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Both toxic and beneficial effects of pyocyanin contribute to the lifecycle of Pseudomonas aeruginosa Pseudomonas aeruginosa

机译:碧粘蛋白的毒性和有益效果涉及铜绿假单胞菌假单胞菌铜绿假单胞菌的生命周期

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摘要

Summary Pseudomonas aeruginosa , an opportunistic pathogen, produces redox‐active pigments called phenazines. Pyocyanin (PYO, the blue phenazine) plays an important role during biofilm development. Paradoxically, PYO auto‐poisoning can stimulate cell death and release of extracellular DNA (eDNA), yet PYO can also promote survival within biofilms when cells are oxidant‐limited. Here, we identify the environmental and physiological conditions in planktonic culture that promote PYO‐mediated cell death. We demonstrate that PYO auto‐poisoning is enhanced when cells are starved for carbon. In the presence of PYO, cells activate a set of genes involved in energy‐dependent defenses, including: (i) the oxidative stress response, (ii) RND efflux systems and (iii) iron‐sulfur cluster biogenesis factors. P. aeruginosa can avoid PYO poisoning when reduced carbon is available, but blockage of adenosine triphosphate (ATP) synthesis either through carbon limitation or direct inhibition of the F 0 F 1 ‐ATP synthase triggers death and eDNA release. Finally, even though PYO is toxic to the majority of the population when cells are nutrient limited, a subset of cells is intrinsically PYO resistant. The effect of PYO on the producer population thus appears to be dynamic, playing dramatically different yet predictable roles throughout distinct stages of growth, helping rationalize its multifaceted contributions to biofilm development.
机译:发明内容铜绿假单胞菌是一种机会主义病原体,生产氧化还原活性色素称为苯脲素。盐氰酸(斑黄,蓝苯吡啶)在生物膜发育过程中起重要作用。矛盾的是,斑型自动中毒可以刺激细胞死亡和细胞外DNA(EDNA)的释放,但是当细胞氧化剂有限时,斑块也可以促进生物膜内的存活。在这里,我们鉴定血管培养的环境和生理条件,促进曲介质介导的细胞死亡。我们证明,当细胞饥饿碳时,斑谱自动中毒得到增强。在π存在下,细胞活化涉及能量依赖性防御的一组基因,包括:(i)氧化应激反应,(ii)RND Efflux系统和(III)铁硫簇生物发生因子。 P.铜绿假单胞菌可以避免在减少碳时粘液中毒,但通过碳限制或直接抑制F 0 F 1 -ATP合成酶触发死亡和edna释放,腺苷三磷酸(ATP)合成堵塞。最后,尽管当细胞是营养有限时,即使斑块对大多数人群毒性有限时,细胞的子集是本质上触发的。因此,Pyo对生产者人口的影响似乎是动态的,在增长的不同阶段中,在不同的阶段中起着显着不同但可预测的作用,有助于将其多方面的贡献合理化为生物膜发育。

著录项

  • 来源
    《Molecular Microbiology》 |2018年第6期|共16页
  • 作者单位

    Division of Biology and Biological EngineeringCalifornia Institute of TechnologyPasadena CA 91125;

    Division of Biology and Biological EngineeringCalifornia Institute of TechnologyPasadena CA 91125;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 细胞生物学;
  • 关键词

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