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Oxidative Stress Protection and Glutathione Metabolism in Response to Hydrogen Peroxide and Menadione in Riboflavinogenic Fungus Ashbya gossypii
, S. Kavitha
Published in Humana Press Inc.
2014
PMID: 25178419
Volume: 174
   
Issue: 6
Pages: 2307 - 2325
Abstract
Ashbya gossypii is a plant pathogen and a natural overproducer of riboflavin and is used for industrial riboflavin production. A few literature reports depict a link between riboflavin overproduction and stress in this fungus. However, the stress protection mechanisms and glutathione metabolism are not much explored in A. gossypii. In the present study, an increase in the activity of catalase and superoxide dismutase was observed in response to hydrogen peroxide and menadione. The lipid peroxide and membrane lipid peroxide levels were increased by H2O2 and menadione, indicating oxidative damage. The glutathione metabolism was altered with a significant increase in oxidized glutathione (GSSG), glutathione peroxidase (GPX), glutathione S transferase (GST), and glutathione reductase (GR) and a decrease in reduced glutathione (GSH) levels in the presence of H2O2 and menadione. Expression of the genes involved in stress mechanism was analyzed in response to the stressors by semiquantitative RT-PCR. The messenger RNA (mRNA) levels of CTT1, SOD1, GSH1, YAP1, and RIB3 were increased by H2O2 and menadione, indicating the effect of stress at the transcriptional level. A preliminary bioinformatics study for the presence of stress response elements (STRE)/Yap response elements (YRE) depicted that the glutathione metabolic genes, stress genes, and the RIB genes hosted either STRE/YRE, which may enable induction of these genes during stress. © 2014, Springer Science+Business Media New York.
About the journal
JournalApplied Biochemistry and Biotechnology
PublisherHumana Press Inc.
ISSN02732289
Open AccessNo
Concepts (82)
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    Bioinformatics
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    FUNGUS PROTECTION
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    Gene expression
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    Genes
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    Hydrogen peroxide
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    Metabolism
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    Nucleic acids
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    Oxidation
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    Oxygen
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    Peroxides
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    Physiology
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    Polymerase chain reaction
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    RNA
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    Transcription
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    CAT
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    LPX
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    Mrna level
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    SOD
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    STRE/YRE
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    Peptides
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    Catalase
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    COPPER ZINC SUPEROXIDE DISMUTASE
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    CTT1 PROTEIN
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    Glutathione
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    Glutathione disulfide
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    Glutathione peroxidase
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    Glutathione reductase
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    GLUTATHIONE TRANSFERASE
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    GSH1 PROTEIN
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    LIPID PEROXIDE
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    MEMBRANE LIPID
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    MEMBRANE LIPID PEROXIDE
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    MENADIONE
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    Messenger rna
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    Peroxide
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    Protein
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    RIB3 PROTEIN
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    Riboflavin
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    Superoxide
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    Superoxide dismutase
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    Transcription factor
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    TRANSCRIPTION FACTOR MSN2
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    TRANSCRIPTION FACTOR YAP1
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    Unclassified drug
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    Antioxidant
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    MENADIONE
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    Article
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    ASHBYA GOSSYPII
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    Cell protection
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    CELLULAR STRESS RESPONSE
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    Concentration (parameters)
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    Controlled study
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    DNA RESPONSIVE ELEMENT
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    Enzyme activity
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    Enzyme induction
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    EREMOTHECIUM
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    FUNGAL BIOMASS
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    Fungus growth
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    GLUTATHIONE METABOLISM
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    Lipid peroxidation
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    Nonhuman
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    Oxidative stress
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    Reverse transcription polymerase chain reaction
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    Sequence alignment
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    Stress
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    Biomass
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    Biosynthesis
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    Cytology
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    Dose response
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    Drug effects
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    EREMOTHECIUM
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    Extracellular space
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    Gene expression regulation
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    Genetics
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    Time
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    Antioxidants
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    Dose-response relationship, drug
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    EREMOTHECIUM
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    RESPONSE ELEMENTS
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    Time factors
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    Transcription factors
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    VITAMIN K 3