Institute of Biology III, Faculty of Biology, University of Freiburg, 79104 Freiburg, Germany.
ARC Centre of Excellence for Translational Photosynthesis & School of Life and Environmental Sciences, The University of Sydney, Sydney, NSW 2006, Australia.
DNA Res. 2021 Oct 11;28(6). doi: 10.1093/dnares/dsab023.
The Ferric uptake regulator (Fur) is crucial to both pathogenic and non-pathogenic bacteria for the maintenance of iron homeostasis as well as the defence against reactive oxygen species. Based on datasets from the genome-wide mapping of transcriptional start sites and transcriptome data, we identified a high confidence regulon controlled by Fur for the model cyanobacterium Synechocystis sp. PCC 6803 and its close relative, strain 6714, based on the conserved strong iron starvation response and Fur-binding site occurrence. This regulon comprises 33 protein-coding genes and the sRNA IsaR1 that are under the control of 16 or 14 individual promoters in strains 6803 and 6714, respectively. The associated gene functions are mostly restricted to transporters and enzymes involved in the uptake and storage of iron ions, with few exceptions or unknown functional relevance. Within the isiABC operon, we identified a previously neglected gene encoding a small cysteine-rich protein, which we suggest calling, IsiE. The regulation of iron uptake, storage, and utilization ultimately results from the interplay between the Fur regulon, several other transcription factors, the FtsH3 protease, and the sRNA IsaR1.
铁摄取调节因子(Fur)对于病原和非病原细菌的铁平衡维持以及活性氧防御至关重要。基于转录起始位点的全基因组图谱和转录组数据数据集,我们鉴定了一个高可信度的 Fur 调控基因,该基因在模式蓝藻集胞藻 PCC 6803 及其近亲 6714 菌株中受到调控,这是基于保守的强缺铁响应和 Fur 结合位点的发生。该调控基因包含 33 个编码蛋白的基因和 sRNA IsaR1,分别受 6803 和 6714 株中 16 或 14 个单独启动子的控制。相关基因功能主要限于转运蛋白和参与铁离子摄取和储存的酶,只有少数例外或功能未知。在 isiABC 操纵子中,我们鉴定了一个以前被忽视的基因,它编码一个小的富含半胱氨酸的蛋白质,我们建议将其命名为 IsiE。铁摄取、储存和利用的调节最终来自 Fur 调控基因、其他几个转录因子、FtsH3 蛋白酶和 sRNA IsaR1 的相互作用。