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首页> 外文期刊>Microbiology >High-level resistance to oxidative stress in Lactococcus lactis conferred by Bacillus subtilis catalase KatE
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High-level resistance to oxidative stress in Lactococcus lactis conferred by Bacillus subtilis catalase KatE

机译:乳杆菌枯草芽孢杆菌酶凯特赋予乳酸乳酸乳酸乳酸乳酸乳酸盐应激的高水平抗性

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Lactococcus lactis, a lactic acid bacterium widely used for food fermentations, is often exposed to damaging stress conditions. In particular, oxidative stress leads to DNA, protein and membrane damages that can be lethal. As L. lactis has no catalase, the impact of production of the Bacillus subtilis haem catalase KatE on its oxidative stress resistance was tested. This cytoplasmic catalase was engineered for extracellular expression in L. lactis with an optimization strategy based on fusion to the nisin-inducible promoter and a lactococcal signal peptide (SPUsp45). The production of KatE by L. lactis conferred an 800-fold increase in survival after 1?h exposure to 4?mM hydrogen peroxide, and a 160-fold greater survival in long-term (3?days) survival of aerated cultures in a cydA mutant, which is unable to respire. The presence of KatE protected DNA from oxidative damage and limited its degradation after long-term aeration in a cydA/recA mutant, defective in DNA repair. L. lactis is thus able to produce active catalase that can provide efficient antioxidant activity.
机译:乳酸乳酸乳酸,一种广泛用于食品发酵的乳酸菌,通常暴露于损伤胁迫条件。特别地,氧化应激导致可以致死的DNA,蛋白质和膜损伤。随着L.乳酸没有过氧化氢酶,测试了枯草芽孢杆菌血酮过氧化氢酶Kate对其氧化胁迫性的影响。这种细胞质过氧化氢酶在L.乳酸中的细胞外表达为基于融合到Nisin诱导促进剂和乳酰基信号肽(Spusp45)的优化策略。 L.乳酸的凯特的生产在1℃暴露于4?Hm氢过氧化氢后赋予生存率为800倍,长期(3?天)在a中的加气培养物的存活率160倍Cyda突变体,无法呼吸。 K酸酯的存在受到氧化损伤的影响,并限制了在CYDA / RECA突变体中长期通气后的降解,在DNA修复中有缺陷。因此,乳酸乳裂能够产生可提供有效抗氧化活性的活性炭酶。

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