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Novel allosteric inhibition of phosphoribulokinase identified by ensemble kinetic modeling of Synechocystis sp. PCC 6803 metabolism

机译:Synechocystis SP集合动力学鉴定磷素抑制磷素抑制的新型变体抑制。 PCC 6803新陈代谢

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摘要

The present study attempted a computer simulation of the metabolism of a model cyanobacteria, Synechocystis sp. PCC 6803 (PCC 6803) to predict allosteric inhibitions that are likely to occur in photoautotrophic and mixotrophic conditions as well as in a metabolically engineered strain. PCC 6803 is a promising host for direct biochemical production from CO2; however, further investigation of allosteric regulation is required for rational metabolic engineering to produce target compounds. Herein, ensemble modeling of microbial metabolism was applied to build accurate predictive models by synthesizing the results of multiple models with different parameter sets into a single score to identify plausible allosteric inhibitions. The data driven-computer simulation using metabolic flux, enzyme abundance, and metabolite concentration data successfully identified candidates for allosteric inhibition. The enzyme assay experiment using the recombinant protein confirmed isocitrate was a non-competitive inhibitor of phosphoribulokinase as a novel allosteric regulation of cyanobacteria metabolism.
机译:本研究试图计算机模拟模型蓝细菌的代谢,SneCechocystis Sp。 PCC 6803(PCC 6803)预测可能在光营养和混纺条件以及代谢工程菌株中发生的崩解抑制。 PCC 6803是来自二氧化碳的直接生物化学生产的承诺主持人;然而,Rational代谢工程需要进一步调查构雌激素调节,以产生目标化合物。这里,应用微生物代谢的集合建模来构建精确的预测模型,通过将多种模型的结果与不同的参数集合合成单一分数以鉴定合理的变形抑制。使用代谢助焊剂,酶丰富和代谢物浓度数据的数据驱动计算机模拟成功确定了候选人的候选物。使用重组蛋白的酶测定实验证实了异柠檬酸盐是磷酸氨基氨基酶的非竞争性抑制剂,作为蓝藻代谢的新构建调控。

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