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首页> 外文期刊>PLoS Pathogens >Two-Component Signaling System VgrRS Directly Senses Extracytoplasmic and Intracellular Iron to Control Bacterial Adaptation under Iron Depleted Stress
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Two-Component Signaling System VgrRS Directly Senses Extracytoplasmic and Intracellular Iron to Control Bacterial Adaptation under Iron Depleted Stress

机译:双组分信号传导系统VGRRs直接感测外层节和细胞内熨斗,以控制铁耗尽应力下的细菌适应

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摘要

Both iron starvation and excess are detrimental to cellular life, especially for animal and plant pathogens since they always live in iron-limited environments produced by host immune responses. However, how organisms sense and respond to iron is incompletely understood. Herein, we reveal that in the phytopathogenic bacterium Xanthomonas campestris pv. campestris, VgrS (also named ColS) is a membrane-bound receptor histidine kinase that senses extracytoplasmic iron limitation in the periplasm, while its cognate response regulator, VgrR (ColR), detects intracellular iron excess. Under iron-depleted conditions, dissociation of Fe3+ from the periplasmic sensor region of VgrS activates the VgrS autophosphorylation and subsequent phosphotransfer to VgrR, an OmpR-family transcription factor that regulates bacterial responses to take up iron. VgrR-VgrS regulon and the consensus DNA binding motif of the transcription factor VgrR were dissected by comparative proteomic and ChIP-seq analyses, which revealed that in reacting to iron-depleted environments, VgrR directly or indirectly controls the expressions of hundreds of genes that are involved in various physiological cascades, especially those associated with iron-uptake. Among them, we demonstrated that the phosphorylated VgrR tightly represses the transcription of a special TonB-dependent receptor gene, tdvA. This regulation is a critical prerequisite for efficient iron uptake and bacterial virulence since activation of tdvA transcription is detrimental to these processes. When the intracellular iron accumulates, the VgrR-Fe2+ interaction dissociates not only the binding between VgrR and the tdvA promoter, but also the interaction between VgrR and VgrS. This relieves the repression in tdvA transcription to impede continuous iron uptake and avoids possible toxic effects of excessive iron accumulation. Our results revealed a signaling system that directly senses both extracytoplasmic and intracellular iron to modulate bacterial iron homeostasis.
机译:铁饥饿和过量的既有可能对细胞生命有害,特别是对于动物和植物病原体,因为它们总是居住在宿主免疫反应产生的铁有限环境中。然而,有机体感觉如何感觉和对铁的反应是不完全理解的。在此,我们揭示了在植物疗法的磷酸甘油磷氏菌杨霉菌中PV。 CameStris,VGRS(也命名的COL)是一种膜结合的受体组氨酸激酶,其在周质中感测过的外膜铁限制,而其同源反应调节剂VGRR(COLR)检测细胞内熨斗过量。在铁耗尽条件下,来自VGR的周质传感器区域的Fe3 +的解离使VGRS自磷酸化和随后的磷酸转移至VGRR,核心族分类因子调节卷取的细菌反应。 VGRR-VGRS调节件和转录因子VGRR的共有DNA结合基序通过比较蛋白质组学和芯片-SEQ分析解剖,这揭示了在对铁耗尽的环境中反应的情况下,VGRR直接或间接地控制数百个基因的表达参与各种生理级联,尤其是与铸铁采动相关的级联。其中,我们证明了磷酸化的vGRR紧密地压制了特殊的Tonb依赖受体基因TDVA的转录。这种调节是有效的铁吸收和细菌毒力的关键先决条件,因为TDVA转录的激活对这些过程有害。当细胞内铁累积时,VGRR-Fe2 +相互作用不仅解散了VGRR和TDVA启动子之间的结合,而且分解了VGRR和VGR之间的相互作用。这缓解了TDVA转录中的抑制,以妨碍连续的熨斗吸收,避免过量的铁积累可能的毒性作用。我们的结果显示了一种信号系统,可直接感测外层节和细胞内铁来调节细菌铁袜。

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