:10, pages 947.
Crossref
Guido F. Novelli Poisson, Ángela B. Juárez, Diego G. Noseda, María C. Ríos de Molina & Miguel A. Galvagno. (2020) Adaptive Evolution Strategy to Enhance the Performance of Scheffersomyces stipitis for Industrial Cellulosic Ethanol Production . Industrial Biotechnology 16:5, pages 281-289.
Crossref
Munise Zaparoli, Naiara Elisa Kreling & Luciane Maria Colla. (2020) Increasing the production of extracellular biosurfactants from Saccharomyces cerevisiae . Environmental Quality Management 29:4, pages 51-58.
Crossref
Jennifer Vázquez, Karlheinz Grillitsch, Günther Daum, Albert Mas, Gemma Beltran & María Jesús Torija. (2019) The role of the membrane lipid composition in the oxidative stress tolerance of different wine yeasts. Food Microbiology 78, pages 143-154.
Crossref
Zuohua Zhu, Zhigang Shi, Chunliang Xie, Wenbing Gong, Zhenxiu Hu & Yuande Peng. (2019) A novel mechanism of Gamma-aminobutyric acid (GABA) protecting human umbilical vein endothelial cells (HUVECs) against H2O2-induced oxidative injury. Comparative Biochemistry and Physiology Part C: Toxicology & Pharmacology 217, pages 68-75.
Crossref
Santanu Palchaudhuri & Dhrubajyoti Chattopadhyay. 2019. Oxidative Stress in Microbial Diseases. Oxidative Stress in Microbial Diseases 379 393 .
N. Gurdo, G.F. Novelli Poisson, Á.B. Juárez, M.C. Rios de Molina & M.A. Galvagno. (2018) Improved robustness of an ethanologenic yeast strain through adaptive evolution in acetic acid is associated with its enzymatic antioxidant ability. Journal of Applied Microbiology 125:3, pages 766-776.
Crossref
Jennifer Vázquez, Karlheinz Grillitsch, Günther Daum, Albert Mas, María-Jesús Torija & Gemma Beltran. (2018) Melatonin Minimizes the Impact of Oxidative Stress Induced by Hydrogen Peroxide in Saccharomyces and Non-conventional Yeast. Frontiers in Microbiology 9.
Crossref
Marta Castrillo, Eva M. Luque, Javier Pardo-Medina, M. Carmen Limón, Luis M. Corrochano & Javier Avalos. (2018) Transcriptional basis of enhanced photoinduction of carotenoid biosynthesis at low temperature in the fungus Neurospora crassa. Research in Microbiology 169:2, pages 78-89.
Crossref
Jennifer V?zquez, Beatriz Gonz?lez, Ver?nica Sempere, Albert Mas, Mar?a Jes?s Torija & Gemma Beltran. (2017) Melatonin Reduces Oxidative Stress Damage Induced by Hydrogen Peroxide in Saccharomyces cerevisiae. Frontiers in Microbiology 8.
Crossref
Kim Vriens, Phalguni Tewari Kumar, Caroline Struyfs, Tanne L. Cools, Pieter Spincemaille, Tadej Kokalj, Belém Sampaio-Marques, Paula Ludovico, Jeroen Lammertyn, Bruno P. A. Cammue & Karin Thevissen. (2017) Increasing the Fungicidal Action of Amphotericin B by Inhibiting the Nitric Oxide-Dependent Tolerance Pathway. Oxidative Medicine and Cellular Longevity 2017, pages 1-17.
Crossref
Ryo Furuta, Naoyuki Kurake, Kenji Ishikawa, Keigo Takeda, Hiroshi Hashizume, Hiroki Kondo, Takayuki Ohta, Masafumi Ito, Makoto Sekine & Masaru Hori. (2017) Intracellular-molecular changes in plasma-irradiated budding yeast cells studied using multiplex coherent anti-Stokes Raman scattering microscopy. Physical Chemistry Chemical Physics 19:21, pages 13438-13442.
Crossref
Ce Shi, Xiangrong Chen, Zuojia Liu, Rizeng Meng, Xingchen Zhao, Zonghui Liu & Na Guo. (2017) Oleuropein protects L-02 cells against H2O2-induced oxidative stress by increasing SOD1, GPx1 and CAT expression. Biomedicine & Pharmacotherapy 85, pages 740-748.
Crossref
Roberto Dragone, Rachel Cheng, Gerardo Grasso & Chiara Frazzoli. (2015) Diuron in Water: Functional Toxicity and Intracellular Detoxification Patterns of Active Concentrations Assayed in Tandem by a Yeast-Based Probe. International Journal of Environmental Research and Public Health 12:4, pages 3731-3740.
Crossref
Mayra Cuéllar-Cruz, Everardo López-Romero, Estela Ruiz-Baca & Roberto Zazueta-Sandoval. (2014) Differential Response of Candida albicans and Candida glabrata to Oxidative and Nitrosative Stresses. Current Microbiology 69:5, pages 733-739.
Crossref
Nuria Pujol-Carrion, Mima I. Petkova, Luis Serrano & Maria Angeles de la Torre-Ruiz. (2013) The MAP Kinase Slt2 Is Involved in Vacuolar Function and Actin Remodeling in Saccharomyces cerevisiae Mutants Affected by Endogenous Oxidative Stress. Applied and Environmental Microbiology 79:20, pages 6459-6471.
Crossref
Ruth S?nchez-Fresneda, Jos? P. Guirao-Abad, Alejandra Arg?elles, Pilar Gonz?lez-P?rraga, Eulogio Valent?n & Juan-Carlos Arg?elles. (2013) Specific stress-induced storage of trehalose, glycerol and d-arabitol in response to oxidative and osmotic stress in Candida albicans. Biochemical and Biophysical Research Communications 430:4, pages 1334-1339.
Crossref
Rocío Gómez-Pastor, Roberto Pérez-Torrado, Elisa Cabiscol, Joaquim Ros & Emilia Matallana. (2012) Engineered Trx2p industrial yeast strain protects glycolysis and fermentation proteins from oxidative carbonylation during biomass propagation. Microbial Cell Factories 11:1.
Crossref
Sofia Costa-de-Oliveira, Belém Sampaio-Marques, Matilde Barbosa, Elisabete Ricardo, Cidália Pina-Vaz, Paula Ludovico & Acácio G. Rodrigues. (2012) An alternative respiratory pathway on Candida krusei: implications on susceptibility profile and oxidative stress. FEMS Yeast Research 12:4, pages 423-429.
Crossref
Guenther Witzany. 2012. Biocommunication of Fungi. Biocommunication of Fungi 1 18 .
Il-Sup Kim, Haesun Yun, Ingnyol Jin & Ho-Sung Yoon. (2011) Cyclophilin A Cpr1 Protein Modulates the Response of Antioxidant Molecules to Menadione-induced Oxidative Stress in Saccharomyces cerevisiae KNU5377Y. Osong Public Health and Research Perspectives 2:3, pages 171-177.
Crossref
Il-Sup Kim, Ho-Yong Sohn & Ingnyol Jin. (2011) Adaptive stress response to menadione-induced oxidative stress in Saccharomyces cerevisiae KNU5377. The Journal of Microbiology 49:5, pages 816-823.
Crossref
António Daniel Barbosa, Hugo Osório, Kellie J. Sims, Teresa Almeida, Mariana Alves, Jacek Bielawski, Maria Amélia Amorim, Pedro Moradas-Ferreira, Yusuf A. Hannun & Vítor Costa. (2011) Role for Sit4p-dependent mitochondrial dysfunction in mediating the shortened chronological lifespan and oxidative stress sensitivity of Isc1p-deficient cells. Molecular Microbiology 81:2, pages 515-527.
Crossref
Il-Sup Kim, Ingnyol Jin & Ho-Sung Yoon. (2010) Decarbonylated cyclophilin A Cpr1 protein protects Saccharomyces cerevisiae KNU5377Y when exposed to stress induced by menadione. Cell Stress and Chaperones 16:1, pages 1-14.
Crossref
Claudia‐Valentina Popa, Ioana Dumitru, Lavinia L. Ruta, Andrei F. Danet & Ileana C. Farcasanu. (2010) Exogenous oxidative stress induces Ca 2+ release in the yeast Saccharomyces cerevisiae . The FEBS Journal 277:19, pages 4027-4038.
Crossref
Sara Landolfo, Giacomo Zara, Severino Zara, Marilena Budroni, Maurizio Ciani & Ilaria Mannazzu. (2010) Oleic acid and ergosterol supplementation mitigates oxidative stress in wine strains of Saccharomyces cerevisiae. International Journal of Food Microbiology 141:3, pages 229-235.
Crossref
Manuel González-Guerrero, Elodie Oger, Karim Benabdellah, Concepción Azcón-Aguilar, Luisa Lanfranco & Nuria Ferrol. (2010) Characterization of a CuZn superoxide dismutase gene in the arbuscular mycorrhizal fungus Glomus intraradices. Current Genetics 56:3, pages 265-274.
Crossref
Timea Stromájer-Rácz, Zoltán Gazdag, József Belágyi, Csaba Vágvölgyi, Richard Y. Zhao & Miklós Pesti. (2010) Oxidative stress induced by HIV-1 F34IVpr in Schizosaccharomyces pombe is one of its multiple functions. Experimental and Molecular Pathology 88:1, pages 38-44.
Crossref
Günther WitzanyGünther Witzany. 2010. Biocommunication and Natural Genome Editing. Biocommunication and Natural Genome Editing 89 107 .
Elissavet Nikolaou, Ino Agrafioti, Michael Stumpf, Janet Quinn, Ian Stansfield & Alistair JP Brown. (2009) Phylogenetic diversity of stress signalling pathways in fungi. BMC Evolutionary Biology 9:1.
Crossref
Halyna Semchyshyn. (2009) Hydrogen peroxide-induced response in E. coli and S. cerevisiae: different stages of the flow of the genetic information. Open Life Sciences 4:2, pages 142-153.
Crossref
. (2009) Increased Antioxidative Activities against Oxidative Stress in Saccharomyces cerevisiae KNU5377. Journal of Life Science 19:4, pages 429-435.
Crossref
Lori A. Rowe, Natalya Degtyareva & Paul W. Doetsch. (2008) DNA damage-induced reactive oxygen species (ROS) stress response in Saccharomyces cerevisiae. Free Radical Biology and Medicine 45:8, pages 1167-1177.
Crossref
F. Auchere, R. Santos, S. Planamente, E. Lesuisse & J.-M. Camadro. (2008) Glutathione-dependent redox status of frataxin-deficient cells in a yeast model of Friedreich's ataxia. Human Molecular Genetics 17:18, pages 2790-2802.
Crossref
Gustavo M. Silva, Luis E.S. Netto, Karen F. Discola, Gilberto M. Piassa‐Filho, Daniel C. Pimenta, José A. Bárcena & Marilene Demasi. (2008) Role of glutaredoxin 2 and cytosolic thioredoxins in cysteinyl‐based redox modification of the 20S proteasome. The FEBS Journal 275:11, pages 2942-2955.
Crossref
Audrey P. Gasch. (2007) Comparative genomics of the environmental stress response in ascomycete fungi. Yeast 24:11, pages 961-976.
Crossref
Yuriy R. Boretsky, Olga V. Protchenko, Tetiana M. Prokopiv, Igor O. Mukalov, Daria V. Fedorovych & Andriy A. Sibirny. (2007) Mutations and environmental factors affecting regulation of riboflavin synthesis and iron assimilation also cause oxidative stress in the yeast Pichia guilliermondii . Journal of Basic Microbiology 47:5, pages 371-377.
Crossref
Ethan O. Perlstein, Eric J. DeedsOrr Ashenberg, Eugene I. Shakhnovich & Stuart L. Schreiber. (2007) Quantifying fitness distributions and phenotypic relationships in recombinant yeast populations. Proceedings of the National Academy of Sciences 104:25, pages 10553-10558.
Crossref
Marta Marques, Dominik Mojzita, Maria A. Amorim, Teresa Almeida, Stefan Hohmann, Pedro Moradas-Ferreira & Vítor Costa. (2006) The Pep4p vacuolar proteinase contributes to the turnover of oxidized proteins but PEP4 overexpression is not sufficient to increase chronological lifespan in Saccharomyces cerevisiae. Microbiology 152:12, pages 3595-3605.
Crossref
Ilsup Kim, Haesun Yun, Hitoshi Iwahashi & Ingnyol Jin. (2006) Genome-wide expression analyses of adaptive response against medadione-induced oxidative stress in Saccharomyces cerevisiae KNU5377. Process Biochemistry 41:11, pages 2305-2313.
Crossref
Lionel Tafforeau, Sophie Le Blastier, Sophie Bamps, Monique Dewez, Jean Vandenhaute & Damien Hermand. (2006) Repression of ergosterol level during oxidative stress by fission yeast F-box protein Pof14 independently of SCF. The EMBO Journal 25:19, pages 4547-4556.
Crossref
Caroline Westwater, Edward Balish & David A. Schofield. (2005) Candida albicans -Conditioned Medium Protects Yeast Cells from Oxidative Stress: a Possible Link between Quorum Sensing and Oxidative Stress Resistance . Eukaryotic Cell 4:10, pages 1654-1661.
Crossref
Kasper J Kyng, Alfred May, Tinna Stevnsner, Kevin G Becker, Steen Kølvrå & Vilhelm A Bohr. (2005) Gene expression responses to DNA damage are altered in human aging and in Werner Syndrome. Oncogene 24:32, pages 5026-5042.
Crossref
Maria Sueli S. Felipe, Rosângela V. Andrade, Fabrício B.M. Arraes, André M. Nicola, Andréa Q. Maranhão, Fernando A.G. Torres, Ildinete Silva-Pereira, Márcio J. Poças-Fonseca, Élida G. Campos, Lídia M.P. Moraes, Patrícia A. Andrade, Aldo H.F.P. Tavares, Simoneide S. Silva, Cynthia M. Kyaw, Diorge P. Souza, PbGenome Network, Maristela Pereira, Rosália S.A. Jesuíno, Edmar V. Andrade, Juliana A. Parente, Gisele S. Oliveira, Mônica S. Barbosa, Natália F. Martins, Ana L. Fachin, Renato S. Cardoso, Geraldo A.S. Passos, Nalvo F. Almeida, Maria Emília M.T. Walter, Célia M.A. Soares, Maria José A. Carvalho & Marcelo M. Brígido. (2005) Transcriptional Profiles of the Human Pathogenic Fungus Paracoccidioides brasiliensis in Mycelium and Yeast Cells. Journal of Biological Chemistry 280:26, pages 24706-24714.
Crossref
Nicholas Harris, Marcus Bachler, Vitor Costa, Mehdi Mollapour, Pedro Moradas-Ferreira & Peter W. Piper. (2005) Overexpressed Sod1p acts either to reduce or to increase the lifespans and stress resistance of yeast, depending on whether it is Cu2+-deficient or an active Cu,Zn-superoxide dismutase. Aging Cell 4:1, pages 41-52.
Crossref
Jun-ichi Yoshida & Tokio Tani. (2005) Hsp16p Is Required for Thermotolerance in Nuclear mRNA Export in Fission Yeast Schizosaccharomyces pombe. Cell Structure and Function 29:5/6, pages 125-138.
Crossref
Aminah Ikner & Kazuhiro Shiozaki. (2005) Yeast signaling pathways in the oxidative stress response. Mutation Research/Fundamental and Molecular Mechanisms of Mutagenesis 569:1-2, pages 13-27.
Crossref
K. Chládková, T. Hendrych, D. Gášková, P. Goroncy-Bermes & K. Sigler. (2004) Effect of biocides onS. cerevisiae: Relationship between short-term membrane affliction and long-term cell killing. Folia Microbiologica 49:6, pages 718-724.
Crossref
R. Čadek, K. Chládková, K. Sigler & D. Gášková. (2004) Impact of the growth phase on the activity of multidrug resistance pumps and membrane potential of S. cerevisiae: effect of pump overproduction and carbon source. Biochimica et Biophysica Acta (BBA) - Biomembranes 1665:1-2, pages 111-117.
Crossref
Daniela Cristina Munhoz & Luis Eduardo Soares Netto. (2004) Cytosolic Thioredoxin Peroxidase I and II Are Important Defenses of Yeast against Organic Hydroperoxide Insult. Journal of Biological Chemistry 279:34, pages 35219-35227.
Crossref
István Pócsi, Rolf A. Prade & Michel J. Penninckx. 2004. 1 76 .
W. Mark Toone & Nic Jones. 2004. The Molecular Biology of Schizosaccharomyces pombe. The Molecular Biology of Schizosaccharomyces pombe 57 72 .
Paula D. B. Adamis, Débora Silva Gomes, Marcos Dias Pereira, Joelma Freire de Mesquita, Maria Lucia Couto C. Pinto, Anita D. Panek & Elis C. A. Eleutherio. (2004) The effect of superoxide dismutase deficiency on cadmium stress. Journal of Biochemical and Molecular Toxicology 18:1, pages 12-17.
Crossref
Pilar Gonz?lez-P?rraga, Jos? A. Hern?ndez & Juan Carlos Arg?elles. (2003) Role of antioxidant enzymatic defences against oxidative stress (H 2 O 2 ) and the acquisition of oxidative tolerance in Candida albicans . Yeast 20:14, pages 1161-1169.
Crossref
Nicholas Harris, Vitor Costa, Morag MacLean, Mehdi Mollapour, Pedro Moradas-Ferreira & Peter W Piper. (2003) Mnsod overexpression extends the yeast chronological (G0) life span but acts independently of Sir2p histone deacetylase to shorten the replicative life span of dividing cells. Free Radical Biology and Medicine 34:12, pages 1599-1606.
Crossref
Vasilis Vasiliou, Lubna Qamar, Aglaia Pappa, Nickolas A. Sophos & Dennis R. Petersen. (2003) Involvement of the electrophile responsive element and p53 in the activation of hepatic stellate cells as a response to electrophile menadione. Archives of Biochemistry and Biophysics 413:2, pages 164-171.
Crossref
Rebeca Alonso-Monge, Federico Navarro-García, Elvira Román, Ana I. Negredo, Blanca Eisman, César Nombela & Jesús Pla. (2003) The Hog1 Mitogen-Activated Protein Kinase Is Essential in the Oxidative Stress Response and Chlamydospore Formation in Candida albicans . Eukaryotic Cell 2:2, pages 351-361.
Crossref
Hugo Osorio, Elisabete Carvalho, Mercedes del Valle, María A. Günther Sillero, Pedro Moradas‐Ferreira & Antonio Sillero. (2003) H 2 O 2 , but not menadione, provokes a decrease in the ATP and an increase in the inosine levels in Saccharomyces cerevisiae . European Journal of Biochemistry 270:7, pages 1578-1589.
Crossref
M.D Pereira, R.S Herdeiro, P.N Fernandes, E.C.A Eleutherio & A.D Panek. (2003) Targets of oxidative stress in yeast sod mutants. Biochimica et Biophysica Acta (BBA) - General Subjects 1620:1-3, pages 245-251.
Crossref
Paul R Ingram, Natalie Z.M Homer, Rachel A Smith, Andrew R Pitt, Clive G Wilson, Orest Olejnik & Corinne M Spickett. (2003) The interaction of sodium chlorite with phospholipids and glutathione: a comparison of effects in vitro, in mammalian and in microbial cells. Archives of Biochemistry and Biophysics 410:1, pages 121-133.
Crossref
Dongrong Chen, W. Mark Toone, Juan MataRachel LyneGavin BurnsKatja Kivinen, Alvis Brazma, Nic Jones & Jürg Bähler. (2003) Global Transcriptional Responses of Fission Yeast to Environmental Stress. Molecular Biology of the Cell 14:1, pages 214-229.
Crossref
W.Scott Moye-Rowley. 2003. 251 279 .
Francisca Randez-Gil, Jaime Aguilera, Antonio Codón, Ana M. Rincón, Francisco Estruch & Jose A. Prieto. 2003. Functional Genetics of Industrial Yeasts. Functional Genetics of Industrial Yeasts 57 97 .
Vítor M.V Costa, Maria Amélia Amorim, Alexandre Quintanilha & Pedro Moradas-Ferreira. (2002) Hydrogen peroxide-induced carbonylation of key metabolic enzymes in Saccharomyces cerevisiae: the involvement of the oxidative stress response regulators Yap1 and Skn7. Free Radical Biology and Medicine 33:11, pages 1507-1515.
Crossref
Fernando Antunes, Derick Han & Enrique Cadenas. (2002) Relative contributions of heart mitochondria glutathione peroxidase and catalase to H2O2 detoxification in in vivo conditions. Free Radical Biology and Medicine 33:9, pages 1260-1267.
Crossref
J. R. Cypser & T. E. Johnson. (2002) Multiple Stressors in Caenorhabditis elegans Induce Stress Hormesis and Extended Longevity. The Journals of Gerontology Series A: Biological Sciences and Medical Sciences 57:3, pages B109-B114.
Crossref
Janet QuinnVictoria J. FindlayKeren Dawson, Jonathan B.A. Millar, Nic Jones, Brian A. MorganW. Mark Toone. (2002) Distinct Regulatory Proteins Control the Graded Transcriptional Response to Increasing H 2 O 2 Levels in Fission Yeast Schizosaccharomyces pombe . Molecular Biology of the Cell 13:3, pages 805-816.
Crossref
W. Scott Moye-Rowley. (2002) Transcription Factors Regulating the Response to Oxidative Stress in Yeast. Antioxidants & Redox Signaling 4:1, pages 123-140.
Crossref
Gisele Monteiro, Gonçalo Amarante Guimarães Pereira & Luis Eduardo Soares Netto. (2002) Regulation of mitochondrial thioredoxin peroxidase I expression by two different pathways: one dependent on cAMP and the other on heme. Free Radical Biology and Medicine 32:3, pages 278-288.
Crossref
JAMES KNOWLES & SIBEL ROLLER. (2001) Efficacy of Chitosan, Carvacrol, and a Hydrogen Peroxide–Based Biocide against Foodborne Microorganisms in Suspension and Adhered to Stainless Steel. Journal of Food Protection 64:10, pages 1542-1548.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.