首页> 美国卫生研究院文献>Journal of Bacteriology >Involvement of the Cra Global Regulatory Protein in the Expression of the iscRSUA Operon Revealed during Studies of Tricarballylate Catabolism in Salmonella enterica
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Involvement of the Cra Global Regulatory Protein in the Expression of the iscRSUA Operon Revealed during Studies of Tricarballylate Catabolism in Salmonella enterica

机译:Cra全球调控蛋白参与iscRSUA操纵子的表达在肠沙门氏菌的三碳烯化代谢研究中得到揭示。

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摘要

In Salmonella enterica, tricarballylate (Tcb) catabolism requires function of TcuB, a membrane-bound protein that contains [4Fe-4S] clusters and heme. TcuB transfers electrons from reduced flavin adenine dinucleotide in the Tcb dehydrogenase (TcuA) to electron acceptors in the membrane. We recently showed that functions needed to assemble [Fe-S] clusters (i.e., the iscRSUA-hscBA-fdx operon) compensate for the lack of ApbC during growth of an apbC strain on Tcb. ApbC had been linked to [Fe-S] cluster metabolism, and we showed that an apbC strain had decreased TcuB activity. Here we report findings that expand our understanding of the regulation of expression of the iscRSUA genes in Salmonella enterica. We investigated why low levels of glucose or other saccharides restored growth of an apbC strain on Tcb. Here we report the following findings. (i) A ≤1 mM concentration of glucose, fructose, ribose, or glycerol restores growth of an apbC strain on Tcb. (ii) The saccharide effect results in increased levels of TcuB activity. (iii) The saccharide effect depends on the global regulatory protein Cra. (iv) Putative Cra binding sites are present in the regulatory region of the iscRSUA operon. (v) Cra protein binds to all three sites in the iscRSUA promoter region in a concentration-dependent fashion. To our knowledge, this is the first report of the involvement of Cra in [Fe-S] cluster assembly.
机译:在肠沙门氏菌中,三碳甲酸酯(Tcb)分解代谢需要TcuB的功能,TcuB是一种包含[4Fe-4S]簇和血红素的膜结合蛋白。 TcuB将电子从Tcb脱氢酶(TcuA)中还原的黄素腺嘌呤二核苷酸转移到膜中的电子受体。我们最近表明,组装[Fe-S]簇所需的功能(即iscRSUA-hscBA-fdx操纵子)可补偿在Tcb上apbC菌株生长过程中ApbC的缺乏。 ApbC与[Fe-S]团簇代谢有关,我们发现apbC菌株的TcuB活性降低。在这里我们报告的发现,扩大了我们对肠炎沙门氏菌中iscRSUA基因表达调控的理解。我们调查了为什么低水平的葡萄糖或其他糖类可恢复apbC菌株在Tcb上的生长。在这里,我们报告以下发现。 (i)≤1 mM的葡萄糖,果糖,核糖或甘油浓度可恢复apbC菌株在Tcb上的生长。 (ii)糖类作用导致TcuB活性水平提高。 (iii)糖的作用取决于整体调节蛋白Cra。 (iv)假定的Cra结合位点存在于iscRSUA操纵子的调控区中。 (v)Cra蛋白以浓度依赖性方式结合在iscRSUA启动子区域的所有三个位点。据我们所知,这是Cra参与[Fe-S]团簇组装的第一份报告。

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