首页> 外文期刊>Journal of bacteriology >Coordinate Regulation of the Suf and Isc Fe-S Cluster Biogenesis Pathways by IscR Is Essential for Viability of Escherichia coli
【24h】

Coordinate Regulation of the Suf and Isc Fe-S Cluster Biogenesis Pathways by IscR Is Essential for Viability of Escherichia coli

机译:IscR对Suf和Isc Fe-S团簇生物发生途径的协调调节对于大肠杆菌的生存力至关重要

获取原文
           

摘要

Fe-S cluster biogenesis is essential for the viability of most organisms. In Escherichia coli, this process requires either the housekeeping Isc or the stress-induced Suf pathway. The global regulator IscR coordinates cluster synthesis by repressing transcription of the isc operon by [2Fe-2S]-IscR and activating expression of the suf operon. We show that either [2Fe-2S]-IscR or apo-IscR can activate suf, making expression sensitive to mainly IscR levels and not the cluster state, unlike isc expression. We also demonstrate that in the absence of isc, IscR-dependent suf activation is essential since strains lacking both the Isc pathway and IscR were not viable unless Suf was expressed ectopically. Similarly, removal of the IscR binding site in the sufA promoter also led to a requirement for isc. Furthermore, suf expression was increased in a Δisc mutant, presumably due to increased IscR levels in this mutant. This was surprising because the iron-dependent repressor Fur, whose higher-affinity binding at the sufA promoter should occlude IscR binding, showed only partial repression. In addition, Fur derepression was not sufficient for viability in the absence of IscR and the Isc pathway, highlighting the importance of direct IscR activation. Finally, a mutant lacking Fur and the Isc pathway increased suf expression to the highest observed levels and nearly restored [2Fe-2S]-IscR activity, providing a mechanism for regulating IscR activity under stress conditions. Together, these findings have enhanced our understanding of the homeostatic mechanism by which cells use one regulator, IscR, to differentially control Fe-S cluster biogenesis pathways to ensure viability.
机译:Fe-S团簇生物发生对于大多数生物的生存至关重要。在大肠杆菌中,此过程需要管家Isc或压力诱导的Suf途径。全局调节剂IscR通过抑制[2Fe-2S] -IscR的 isc 操纵子的转录并激活 suf 操纵子的表达来协调簇的合成。我们显示,[2Fe-2S] -IscR或apo-IscR均可激活 suf ,从而使表达对主要IscR水平敏感,而对簇状态不敏感,这与 isc 表达不同。我们还证明,在缺少 isc 的情况下,依赖IscR的 suf 激活是必不可少的,因为缺少Isc途径和IscR的菌株除非在异位表达Suf才可行。同样,去除 sufA 启动子中的IscR结合位点也导致需要 isc 。此外, suf 表达在Δ isc 突变体中增加,可能是由于该突变体中的IscR水平升高所致。这是令人惊讶的,因为依赖铁的阻遏物Fur(在 sufA 启动子上的高亲和力结合应能阻断IscR结合)仅表现出部分阻遏作用。此外,在缺乏IscR和Isc途径的情况下,Fur抑制抑制不足以维持生存能力,从而突出了直接激活IscR的重要性。最后,缺乏Fur和Isc途径的突变体将 suf 表达增加到最高观察水平,并几乎恢复了[2Fe-2S] -IscR活性,从而提供了在压力条件下调节IscR活性的机制。在一起,这些发现增强了我们对稳态机制的理解,该机制通过细胞使用一种调节剂IscR差异控制Fe-S簇生物发生途径来确保生存能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号