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The Herbaspirillum seropedicae SmR1 Fnr orthologs controls the cytochrome composition of the electron transport chain

机译:SerR螺旋藻> SmR1 Fnr直系同源基因控制电子传输链的细胞色素组成

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The transcriptional regulatory protein Fnr, acts as an intracellular redox sensor regulating a wide range of genes in response to changes in oxygen levels. Genome sequencing of Herbaspirillum seropedicae SmR1 revealed the presence of three fnr- like genes. In this study we have constructed single, double and triple fnr deletion mutant strains of H. seropedicae . Transcriptional profiling in combination with expression data from reporter fusions, together with spectroscopic analysis, demonstrates that the Fnr1 and Fnr3 proteins not only regulate expression of the cbb3 -type respiratory oxidase, but also control the cytochrome content and other component complexes required for the cytochrome c -based electron transport pathway. Accordingly, in the absence of the three Fnr paralogs, growth is restricted at low oxygen tensions and nitrogenase activity is impaired. Our results suggest that the H. seropedicae Fnr proteins are major players in regulating the composition of the electron transport chain in response to prevailing oxygen concentrations.
机译:转录调节蛋白Fnr充当细胞内氧化还原传感器,响应氧水平的变化调节广泛的基因。草药螺旋藻SmR1的基因组测序揭示了三个fnr样基因的存在。在这项研究中,我们已经构建了螺旋藻的单,双和三重fnr缺失突变株。转录谱分析与报告融合蛋白的表达数据结合光谱分析表明,Fnr1和Fnr3蛋白不仅调节cbb 3 型呼吸道氧化酶的表达,而且还控制细胞色素的含量和基于细胞色素c的电子传输途径所需的其他组分复合物。因此,在没有三个Fnr旁系同源物的情况下,在低氧张力下生长受到限制,并且固氮酶活性受损。我们的结果表明,H。seropedicae Fnr蛋白是调节电子传输链组成的主要参与者,以响应当前的氧气浓度。

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