首页> 外文期刊>Frontiers in Microbiology >Changes in primary metabolism under light and dark conditions in response to overproduction of a response regulator RpaA in the unicellular cyanobacterium Synechocystis sp. PCC 6803
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Changes in primary metabolism under light and dark conditions in response to overproduction of a response regulator RpaA in the unicellular cyanobacterium Synechocystis sp. PCC 6803

机译:响应调节器RpaA在单细胞蓝细菌 Synechocystis sp中过量产生,在明亮和黑暗条件下初级代谢的变化。 PCC 6803

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The study of the primary metabolism of cyanobacteria in response to light conditions is important for environmental biology because cyanobacteria are widely distributed among various ecological niches. Cyanobacteria uniquely possess circadian rhythms, with central oscillators consisting from three proteins, KaiA, KaiB, and KaiC. The two-component histidine kinase SasA/Hik8 and response regulator RpaA transduce the circadian signal from KaiABC to control gene expression. Here, we generated a strain overexpressing rpaA in a unicellular cyanobacterium Synechocystis sp. PCC 6803. The rpaA -overexpressing strain showed pleiotropic phenotypes, including slower growth, aberrant degradation of an RNA polymerase sigma factor SigE after the light-to-dark transition, and higher accumulation of sugar catabolic enzyme transcripts under dark conditions. Metabolome analysis revealed delayed glycogen degradation, decreased sugar phosphates and organic acids in the tricarboxylic acid cycle, and increased amino acids under dark conditions. The current results demonstrate that in this cyanobacterium, RpaA is a regulator of primary metabolism and involved in adaptation to changes in light conditions.
机译:对蓝细菌响应光照条件的初级代谢的研究对于环境生物学很重要,因为蓝细菌广泛分布在各种生态位中。蓝细菌独特地具有昼夜节律,其中央振荡器由三种蛋白质组成,即KaiA,KaiB和KaiC。二组分组氨酸激酶SasA / Hik8和应答调节剂RpaA传导来自KaiABC的昼夜节律信号来控制基因表达。在这里,我们在单细胞蓝藻集胞藻属中产生了过表达rpaA的菌株。 PCC6803。过表达rpaA的菌株表现出多效性表型,包括生长较慢,从轻到黑过渡后RNA聚合酶sigma因子SigE的异常降解以及在黑暗条件下糖分解代谢酶转录物的较高积累。代谢组学分析显示,糖原降解延迟,三羧酸循环中糖磷酸酯和有机酸减少,在黑暗条件下氨基酸增加。目前的结果表明,在这种蓝细菌中,RpaA是初级代谢的调节剂,并参与了对光照条件变化的适应。

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