首页> 外文期刊>The Journal of biological chemistry >NrrA, a Nitrogen-regulated Response Regulator Protein, Controls Glycogen Catabolism in the Nitrogen-fixing Cyanobacterium Anabaena sp. Strain PCC 7120
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NrrA, a Nitrogen-regulated Response Regulator Protein, Controls Glycogen Catabolism in the Nitrogen-fixing Cyanobacterium Anabaena sp. Strain PCC 7120

机译:NRRA,一种氮气调节的反应调节剂蛋白,对氮素固定的蓝藻Anabaena Sp中的糖原分解代谢进行控制。菌株PCC 7120

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Anabaena sp. strain PCC 7120 is a filamentous cyanobacterium in which certain vegetative cells differentiate into heterocysts that are specialized cells for nitrogen fixation. Heterocysts are unable to carry out photosynthesis and depend on vegetative cells for carbohydrate to generate ATP and reductants required for nitrogen fixation. Thus, carbohydrate metabolism is very important for nitrogen fixation in the filamentous cyanobacteria; however, its regulatory mechanism remains unknown. In the present study, a nitrogen-regulated response regulator NrrA, which is a transcriptional regulator involved in heterocyst differentiation, was shown to control glycogen catabolism. The transcript levels of genes involved in glycogen catabolism, such as glgP1 and xfp-gap1-pyk1-talB operon, were decreased by the nrrA disruption. Moreover, glycogen accumulation and depression of nitrogenase activities were observed in this disruptant. NrrA bound specifically to the promoter region of glgP1, encoding a glycogen phosphorylase, and to the promoter region of sigE, encoding a group 2 σ factor of RNA polymerase. SigE activated expression of the xfp operon, encoding enzymes of glycolysis and the pentose phosphate pathway. It is concluded that NrrA controls not only heterocyst differentiation but also glycogen catabolism in Anabaena sp. strain PCC 7120.
机译:Anabaena sp。菌株PCC 7120是丝状丝锥,其中某些营养细胞分化成具有用于氮固定的专用细胞的杂物体。杂环不能进行光合作用,并依赖于碳水化合物的营养细胞,以产生氮固定所需的ATP和还原剂。因此,碳水化合物代谢对于丝状蓝细菌中的氮素固定非常重要;但是,其监管机制仍然未知。在本研究中,显示了一种氮气调节的响应调节剂NRRA,其是杂交分化中涉及的转录调节剂,用于控制糖原分解代谢。通过NRRA破坏减少了糖原分解代谢的基因的转录物(如GLGP1和XFP-GAP1-PYK1-TALB操纵子)。此外,在这种破坏剂中观察到糖原积聚和乳酶活性的抑制。 NRRA专门针对GLGP1的启动子区域,编码糖原磷酸化酶,以及SiGe的启动子区,编码RNA聚合酶的2σ因子。 SiGe活化的XFP操纵子的表达,糖酵解的编码酶和戊糖磷酸盐通路。得出结论,NRRA不仅对杂物分化进行控制,还对Anabaena SP中的糖原分解代谢进行控制。菌株PCC 7120。

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