首页> 美国卫生研究院文献>Scientific Reports >Disruption of cyanobacterial γ-aminobutyric acid shunt pathway reduces metabolites levels in tricarboxylic acid cycle but enhances pyruvate and poly(3-hydroxybutyrate) accumulation
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Disruption of cyanobacterial γ-aminobutyric acid shunt pathway reduces metabolites levels in tricarboxylic acid cycle but enhances pyruvate and poly(3-hydroxybutyrate) accumulation

机译:蓝细菌γ-氨基丁酸分流途径的破坏降低了三羧酸循环中的代谢物水平但增强了丙酮酸和聚(3-羟基丁酸)的积累

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摘要

The photoautotrophic cyanobacterium Synechocystis sp. PCC 6803 assimilates carbon dioxide as the sole carbon source, and a major portion of the assimilated carbon is metabolically consumed by the tricarboxylic acid (TCA) cycle. Effects of partial interference of TCA cycle metabolic activity on other carbon metabolism have yet to be examined. Here, the γ-aminobutyric acid (GABA) shunt, one of the metabolic pathways for completing TCA cycle in Synechocystis, was disrupted via inactivating the glutamate decarboxylase gene (gdc). Under normal photoautotrophic condition, cell growth and the level of the TCA cycle metabolites succinate, malate and citrate were decreased by 25%, 35%, 19% and 28%, respectively, in Δgdc mutant relative to those in the wild type (WT). The cellular levels of glycogen and total lipids of the Δgdc mutant were comparable to those of the WT, but the intracellular levels of pyruvate and bioplastic poly(3-hydroxybutyrate) (PHB) were 1.23- and 2.50-fold higher, respectively, in Δgdc mutant. Thus, disruption of the GABA shunt pathway reduced the TCA cycle metabolites levels, but positively enhanced the bioaccumulation of pyruvate and PHB. The PHB production rate in Δgdc mutant was 2.0-fold higher than in the WT under normal photoautotrophy.
机译:光合自养蓝藻Synechocystis sp。 PCC 6803吸收二氧化碳作为唯一的碳源,大部分被吸收的碳被三羧酸(TCA)循环代谢消耗。 TCA循环代谢活性的部分干扰对其他碳代谢的影响尚待研究。在这里,γ-氨基丁酸(GABA)分流是完成囊突集藻中TCA循环的代谢途径之一,通过灭活谷氨酸脱羧酶基因(gdc)而被破坏。在正常的自养条件下,相对于野生型(WT),Δgdc突变体的细胞生长和琥珀酸,苹果酸和柠檬酸的TCA循环代谢产物水平分别降低了25%,35%,19%和28%。 。 Δgdc突变体的糖原和总脂质的细胞水平与野生型相当,但是丙酮酸和生物塑料聚(3-羟基丁酸酯)(PHB)的细胞内水平在Δgdc中分别高1.23和2.50倍突变体。因此,GABA分流途径的破坏降低了TCA循环代谢产物的水平,但积极提高了丙酮酸和PHB的生物积累。在正常光能自养条件下,Δgdc突变体的PHB产生率比WT高2.0倍。

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