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Protection of Bacillus pumilus Spores by Catalases

机译:过氧化氢酶对短小芽孢杆菌芽孢的保护

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Bacillus pumilus SAFR-032, isolated at spacecraft assembly facilities of the National Aeronautics and Space Administration Jet Propulsion Laboratory, is difficult to kill by the sterilization method of choice, which uses liquid or vapor hydrogen peroxide. We identified two manganese catalases, YjqC and BPUM_1305, in spore protein extracts of several B. pumilus strains by using PAGE and mass spectrometric analyses. While the BPUM_1305 catalase was present in six of the B. pumilus strains tested, YjqC was not detected in ATCC 7061 and BG-B79. Furthermore, both catalases were localized in the spore coat layer along with laccase and superoxide dismutase. Although the initial catalase activity in ATCC 7061 spores was higher, it was less stable over time than the SAFR-032 enzyme. We propose that synergistic activity of YjqC and BPUM_1305, along with other coat oxidoreductases, contributes to the enhanced resistance of B. pumilus spores to hydrogen peroxide. We observed that the product of the catalase reaction, gaseous oxygen, forms expanding vesicles on the spore surface, affecting the mechanical integrity of the coat layer, resulting in aggregation of the spores. The accumulation of oxygen gas and aggregations may play a crucial role in limiting further exposure of Bacilli spore surfaces to hydrogen peroxide or other toxic chemicals when water is present.
机译:在国家航空和航天局喷气推进实验室的航天器组装设施中分离出的短小芽孢杆菌SAFR-032,很难通过所选择的使用液体或蒸气过氧化氢的灭菌方法来杀死。通过使用PAGE和质谱分析,我们在几种短小芽孢杆菌菌株的孢子蛋白提取物中鉴定了两种锰过氧化氢酶YjqC和BPUM_1305。尽管BPUM_1305过氧化氢酶存在于所测试的6株短小芽孢杆菌中,但在ATCC 7061和BG-B79中未检测到YjqC。此外,两种过氧化氢酶以及漆酶和超氧化物歧化酶都位于孢子涂层中。尽管ATCC 7061孢子中的初始过氧化氢酶活性较高,但其随时间的稳定性低于SAFR-032酶。我们建议YjqC和BPUM_1305,以及其他外壳氧化还原酶的协同活性,有助于提高短双歧杆菌芽孢对过氧化氢的抗性。我们观察到过氧化氢酶反应的产物气态氧在孢子表面上形成膨胀的囊泡,影响涂层的机械完整性,导致孢子聚集。当存在水时,氧气的积累和聚集可能在限制芽孢杆菌孢子表面进一步暴露于过氧化氢或其他有毒化学物质中起关键作用。

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