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根癌土壤杆菌对钼酸盐的摄取与细胞钼辅因子状态相关。

Molybdate uptake by Agrobacterium tumefaciens correlates with the cellular molybdenum cofactor status.

作者信息

Hoffmann Marie-Christine, Ali Koral, Sonnenschein Marleen, Robrahn Laura, Strauss Daria, Narberhaus Franz, Masepohl Bernd

机构信息

Microbial Biology, Ruhr University Bochum, Bochum, Germany.

University Hospital RWTH Aachen, Aachen, Germany.

出版信息

Mol Microbiol. 2016 Sep;101(5):809-22. doi: 10.1111/mmi.13421. Epub 2016 Jun 10.

Abstract

Many enzymes require the molybdenum cofactor, Moco. Under Mo-limiting conditions, the high-affinity ABC transporter ModABC permits molybdate uptake and Moco biosynthesis in bacteria. Under Mo-replete conditions, Escherichia coli represses modABC transcription by the one-component regulator, ModE, consisting of a DNA-binding and a molybdate-sensing domain. Instead of a full-length ModE protein, many bacteria have a shorter ModE protein, ModE(S) , consisting of a DNA-binding domain only. Here, we asked how such proteins sense the intracellular molybdenum status. We show that the Agrobacterium tumefaciens ModE(S) protein Atu2564 is essential for modABC repression. ModE(S) binds two Mo-boxes in the modA promoter as shown by electrophoretic mobility shift assays. Northern analysis revealed cotranscription of modE(S) with the upstream gene, atu2565, which was dispensable for ModE(S) activity. To identify genes controlling ModE(S) function, we performed transposon mutagenesis. Tn5 insertions resulting in derepressed modA transcription mapped to the atu2565-modE(S) operon and several Moco biosynthesis genes. We conclude that A. tumefaciens ModE(S) activity responds to Moco availability rather than to molybdate concentration directly, as is the case for E. coli ModE. Similar results in Sinorhizobium meliloti suggest that Moco dependence is a common feature of ModE(S) regulators.

摘要

许多酶都需要钼辅因子(Moco)。在钼限制条件下,高亲和力ABC转运蛋白ModABC能使细菌摄取钼酸盐并进行Moco生物合成。在钼充足条件下,大肠杆菌通过单组分调节因子ModE抑制modABC转录,ModE由一个DNA结合结构域和一个钼酸盐感应结构域组成。许多细菌没有全长的ModE蛋白,而是有一种仅由DNA结合结构域组成的较短的ModE蛋白ModE(S)。在此,我们探究了这类蛋白如何感知细胞内的钼状态。我们发现根癌农杆菌的ModE(S)蛋白Atu2564对modABC的抑制至关重要。如电泳迁移率变动分析所示,ModE(S)能结合modA启动子中的两个钼盒。Northern分析显示modE(S)与上游基因atu2565共转录,而atu2565对ModE(S)的活性并非必需。为了鉴定控制ModE(S)功能的基因,我们进行了转座子诱变。导致modA转录去抑制的Tn5插入位点定位于atu2565-modE(S)操纵子和几个Moco生物合成基因。我们得出结论,根癌农杆菌的ModE(S)活性对Moco的可利用性作出反应,而不是像大肠杆菌ModE那样直接对钼酸盐浓度作出反应。在苜蓿中华根瘤菌中得到的类似结果表明,Moco依赖性是ModE(S)调节因子的一个共同特征。

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