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Petrobactin Protects against Oxidative Stress and Enhances Sporulation Efficiency in Bacillus anthracis Sterne

机译:Petrobactin防止氧化应激并提高芽孢杆菌斯托纳的孢子效率

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摘要

Bacillus anthracis causes the disease anthrax, which is transmitted via its dormant, spore phase. However, conversion from bacillus to spore is a complex, energetically costly process that requires many nutrients, including iron. B. anthracis requires the siderophore petrobactin to scavenge iron from host environments. We show that, in the Sterne strain, petrobactin is required for efficient sporulation, even when ample iron is available. The petrobactin biosynthesis operon is expressed during sporulation, and petrobactin is biosynthesized during growth in high-iron sporulation medium, but instead of being exported, the petrobactin remains intracellular to protect against oxidative stress and improve sporulation. It is also required for full growth and sporulation in blood (bovine), an essential step for anthrax transmission between mammalian hosts.Bacillus anthracis is a Gram-positive bacillus that under conditions of environmental stress, such as low nutrients, can convert from a vegetative bacillus to a highly durable spore that enables long-term survival. The sporulation process is regulated by a sequential cascade of dedicated transcription factors but requires key nutrients to complete, one of which is iron. Iron acquisition by the iron-scavenging siderophore petrobactin is required for vegetative growth of B. anthracis under iron-depleted conditions and in the host. However, the extent to which petrobactin is involved in spore formation is unknown. This work shows that efficient in vitro sporulation of B. anthracis requires petrobactin, that the petrobactin biosynthesis operon (asbA to -F) is induced prior to sporulation, and that the siderophore itself associates with spores. Petrobactin is also required for oxidative stress protection during late-stage growth and for wild-type levels of sporulation in sporulation medium. Sporulation in bovine blood was found to be petrobactin dependent. Collectively, the in vitro contributions of petrobactin to sporulation as well as growth imply that petrobactin may be required for B. anthracis transmission via the spore during natural infections, in addition to its key known functions during active anthrax infections.
机译:芽孢杆菌导致疾病炭疽病,其通过其休眠,孢子相传播。然而,从芽孢杆菌转化为孢子是一种复杂的,能量昂贵的过程,需要许多营养素,包括铁。 B.炭疽病需要Siderophore Petrobactin从宿主环境中清除铁。我们表明,在斯诺特菌株中,即使有足够的铁,也需要高效的孢子菌株。在孢子术期间表达培养物生物合成术术,并且在高铁孢子介质的生长期间,培养丁蛋白在生长期间进行了生物合成,而不是出口,而不是出口,植物蛋白仍然是细胞内,以防止氧化应激并改善孢子。它还需要血液(牛)的全部生长和孢子,哺乳动物Hosts.bacillus炭疽之间的炭疽传播的基本步骤是一种革兰氏菌,即在环境应激的条件下,例如低营养物质,可以从营养营业植物转换芽孢杆菌至高度耐用的孢子,可实现长期存活。孢子化过程由一系列的专用转录因子调节,但需要键营养成分,其中一个是铁。铁清除铁杆菌的铁采集是在铁耗尽条件下和宿主下的B.炭疽病的营养生长所必需的。然而,培养皿涉及孢子形成的程度是未知的。这项工作表明,B.炭疽病的高效体外孢子需要Petrobactin,即在孢子之前诱导Petrobactin生物合成型术(ASBA至-F),并且纵向与孢子同期缔结。在晚期生长期间还需要培养型抗氧化菌素,并在孢子介质中用于野生型孢子液。发现牛血液中的孢子依赖于petrobactin。总的来说,Petrobactin对孢子率的体外贡献以及生长意味着,除了在活性炭疽感染期间的关键已知功能之外,通过孢子期间可以通过孢子的炭疽病来达到胰植物。

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