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首页> 外文期刊>The Journal of biological chemistry >The Nitrogen-regulated Response Regulator NrrA Controls Cyanophycin Synthesis and Glycogen Catabolism in the Cyanobacterium Synechocystis sp. PCC 6803
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The Nitrogen-regulated Response Regulator NrrA Controls Cyanophycin Synthesis and Glycogen Catabolism in the Cyanobacterium Synechocystis sp. PCC 6803

机译:氮气调节响应调节剂NRRA对肌腱杆菌SP中的氰基霉素合成和糖原分解代谢进行控制。 PCC 6803.

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The cellular metabolism in cyanobacteria is extensively regulated in response to changes of environmental nitrogen availability. Multiple regulators are involved in this process, including a nitrogen-regulated response regulator NrrA. However, the regulatory role of NrrA in most cyanobacteria remains to be elucidated. In this study, we combined a comparative genomic reconstruction of NrrA regulons in 15 diverse cyanobacterial species with detailed experimental characterization of NrrA-mediated regulation in Synechocystis sp. PCC 6803. The reconstructed NrrA regulons in most species included the genes involved in glycogen catabolism, central carbon metabolism, amino acid biosynthesis, and protein degradation. A predicted NrrA-binding motif consisting of two direct repeats of TG(T/A)CA separated by an 8-bp A/T-rich spacer was verified by in vitro binding assays with purified NrrA protein. The predicted target genes of NrrA in Synechocystis sp. PCC 6803 were experimentally validated by comparing the transcript levels and enzyme activities between the wild-type and nrrA-inactivated mutant strains. The effect of NrrA deficiency on intracellular contents of arginine, cyanophycin, and glycogen was studied. Severe impairments in arginine synthesis and cyanophycin accumulation were observed in the nrrA-inactivated mutant. The nrrA inactivation also resulted in a significantly decreased rate of glycogen degradation. Our results indicate that by directly up-regulating expression of the genes involved in arginine synthesis, glycogen degradation, and glycolysis, NrrA controls cyanophycin accumulation and glycogen catabolism in Synechocystis sp. PCC 6803. It is suggested that NrrA plays a role in coordinating the synthesis and degradation of nitrogen and carbon reserves in cyanobacteria.
机译:响应于环境氮可用性的变化,Cyanobacteria细胞代谢被广泛调节。在该过程中涉及多种调节剂,包括氮气调节的反应调节器NRRA。然而,NRRA在大多数蓝细菌中的调节作用仍有待阐明。在这项研究中,我们将NRRA调节件的比较基因组重建组合在15种不同的蓝杆菌物种中,具有NRRA介导的SyneChocystis SP中的NRA介导的调节的实验表征。 PCC 6803.大多数物种中的重建NRRA调节件包括参与糖原分解代谢,中央碳代谢,氨基酸生物合成和蛋白质降解的基因。通过用纯化的NRRA蛋白质,通过体外结合测定验证由用8-BP A / T富型间隔物分离的两种直接重复的Tg(T / A)Ca的预测的NRRA结合基序。 NRRA在SyneChocystis sp中的预测靶基因。通过比较野生型和NRRA灭活突变菌株之间的转录水平和酶活性,通过实验验证PCC 6803。 NRRA缺乏对精氨酸,氰基霉素和糖原细胞内含量的影响。在NRRA灭活突变体中观察到精氨酸合成和氰基霉素积累中的严重损伤。 NRRA失活也导致糖原降解率显着降低。我们的研究结果表明,通过直接调节参与精氨酸合成,糖原降解和糖酵解的基因的表达,NRRA对综合症SP中的氰基霉素积累和糖原分解代谢进行了控制。 PCC 6803.建议NRRA在协调氮气和碳储量的协调和降解中发挥作用。

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