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Lag phase-associated iron accumulation is likely a microbial counter-strategy to host iron sequestration: Role of the ferric uptake regulator (fur)

机译:滞后相相关的铁蓄积可能是导致微生物螯合铁螯合的一种微生物对策:铁摄取调节剂(fur)的作用

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摘要

Iron is an essential metal for almost all forms of life, but potentiates oxidative stress via Fenton catalysis. During microbial lag phase there is a rapid influx of iron with concomitant oxidative hypersensitivity. How and why iron accumulation occurs remains to be elucidated. Iron homeostasis in prokaryotes is mediated by the ferric uptake regulator (Fur), an iron-activated global regulator that controls intracellular iron levels by feedback inhibition with the metal. Herein it is postulated, based on the expression profiles of antioxidant enzymes within the Fur regulon as observed in wild type and Afur mutants, that iron accumulation is mediated by a transitively low concentration of the Fur protein during lag phase. Vertebrate hosts sequester iron upon 'sensing' an infection in order to retard microbial proliferation through a process known as 'nutritional immunity'.
机译:铁是几乎所有形式的生活中必不可少的金属,但通过Fenton催化可增强氧化应激。在微生物滞后阶段,铁快速流入并伴有氧化超敏反应。铁积累的发生方式和原因还有待阐明。原核生物中的铁稳态是由铁摄取调节剂(Fur)介导的,铁调节剂是一种铁激活的全局调节剂,通过与金属的反馈抑制作用来控制细胞内铁水平。在此,基于在野生型和Afur突变体中观察到的Fur调节子内的抗氧化酶的表达谱,可以推测铁的蓄积是由滞后阶段的Fur蛋白的过渡性低浓度介导的。脊椎动物在“感测到”感染后会螯合铁,以通过称为“营养免疫”的过程阻止微生物繁殖。

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