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首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >PilR, a Transcriptional Regulator for Pilin and Other Genes Required for Fe(III) Reduction in Geobacter sulfurreducens
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PilR, a Transcriptional Regulator for Pilin and Other Genes Required for Fe(III) Reduction in Geobacter sulfurreducens

机译:PilR,Pilin和其他基因的还原转录调节因子,可降低还原性土壤细菌中的Fe(III)

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Growth using Fe(III) as a terminal electron acceptor is a critical physiological process in Geobacter sulfurreducens. However, the mechanisms of electron transfer during Fe(III) reduction are only now being understood. It has been demonstrated that the pili in G. sulfurreducens function as microbial nanowires conducting electrons onto Fe(III) oxides. A number of c-type cytochromes have also been shown to play important roles in Fe(III) reduction. However, the regulatory networks controlling the expression of the genes involved in such processes are not well known. Here we report that the expression of pilA, which encodes the pili structural protein, is directly regulated by a two-component regulatory system in which PilR functions as an RpoN-dependent enhancer binding protein. Surprisingly, a deletion of the pilR gene affected not only insoluble Fe(III) reduction, which requires pili, but also soluble Fe(III) reduction, which, in contrast, does not require pili. Gene expression profiling using whole-genome DNA microarray and quantitative RT-PCR analyses obtained with a PilR-deficient mutant revealed that the expression of pilA and other pilin-related genes are downregulated, while many c-type cyto-chromes involved in Fe(III) reduction were differentially regulated. This is the first instance of an enhancer binding protein implicated in regulating genes involved in Fe(III) respiratory functions. Copyright (C) 2008 S. Karger AG, Basel
机译:使用Fe(III)作为末端电子受体的生长是减少土壤杆菌中硫的关键生理过程。然而,直到现在才了解到Fe(III)还原过程中电子转移的机理。业已证明,硫还原菌中的菌毛起着将电子传导到Fe(III)氧化物上的微生物纳米线的作用。还已经显示出许多c型细胞色素在Fe(III)还原中起重要作用。然而,控制参与这种过程的基因表达的调节网络尚不为人所知。在这里我们报告说,pilA的表达,它编码菌毛结构蛋白,是由两组分调节系统直接调节的,其中PilR充当RpoN依赖性增强子结合蛋白。令人惊讶地,pilR基因的缺失不仅影响需要菌毛的不溶性Fe(III)的还原,而且影响了不需要菌毛的可溶性Fe(III)的还原。使用全基因组DNA芯片进行基因表达谱分析并使用PilR缺陷型突变体进行定量RT-PCR分析,发现pilA和其他菌毛蛋白相关基因的表达被下调,而许多c型细胞色素参与Fe(III) )减量受到不同的调节。这是涉及调节与Fe(III)呼吸功能有关的基因的增强子结合蛋白的第一个实例。版权所有(C)2008 S.Karger AG,巴塞尔

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