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首页> 外文期刊>Archives of microbiology >Role of NtcA, a cyanobacterial global nitrogen regulator, in the regulation of sucrose metabolism gene expression in Anabaena sp. PCC 7120.
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Role of NtcA, a cyanobacterial global nitrogen regulator, in the regulation of sucrose metabolism gene expression in Anabaena sp. PCC 7120.

机译:NtcA,蓝细菌全局氮调节剂,在鱼腥藻中蔗糖代谢基因表达的调节中的作用。 PCC 7120。

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In the heterocyst-forming cyanobacterium Anabaena sp. PCC 7120 (also known as Nostoc sp. PCC 7120), it has been shown that spsB and susA, the genes coding for proteins related to sucrose synthesis and cleavage, respectively, exhibit converse expression regarding the nitrogen source. In the nitrogen-fixing filament, spsB expression is mostly localized to the heterocysts and susA is only expressed in vegetative cells. The aim of this work was to investigate the participation of NtcA, a global nitrogen regulator that operates in cyanobacteria, in the regulation of sucrose metabolism genes in Anabaena sp. PCC 7120. The induction of spsB expression observed in the filaments upon combined-nitrogen depletion was abolished in an NtcA-deficient mutant. In vitro experiments showed that NtcA binds specifically but with different affinities to two sites in the spsB promoter region. When susA expression was analyzed after a combined-nitrogen starvation, the levels of mRNA, polypeptide and activity increased in the mutant in comparison with the wild-type strain. Also, NtcA interacted with one site in the promoter region of susA. We conclude that sucrose metabolism is coordinated at the transcriptional level with nitrogen metabolism, suggesting a global metabolism regulating role for NtcA.
机译:在形成异胞藻的蓝藻鱼腥藻中。 PCC 7120(也称为Nostoc sp。PCC 7120),已显示spsB和susA(分别编码与蔗糖合成和裂解有关的蛋白质的基因)在氮源方面表现出相反的表达。在固氮丝中,spsB的表达主要位于异囊,而susA仅在营养细胞中表达。这项工作的目的是调查在蓝细菌中运行的全球性氮调节剂NtcA在鱼腥藻中蔗糖代谢基因调控中的参与。 PCC7120。在NtcA缺陷型突变体中,消除了联合氮耗竭后细丝中spsB表达的诱导。体外实验表明,NtcA特异性结合spsB启动子区域中的两个位点,但具有不同的亲和力。当联合氮饥饿后分析susA表达时,与野生型菌株相比,突变体中的mRNA,多肽和活性水平增加。同样,NtcA与susA启动子区域的一个位点相互作用。我们得出结论,蔗糖代谢在转录水平上与氮代谢协调,表明NtcA的全球代谢调节作用。

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