4.6 Article

Expression of the Laccase Gene from a White Rot Fungus in Pichia pastoris Can Enhance the Resistance of This Yeast to H2O2-Mediated Oxidative Stress by Stimulating the Glutathione-Based Antioxidative System

Journal

APPLIED AND ENVIRONMENTAL MICROBIOLOGY
Volume 78, Issue 16, Pages 5845-5854

Publisher

AMER SOC MICROBIOLOGY
DOI: 10.1128/AEM.00218-12

Keywords

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Funding

  1. National Natural Sciences Foundation of China [31070069, 30800007, 31170104]
  2. Doctoral Fund of the New Teacher Program of the Ministry of Education of China [200804871024]
  3. Fundamental Research Funds for the Central Universities [HUST M2009046, 2011TS083]
  4. Natural Sciences Foundation of Hubei Province [2009CDB009]
  5. Major S&T Projects on the Cultivation of New Varieties of Genetically Modified Organisms [2009ZX08009-120B]
  6. Major State Basic Research Development Program of China [2007CB210200]
  7. Open Fund of Key Laboratory of Oil Crops Biology of the Ministry of Agriculture in China

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Laccase is a copper-containing polyphenol oxidase that has great potential in industrial and biotechnological applications. Previous research has suggested that fungal laccase may be involved in the defense against oxidative stress, but there is little direct evidence supporting this hypothesis, and the mechanism by which laccase protects cells from oxidative stress also remains unclear. Here, we report that the expression of the laccase gene from white rot fungus in Pichia pastoris can significantly enhance the resistance of yeast to H2O2-mediated oxidative stress. The expression of laccase in yeast was found to confer a strong ability to scavenge intracellular H2O2 and to protect cells from lipid oxidative damage. The mechanism by which laccase gene expression increases resistance to oxidative stress was then investigated further. We found that laccase gene expression in Pichia pastoris could increase the level of glutathione-based antioxidative activity, including the intracellular glutathione levels and the enzymatic activity of glutathione peroxidase, glutathione reductase, and gamma-glutamylcysteine synthetase. The transcription of the laccase gene in Pichia pastoris was found to be enhanced by the oxidative stress caused by exogenous H2O2. The stimulation of laccase gene expression in response to exogenous H2O2 stress further contributed to the transcriptional induction of the genes involved in the glutathione-dependent antioxidative system, including PpYAP1, PpGPX1, PpPMP20, PpGLR1, and PpGSH1. Taken together, these results suggest that the expression of the laccase gene in Pichia pastoris can enhance the resistance of yeast to H2O2-mediated oxidative stress by stimulating the glutathione-based antioxidative system to protect the cell from oxidative damage.

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