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The FurA regulon in Anabaena sp. PCC 7120: in silico prediction and experimental validation of novel target genes

机译:Anabaena sp。的FurA regulon。 PCC 7120:新型靶基因的计算机模拟预测和实验验证

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摘要

In the filamentous cyanobacterium Anabaena sp. PCC 7120, the ferric uptake regulator FurA functions as a global transcriptional regulator. Despite several analyses have focused on elucidating the FurA-regulatory network, the number of target genes described for this essential transcription factor is limited to a handful of examples. In this article, we combine an in silico genome-wide predictive approach with experimental determinations to better define the FurA regulon. Predicted FurA-binding sites were identified upstream of 215 genes belonging to diverse functional categories including iron homeostasis, photosynthesis and respiration, heterocyst differentiation, oxidative stress defence and light-dependent signal transduction mechanisms, among others. The probabilistic model proved to be effective at discerning FurA boxes from non-cognate sequences, while subsequent electrophoretic mobility shift assay experiments confirmed the in vitro specific binding of FurA to at least 20 selected predicted targets. Gene-expression analyses further supported the dual role of FurA as transcriptional modulator that can act both as repressor and as activator. In either role, the in vitro affinity of the protein to its target sequences is strongly dependent on metal co-regulator and reducing conditions, suggesting that FurA couples in vivo iron homeostasis and the response to oxidative stress to major physiological processes in cyanobacteria.
机译:在丝状蓝细菌鱼腥藻中。铁摄取调节剂FurA PCC 7120充当全局转录调节剂。尽管已经进行了一些分析来阐明FurA调节网络,但针对该基本转录因子描述的靶基因的数量仅限于少数几个例子。在本文中,我们将计算机模拟全基因组预测方法与实验确定方法相结合,以更好地定义FurA调节剂。在215个基因的上游鉴定了预测的FurA结合位点,这些基因属于多种功能类别,包括铁稳态,光合作用和呼吸作用,异种囊分化,氧化应激防御和光依赖性信号转导机制等。事实证明,该概率模型可有效区分非关联序列中的FurA盒,而随后的电泳迁移率漂移实验证实了FurA与至少20个选定的预测靶标的体外特异性结合。基因表达分析进一步支持了FurA作为转录调节剂的双重作用,它既可以充当阻遏物又可以充当激活物。在这两种作用中,蛋白质对其靶序列的体外亲和力都强烈依赖于金属共调节剂和还原条件,这表明FurA结合了体内铁稳态和对蓝藻主要生理过程的氧化应激反应。

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