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[短时间和长时间氧化应激下青霉F-648对过氧化氢的抗性]

[Resistance of Penicillium piceum F-648 to hydrogen peroxide under short term and prolonged oxidative stress].

作者信息

Pavlovskaia Zh I, Mikhaĭlova R V, Moroz I V, Eremin A N

机构信息

Institute of Microbiology, Belarusian Academy of Sciences, Minsk, 220141, Belarus.

出版信息

Prikl Biokhim Mikrobiol. 2003 Jan-Feb;39(1):31-6.

Abstract

Resistance of Penicillium piceum F-648 to hydrogen peroxide under short-term and prolonged oxidative stress was studied. An increase in the activity of intracellular catalase in fungal cells after short-term exposure to hydrogen peroxide was shown. Activation of fungal cells induced by H2O2 depends on H2O2 concentration, time of exposure, and the growth phase of the fungus. Variants of P. piceum F-648 that produced two forms of extracellular catalase with different catalytic properties were obtained due to prolonged adaptation to H2O2. Catalase with low affinity for substrate was produced predominantly by the parent culture and variant 3; however, a high substrate affinity of catalase was observed in variant 5. Variant 5 of P. peniceum F-648 displayed a high catalytic activity and operational stability of catalase in the presence of phosphate ions and the concentration of substrate less than 30 mM at pH more than 7.

摘要

研究了短梗青霉F-648在短期和长期氧化应激下对过氧化氢的抗性。结果表明,真菌细胞在短期暴露于过氧化氢后,细胞内过氧化氢酶的活性增加。H2O2诱导的真菌细胞活化取决于H2O2浓度、暴露时间和真菌的生长阶段。由于对H2O2的长期适应,获得了产生两种具有不同催化特性的细胞外过氧化氢酶形式的短梗青霉F-648变体。亲本培养物和变体3主要产生对底物亲和力低的过氧化氢酶;然而,在变体5中观察到过氧化氢酶具有高底物亲和力。短梗青霉F-648的变体5在pH值大于7、存在磷酸根离子且底物浓度小于30 mM的情况下,显示出过氧化氢酶的高催化活性和操作稳定性。

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